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Antimicrobial Agents and Chemotherapy, April 2006, p. 1123-1129, Vol. 50, No. 4
0066-4804/06/$08.00+0     doi:10.1128/AAC.50.4.1123-1129.2006
Copyright © 2006, American Society for Microbiology. All Rights Reserved.

MINIREVIEW

ß-Lactamase Nomenclature

George A. Jacoby*

Lahey Clinic, Burlington, Massachusetts


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INTRODUCTION
 
In the beginning, ß-lactamases were designated by the name of the strain or plasmid that produced them, a practice that persists in such enzyme names as PC1 or P99. In 1975, the application of isoelectric focusing for ß-lactamase characterization allowed many more enzymes to be distinguished (84). Subsequent ß-lactamase nomenclature has been nothing if not creative. The enzymes have been named after substrates, biochemical properties, peculiarities of sequence, location of their discovery, location of the gene on the chromosome, strains of bacteria, the patient providing a sample, and, least modestly, the investigators who described them. One enzyme has even been named by what it is not (Nmc, standing for not metalloenzyme carbapenemase) (91). Figure 1 shows the frequency with which novel enzymes have been described in the literature and reflects not only the pace of discovery and increasingly sophisticated means of differentiating ß-lactamases but also fashions in naming. Only recently have letters and not strain numbers been used consistently for designation.


Figure 1
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FIG. 1. Number of new ß-lactamases reported per year.

In time, some ß-lactamases have become families of more or less closely related enzymes. Currently, 150 TEM, 88 SHV, 88 OXA, 53 CTX-M, 22 IMP, 12 VIM, and smaller numbers in other enzyme families have been described (http://www.lahey.org/studies). The TEM and SHV families are closely related, with individual members differing by only one to seven amino acids. Other families, for example, the CTX-M and IMP families, differ among themselves by as much as 20% in amino acid composition, while members of the OXA family can have almost 80% difference, because they have been grouped by activity on oxacillin and related substrates and not by primary structure. The Klebsiella oxytoca K1 or KOXY enzyme has also been subdivided into a growing series of OXY ß-lactamases (38).

A few enzymes have been given more than one name (Table 1). Other synonymous names undoubtedly await recognition as more bla genes are sequenced. Some enzymes were given provisional names until their sequence demonstrated them to be TEM or SHV derivatives; examples are shown in Table 1, and others can be found at http://www.lahey.org/studies.


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TABLE 1. Enzymes with more than one name

Sometimes, one name rather than another has caught on. Thus, CTX-M (6), rather than MEN (18) or TLB (Toho-1-like ß-lactamase) (158), came to designate that family of enzymes, and the Toho enzymes have recently been assigned CTX-M numbers (http://www.lahey.org/studies). Some names lost their logic after being created but are still in use; thus, the "Pseudomonas-specific enzymes," PSE-1, PSE-2, and PSE-4, were soon found in Escherichia coli and other Enterobacteriaceae (76, 88, 123), and some CTX-M enzymes hydrolyze ceftazidime more efficiently than cefotaxime (112). For a time, plasmid-encoded ß-lactamases were designated with all capital letters and chromosomally determined enzymes with only the first letter capitalized, but this distinction no longer holds. Since DNA sequencing facilitated characterization, the pace of discovery and naming has increased further. Because the rationale for existing names has not previously been collected in one place, a list of derivations follows with apologies for any omissions (Table 2). When the derivation was not provided in the original reference, it has been checked, if possible, with the originating author.


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TABLE 2. Origin of ß-lactamase names


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FOOTNOTES
 
* Corresponding author. Mailing address: Lahey Clinic, 41 Mall Rd., Burlington, MA 01895. Phone: (781) 744-2928. Fax: (781) 744-5486. E-mail: george.a.jacoby{at}lahey.org. Back


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REFERENCES
 
    1
  1. Arakawa, Y., M. Ohta, N. Kido, Y. Fujii, T. Komatsu, and N. Kato. 1986. Close evolutionary relationship between the chromosomally encoded ß-lactamase gene of Klebsiella pneumoniae and the TEM ß-lactamase gene mediated by R plasmids. FEBS Lett. 207:69-74.[CrossRef][Medline]
  2. 2
  3. Avison, M. B., and A. M. Simm. 2002. Sequence and genome context analysis of a new molecular class D ß-lactamase gene from Legionella pneumophila. J. Antimicrob. Chemother. 50:331-338.[Abstract/Free Full Text]
  4. 3
  5. Barlow, M., and B. G. Hall. 2002. Origin and evolution of the AmpC ß-lactamases of Citrobacter freundii. Antimicrob. Agents Chemother. 46:1190-1198.[Abstract/Free Full Text]
  6. 4
  7. Barthelemy, M., J. Peduzzi, C. Verchere-Beaur, H. Ben Yaghlane, and R. Labia. 1986. Purification and biochemical properties of Pitton's type 2 beta-lactamase (SHV-1). Ann. Inst. Pasteur Microbiol. 137B:19-27.[CrossRef]
  8. 5
  9. Bauernfeind, A., Y. Chong, and S. Schweighart. 1989. Extended broad spectrum ß-lactamase in Klebsiella pneumoniae including resistance to cephamycins. Infection 17:316-321.[CrossRef][Medline]
  10. 6
  11. Bauernfeind, A., H. Grimm, and S. Schweighart. 1990. A new plasmidic cefotaximase in a clinical isolate of Escherichia coli. Infection 18:294-298.[CrossRef][Medline]
  12. 7
  13. Bauernfeind, A., I. Schneider, R. Jungwirth, H. Sahly, and U. Ullmann. 1999. A novel type of AmpC ß-lactamase, ACC-1, produced by a Klebsiella pneumoniae strain causing nosocomial pneumonia. Antimicrob. Agents Chemother. 43:1924-1931.[Abstract/Free Full Text]
  14. 8
  15. Bauernfeind, A., I. Stemplinger, R. Jungwirth, S. Ernst, and J. M. Casellas. 1996. Sequences of ß-lactamase genes encoding CTX-M-1 (MEN-1) and CTX-M-2 and relationship of their amino acid sequences with those of other ß-lactamases. Antimicrob. Agents Chemother. 40:509-513.[Abstract]
  16. 9
  17. Baxter, I. A., and P. A. Lambert. 1994. Isolation and partial purification of a carbapenem-hydrolysing metallo-beta-lactamase from Pseudomonas cepacia. FEMS Microbiol. Lett. 122:251-256.[Medline]
  18. 10
  19. Beauchef-Havard, A., G. Arlet, V. Gautier, R. Labia, P. Grimont, and A. Philippon. 2003. Molecular and biochemical characterization of a novel class A ß-lactamase (HER-1) from Escherichia hermannii. Antimicrob. Agents Chemother. 47:2669-2673.[Abstract/Free Full Text]
  20. 11
  21. Bellais, S., D. Aubert, T. Naas, and P. Nordmann. 2000. Molecular and biochemical heterogeneity of class B carbapenem-hydrolyzing ß-lactamases in Chryseobacterium meningosepticum. Antimicrob. Agents Chemother. 44:1878-1886.[Abstract/Free Full Text]
  22. 12
  23. Bellais, S., D. Girlich, A. Karim, and P. Nordmann. 2002. EBR-1, a novel Ambler subclass B1 ß-lactamase from Empedobacter brevis. Antimicrob. Agents Chemother. 46:3223-3227.[Abstract/Free Full Text]
  24. 13
  25. Bellais, S., S. Leotard, L. Poirel, T. Naas, and P. Nordmann. 1999. Molecular characterization of a carbapenem-hydrolyzing ß-lactamase from Chryseobacterium (Flavobacterium) indologenes. FEMS Microbiol. Lett. 171:127-132.[Medline]
  26. 14
  27. Bellais, S., T. Naas, and P. Nordmann. 2002. Genetic and biochemical characterization of CGB-1, an Ambler class B carbapenem-hydrolyzing ß-lactamase from Chryseobacterium gleum. Antimicrob. Agents Chemother. 46:2791-2796.[Abstract/Free Full Text]
  28. 15
  29. Bellais, S., T. Naas, and P. Nordmann. 2002. Molecular and biochemical characterization of Ambler class A extended-spectrum ß-lactamase CGA-1 from Chryseobacterium gleum. Antimicrob. Agents Chemother. 46:966-970.[Abstract/Free Full Text]
  30. 16
  31. Bellais, S., L. Poirel, N. Fortineau, J. W. Decousser, and P. Nordmann. 2001. Biochemical-genetic characterization of the chromosomally encoded extended-spectrum class A ß-lactamase from Rahnella aquatilis. Antimicrob. Agents Chemother. 45:2965-2968.[Abstract/Free Full Text]
  32. 17
  33. Bellais, S., L. Poirel, T. Naas, D. Girlich, and P. Nordmann. 2000. Genetic-biochemical analysis and distribution of the Ambler class A ß-lactamase CME-2, responsible for extended-spectrum cephalosporin resistance in Chryseobacterium (Flavobacterium) meningosepticum. Antimicrob. Agents Chemother. 44:1-9.[Abstract/Free Full Text]
  34. 18
  35. Bernard, H., C. Tancrede, V. Livrelli, M. Barthelemy, and R. Labia. 1992. A novel plasmid-mediated extended-spectrum ß-lactamase not derived from TEM- or SHV-type enzymes. J. Antimicrob. Chemother. 29:590-592.[Free Full Text]
  36. 19
  37. Billot-Klein, D., L. Gutmann, and E. Collatz. 1990. Nucleotide sequence of the SHV-5 ß-lactamase gene of a Klebsiella pneumoniae plasmid. Antimicrob. Agents Chemother. 34:2439-2441.[Abstract/Free Full Text]
  38. 20
  39. Blazquez, J., M. R. Baquero, R. Canton, I. Alos, and F. Baquero. 1993. Characterization of a new TEM-type ß-lactamase resistant to clavulanate, sulbactam, and tazobactam in a clinical isolate of Escherichia coli. Antimicrob. Agents Chemother. 37:2059-2063.[Abstract/Free Full Text]
  40. 21
  41. Bonnet, R., J. L. Sampaio, C. Chanal, D. Sirot, C. De Champs, J. L. Viallard, R. Labia, and J. Sirot. 2000. A novel class A extended-spectrum ß-lactamase (BES-1) in Serratia marcescens isolated in Brazil. Antimicrob. Agents Chemother. 44:3061-3068.[Abstract/Free Full Text]
  42. 22
  43. Boschi, L., P. S. Mercuri, M. L. Riccio, G. Amicosante, M. Galleni, J. M. Frère, and G. M. Rossolini. 2000. The Legionella (Fluoribacter) gormanii metallo-ß-lactamase: a new member of the highly divergent lineage of molecular-subclass B3 ß-lactamases. Antimicrob. Agents Chemother. 44:1538-1543.[Abstract/Free Full Text]
  44. 23
  45. Bradford, P. A., C. Urban, N. Mariano, S. J. Projan, J. J. Rahal, and K. Bush. 1997. Imipenem resistance in Klebsiella pneumoniae is associated with the combination of ACT-1, a plasmid-mediated AmpC ß-lactamase, and the loss of an outer membrane protein. Antimicrob. Agents Chemother. 41:563-569.[Abstract]
  46. 24
  47. Castanheira, M., M. A. Toleman, R. N. Jones, F. J. Schmidt, and T. R. Walsh. 2004. Molecular characterization of a ß-lactamase gene, blaGIM-1, encoding a new subclass of metallo-ß-lactamase. Antimicrob. Agents Chemother. 48:4654-4661.[Abstract/Free Full Text]
  48. 25
  49. Chanal, C., M. C. Poupart, D. Sirot, R. Labia, J. Sirot, and R. Cluzel. 1992. Nucleotide sequences of CAZ-2, CAZ-6, and CAZ-7 ß-lactamase genes. Antimicrob. Agents Chemother. 36:1817-1820.[Abstract/Free Full Text]
  50. 26
  51. Chanal, C., D. Sirot, H. Malaure, M. C. Poupart, and J. Sirot. 1994. Sequences of CAZ-3 and CTX-2 extended-spectrum ß-lactamase genes. Antimicrob. Agents Chemother. 38:2452-2453.[Abstract/Free Full Text]
  52. 27
  53. Chen, Y., J. Succi, F. C. Tenover, and T. M. Koehler. 2003. ß-Lactamase genes of the penicillin-susceptible Bacillus anthracis Sterne strain. J. Bacteriol. 185:823-830.[Abstract/Free Full Text]
  54. 28
  55. Cheung, T. K., P. L. Ho, P. C. Woo, K. Y. Yuen, and P. Y. Chau. 2002. Cloning and expression of class A ß-lactamase gene blaABPS in Burkholderia pseudomallei. Antimicrob. Agents Chemother. 46:1132-1135.[Abstract/Free Full Text]
  56. 29
  57. Choury, D., M. F. Szajnert, M. L. Joly-Guillou, K. Azibi, M. Delpech, and G. Paul. 2000. Nucleotide sequence of the blaRTG-2 (CARB-5) gene and phylogeny of a new group of carbenicillinases. Antimicrob. Agents Chemother. 44:1070-1074.[Abstract/Free Full Text]
  58. 30
  59. Colombo, M. L., S. Hanique, S. L. Baurin, C. Bauvois, K. De Vriendt, J. J. Van Beeumen, J. M. Frère, and B. Joris. 2004. The ybxI gene of Bacillus subtilis 168 encodes a class D ß-lactamase of low activity. Antimicrob. Agents Chemother. 48:484-490.[Abstract/Free Full Text]
  60. 31
  61. Datta, N., and P. Kontomichalou. 1965. Penicillinase synthesis controlled by infectious R factors in Enterobacteriaceae. Nature (London) 208:239-241.[CrossRef][Medline]
  62. 32
  63. Datz, M., B. Joris, E. A. Azab, M. Galleni, J. Van Beeumen, J. M. Frère, and H. H. Martin. 1994. A common system controls the induction of very different genes. The class-A ß-lactamase of Proteus vulgaris and the enterobacterial class-C ß-lactamase. Eur. J. Biochem. 226:149-157.[Medline]
  64. 33
  65. Decousser, J. W., L. Poirel, and P. Nordmann. 2001. Characterization of a chromosomally encoded extended-spectrum class A ß-lactamase from Kluyvera cryocrescens. Antimicrob. Agents Chemother. 45:3595-3598.[Abstract/Free Full Text]
  66. 34
  67. Deschaseaux, M. L., M. Jouvenot, G. L. Adessi, and Y. Michel-Briand. 1988. Two presumed novel ß-lactamases in members of the family Enterobacteriaceae. J. Antimicrob. Chemother. 21:133-135.[Medline]
  68. 35
  69. Docquier, J. D., F. Pantanella, F. Giuliani, M. C. Thaller, G. Amicosante, M. Galleni, J. M. Frère, K. Bush, and G. M. Rossolini. 2002. CAU-1, a subclass B3 metallo-ß-lactamase of low substrate affinity encoded by an ortholog present in the Caulobacter crescentus chromosome. Antimicrob. Agents Chemother. 46:1823-1830.[Abstract/Free Full Text]
  70. 36
  71. Donald, H. M., W. Scaife, S. G. Amyes, and H. K. Young. 2000. Sequence analysis of ARI-1, a novel OXA ß-lactamase, responsible for imipenem resistance in Acinetobacter baumannii 6B92. Antimicrob. Agents Chemother. 44:196-199.[Abstract/Free Full Text]
  72. 37
  73. Eliasson, I., and C. Kamme. 1985. Characterization of the plasmid-mediated ß-lactamase in Branhamella catarrhalis, with special reference to substrate affinity. J. Antimicrob. Chemother. 15:139-149.[Abstract/Free Full Text]
  74. 38
  75. Fevre, C., M. Jbel, V. Passet, F. X. Weill, P. A. Grimont, and S. Brisse. 2005. Six groups of the OXY ß-lactamase evolved over millions of years in Klebsiella oxytoca. Antimicrob. Agents Chemother. 49:3453-3462.[Abstract/Free Full Text]
  76. 39
  77. Fihman, V., M. Rottman, Y. Benzerara, F. Delisle, R. Labia, A. Philippon, and G. Arlet. 2002. BUT-1: a new member in the chromosomal inducible class C ß-lactamases family from a clinical isolate of Buttiauxella sp. FEMS Microbiol. Lett. 213:103-111.[Medline]
  78. 40
  79. Flemming, P. C., M. Goldner, and D. G. Glass. 1963. Observations on the nature, distribution, and significance of cephalosporinase. Lancet i:1399-1401.
  80. 41
  81. Fosse, T., C. Giraud-Morin, I. Madinier, and R. Labia. 2003. Sequence analysis and biochemical characterisation of chromosomal CAV-1 (Aeromonas caviae), the parental cephalosporinase of plasmid-mediated AmpC ‘FOX’ cluster. FEMS Microbiol. Lett. 222:93-98.[CrossRef][Medline]
  82. 42
  83. Fournier, B., P. H. Roy, P. H. Lagrange, and A. Philippon. 1996. Chromosomal ß-lactamase genes of Klebsiella oxytoca are divided into two main groups, blaOXY-1 and blaOXY-2. Antimicrob. Agents Chemother. 40:454-459.[Abstract]
  84. 43
  85. Gaillot, O., C. Clement, M. Simonet, and A. Philippon. 1997. Novel transferable ß-lactam resistance with cephalosporinase characteristics in Salmonella enteritidis. J. Antimicrob. Chemother. 39:85-87.[Abstract/Free Full Text]
  86. 44
  87. Galan, J. C., M. Reig, A. Navas, F. Baquero, and J. Blazquez. 2000. ACI-1 from Acidaminococcus fermentans: characterization of the first ß-lactamase in anaerobic cocci. Antimicrob. Agents Chemother. 44:3144-3149.[Abstract/Free Full Text]
  88. 45
  89. Giakkoupi, P., L. S. Tzouvelekis, A. Tsakris, V. Loukova, D. Sofianou, and E. Tzelepi. 2000. IBC-1, a novel integron-associated class A ß-lactamase with extended-spectrum properties produced by an Enterobacter cloacae clinical strain. Antimicrob. Agents Chemother. 44:2247-2253.[Abstract/Free Full Text]
  90. 46
  91. Gonzalez Leiza, M., J. C. Perez-Diaz, J. Ayala, J. M. Casellas, J. Martinez-Beltran, K. Bush, and F. Baquero. 1994. Gene sequence and biochemical characterization of FOX-1 from Klebsiella pneumoniae, a new AmpC-type plasmid-mediated ß-lactamase with two molecular variants. Antimicrob. Agents Chemother. 38:2150-2157.[Abstract/Free Full Text]
  92. 47
  93. Granier, S. A., V. Leflon-Guibout, M. H. Nicolas-Chanoine, K. Bush, and F. W. Goldstein. 2002. The extended-spectrum K1 ß-lactamase from Klebsiella oxytoca SC 10,436 is a member of the bla(OXY-2) family of chromosomal Klebsiella enzymes. Antimicrob. Agents Chemother. 46:2056-2057.[Free Full Text]
  94. 48
  95. Hæggman, S., S. Löfdahl, A. Paauw, J. Verhoef, and S. Brisse. 2004. Diversity and evolution of the class A chromosomal ß-lactamase gene in Klebsiella pneumoniae. Antimicrob. Agents Chemother. 48:2400-2408.[Abstract/Free Full Text]
  96. 49
  97. Hall, L. M. C., D. M. Livermore, D. Gur, M. Akova, and H. E. Akalin. 1993. OXA-11, an extended-spectrum variant of OXA-10(PSE-2) ß-lactamase from Pseudomonas aeruginosa. Antimicrob. Agents Chemother. 37:1637-1644.[Abstract/Free Full Text]
  98. 50
  99. Hayes, M. V., C. J. Thomson, and S. G. Amyes. 1994. Three beta-lactamases isolated from Aeromonas salmonicida, including a carbapenemase not detectable by conventional methods. Eur. J. Clin. Microbiol. Infect. Dis. 13:805-811.[CrossRef][Medline]
  100. 51
  101. Hedges, R. W., N. Datta, P. Kontomichalou, and J. T. Smith. 1974. Molecular specificities of R factor-determined beta-lactamases: correlation with plasmid compatibility. J. Bacteriol. 117:56-62.[Abstract/Free Full Text]
  102. 52
  103. Hedges, R. W., and M. Matthew. 1979. Acquisition by Escherichia coli of plasmid-borne ß-lactamases normally confined to Pseudomonas spp. Plasmid 2:269-278.[CrossRef][Medline]
  104. 53
  105. Hedges, R. W., A. A. Medeiros, M. Cohenford, and G. A. Jacoby. 1985. Genetic and biochemical properties of AER-1, a novel carbenicillin-hydrolyzing ß-lactamase from Aeromonas hydrophila. Antimicrob. Agents Chemother. 27:479-484.[Abstract/Free Full Text]
  106. 54
  107. Henriques, I., A. Moura, A. Alves, M. J. Saavedra, and A. Correia. 2004. Molecular characterization of a carbapenem-hydrolyzing class A ß-lactamase, SFC-1, from Serratia fonticola UTAD54. Antimicrob. Agents Chemother. 48:2321-2324.[Abstract/Free Full Text]
  108. 55
  109. Horii, T., Y. Arakawa, M. Ohta, S. Ichiyama, R. Wacharotayankun, and N. Kato. 1993. Plasmid-mediated AmpC-type ß-lactamase isolated from Klebsiella pneumoniae confers resistance to broad-spectrum ß-lactams, including moxalactam. Antimicrob. Agents Chemother. 37:984-990.[Abstract/Free Full Text]
  110. 56
  111. Hujer, K. M., N. S. Hamza, A. M. Hujer, F. Perez, M. S. Helfand, C. R. Bethel, J. M. Thomson, V. E. Anderson, M. Barlow, L. B. Rice, F. C. Tenover, and R. A. Bonomo. 2005. Identification of a new allelic variant of the Acinetobacter baumannii cephalosporinase, ADC-7 ß-lactamase: defining a unique family of class C enzymes. Antimicrob. Agents Chemother. 49:2941-2948.[Abstract/Free Full Text]
  112. 57
  113. Humeniuk, C., G. Arlet, V. Gautier, P. Grimont, R. Labia, and A. Philippon. 2002. Beta-lactamases of Kluyvera ascorbata, probable progenitors of some plasmid-encoded CTX-M types. Antimicrob. Agents Chemother. 46:3045-3049.[Abstract/Free Full Text]
  114. 58
  115. Ishii, Y., A. Ohno, H. Taguchi, S. Imajo, M. Ishiguro, and H. Matsuzawa. 1995. Cloning and sequencing of the gene encoding a cefotaxime-hydrolyzing class A ß-lactamase isolated from Escherichia coli. Antimicrob. Agents Chemother. 39:2269-2275.[Abstract]
  116. 59
  117. Iyobe, S., M. Tsunoda, and S. Mitsuhashi. 1994. Cloning and expression in Enterobacteriaceae of the extended-spectrum ß-lactamase gene from a Pseudomonas aeruginosa plasmid. FEMS Microbiol. Lett. 121:175-180.[Medline]
  118. 60
  119. Jack, G. W., and M. H. Richmond. 1970. A comparative study of eight distinct ß-lactamases synthesized by gram-negative bacteria. J. Gen. Microbiol. 61:43-61.[Abstract/Free Full Text]
  120. 61
  121. Jacoby, G. A., and L. Sutton. 1991. Properties of plasmids responsible for extended-spectrum ß-lactamase production. Antimicrob. Agents Chemother. 35:164-169.[Abstract/Free Full Text]
  122. 62
  123. Jones, M. E., and P. M. Bennett. 1995. Inducible expression of the chromosomal cdiA from Citrobacter diversus NF85, encoding an ambler class A ß-lactamase, is under similar genetic control to the chromosomal ampC, encoding an Ambler class C enzyme, from Citrobacter freundii OS60. Microb. Drug Resist. 1:285-291.[Medline]
  124. 63
  125. Kong, K. F., S. R. Jayawardena, A. Del Puerto, L. Wiehlmann, U. Laabs, B. Tümmler, and K. Mathee. 2005. Characterization of poxB, a chromosomal-encoded Pseudomonas aeruginosa oxacillinase. Gene 358:82-92.[CrossRef][Medline]
  126. 64
  127. Kunugita, C., F. Higashitani, A. Hyodo, N. Unemi, and M. Inoue. 1995. Characterization of a new plasmid-mediated extended-spectrum ß-lactamase from Serratia marcescens. J. Antibiotics 48:1453-1459.[Medline]
  128. 65
  129. Kuwabara, S., and E. P. Abraham. 1969. Some properties of two cell-bound ß-lactamases from Bacillus cereus 569/H. Biochem. J. 115:859-861.[Medline]
  130. 66
  131. Labia, R., M. Guionie, M. Barthélémy, and A. Philippon. 1981. Properties of three carbenicillin-hydrolyzing ß-lactamases (CARB) from Pseudomonas aeruginosa: identification of a new enzyme. J. Antimicrob. Chemother. 7:49-56.[Abstract/Free Full Text]
  132. 67
  133. Lartigue, M. F., L. Poirel, N. Fortineau, and P. Nordmann. 2005. Chromosome-borne class A BOR-1 ß-lactamase of Bordetella bronchiseptica and Bordetella parapertussis. Antimicrob. Agents Chemother. 49:2565-2567.[Abstract/Free Full Text]
  134. 68
  135. Lau, S. K., P. L. Ho, M. W. Li, H. W. Tsoi, R. W. Yung, P. C. Woo, and K. Y. Yuen. 2005. Cloning and characterization of a chromosomal class C ß-lactamase and its regulatory gene in Laribacter hongkongensis. Antimicrob. Agents Chemother. 49:1957-1964.[Abstract/Free Full Text]
  136. 69
  137. Laurent, F., L. Poirel, T. Naas, E. B. Chaibi, R. Labia, P. Boiron, and P. Nordmann. 1999. Biochemical-genetic analysis and distribution of FAR-1, a class A ß-lactamase from Nocardia farcinica. Antimicrob. Agents Chemother. 43:1644-1650.[Abstract/Free Full Text]
  138. 70
  139. Lauretti, L., M. L. Riccio, A. Mazzariol, G. Cornaglia, G. Amicosante, R. Fontana, and G. M. Rossolini. 1999. Cloning and characterization of blaVIM, a new integron-borne metallo-ß-lactamase gene from a Pseudomonas aeruginosa clinical isolate. Antimicrob. Agents Chemother. 43:1584-1590.[Abstract/Free Full Text]
  140. 71
  141. Lee, K., J. H. Yum, D. Yong, H. M. Lee, H. D. Kim, J. D. Docquier, G. M. Rossolini, and Y. Chong. 2005. Novel acquired metallo-ß-lactamase gene, blaSIM-1, in a class 1 integron from Acinetobacter baumannii clinical isolates from Korea. Antimicrob. Agents Chemother. 49:4485-4491.[Abstract/Free Full Text]
  142. 72
  143. Lee, S. H., S. H. Jeong, J.-I. Wachino, Y. Arakawa, L. Poirel, and P. Nordmann. 2005. Nomenclature of GES-type extended-spectrum ß-lactamases. Antimicrob. Agents Chemother. 49:2148-2150.[Free Full Text]
  144. 73
  145. Levesque, R. C., R. Letarte, and J. C. Pechère. 1983. Comparative study of the beta-lactamase activity found in Achromobacter. Can. J. Microbiol. 29:819-826.[Medline]
  146. 74
  147. Liassine, N., S. Madec, B. Ninet, C. Metral, M. Fouchereau-Peron, R. Labia, and R. Auckenthaler. 2002. Postneurosurgical meningitis due to Proteus penneri with selection of a ceftriaxone-resistant isolate: analysis of chromosomal class A ß-lactamase HugA and its LysR-type regulatory protein HugR. Antimicrob. Agents Chemother. 46:216-219.[Abstract/Free Full Text]
  148. 75
  149. Livermore, D. M., and C. S. Jones. 1986. Characterization of NPS-1, a novel plasmid-mediated ß-lactamase, from two Pseudomonas aeruginosa isolates. Antimicrob. Agents Chemother. 29:99-103.[Abstract/Free Full Text]
  150. 76
  151. Livermore, D. M., J. P. Maskell, and J. D. Williams. 1984. Detection of PSE-2 ß-lactamase in enterobacteria. Antimicrob. Agents Chemother. 25:268-272.[Abstract/Free Full Text]
  152. 77
  153. Mammeri, H., S. Bellais, and P. Nordmann. 2002. Chromosome-encoded ß-lactamases TUS-1 and MUS-1 from Myroides odoratus and Myroides odoratimimus (formerly Flavobacterium odoratum), new members of the lineage of molecular subclass B1 metalloenzymes. Antimicrob. Agents Chemother. 46:3561-3567.[Abstract/Free Full Text]
  154. 78
  155. Mammeri, H., L. Poirel, N. Mangeney, and P. Nordmann. 2003. Chromosomal integration of a cephalosporinase gene from Acinetobacter baumannii into Oligella urethralis as a source of acquired resistance to ß-lactams. Antimicrob. Agents Chemother. 47:1536-1542.[Abstract/Free Full Text]
  156. 79
  157. Massidda, O., G. M. Rossolini, and G. Satta. 1991. The Aeromonas hydrophila cphA gene: molecular heterogeneity among class B metallo-beta-lactamases. J. Bacteriol. 173:4611-4617.[Abstract/Free Full Text]
  158. 80
  159. Matsumoto, Y., F. Ikeda, T. Kamimura, Y. Yokota, and Y. Mine. 1988. Novel plasmid-mediated ß-lactamase from Escherichia coli that inactivates oxyimino-cephalosporins. Antimicrob. Agents Chemother. 32:1243-1246.[Abstract/Free Full Text]
  160. 81
  161. Matsumoto, Y., and M. Inoue. 1999. Characterization of SFO-1, a plasmid-mediated inducible class A ß-lactamase from Enterobacter cloacae. Antimicrob. Agents Chemother. 43:307-313.[Abstract/Free Full Text]
  162. 82
  163. Matsumura, N., S. Minami, and S. Mitsuhashi. 1998. Sequences of homologous ß-lactamases from clinical isolates of Serratia marcescens with different substrate specificities. Antimicrob. Agents Chemother. 42:176-179.[Abstract/Free Full Text]
  164. 83
  165. Matsumura, N., and S. Mitsuhashi. 1995. A ß-lactamase from Serratia marcescens hydrolyzing the 2-carboxypenam T-5575. Antimicrob. Agents Chemother. 39:2132-2134.[Abstract]
  166. 84
  167. Matthew, M., A. M. Harris, M. J. Marshall, and G. W. Ross. 1975. The use of analytical isoelectric focusing for detection and identification of ß-lactamases. J. Gen. Microbiol. 88:169-178.[Medline]
  168. 85
  169. Matthew, M., and R. W. Hedges. 1976. Analytical isoelectric focusing of R factor determined ß-lactamases: correlation with plasmid compatibility. J. Bacteriol. 125:713-718.[Abstract/Free Full Text]
  170. 86
  171. Matthew, M., R. W. Hedges, and J. T. Smith. 1979. Types of ß-lactamase determined by plasmids in gram-negative bacteria. J. Bacteriol. 138:657-662.[Abstract/Free Full Text]
  172. 87
  173. Medeiros, A. A., M. Cohenford, and G. A. Jacoby. 1985. Five novel plasmid-determined ß-lactamases. Antimicrob. Agents Chemother. 27:715-719.[Abstract/Free Full Text]
  174. 88
  175. Medeiros, A. A., R. W. Hedges, and G. A. Jacoby. 1982. Spread of a "Pseudomonas-specific" ß-lactamase to plasmids of enterobacteria. J. Bacteriol. 149:700-707.[Abstract/Free Full Text]
  176. 89
  177. Morin, A. S., L. Poirel, F. Mory, R. Labia, and P. Nordmann. 2002. Biochemical-genetic analysis and distribution of DES-1, an Ambler class A extended-spectrum ß-lactamase from Desulfovibrio desulfuricans. Antimicrob. Agents Chemother. 46:3215-3222.[Abstract/Free Full Text]
  178. 90
  179. Naas, T., S. Bellais, and P. Nordmann. 2003. Molecular and biochemical characterization of a carbapenem-hydrolysing ß-lactamase from Flavobacterium johnsoniae. J. Antimicrob. Chemother. 51:267-273.[Abstract/Free Full Text]
  180. 91
  181. Naas, T., and P. Nordmann. 1994. Analysis of a carbapenem-hydrolyzing class A ß-lactamase from Enterobacter cloacae and of its LysR-type regulatory protein. Proc. Natl. Acad. Sci. USA 91:7693-7697.[Abstract/Free Full Text]
  182. 92
  183. Naas, T., L. Vandel, W. Sougakoff, D. M. Livermore, and P. Nordmann. 1994. Cloning and sequence analysis of the gene for a carbapenem-hydrolyzing class A ß-lactamase, Sme-1, from Serratia marcescens S6. Antimicrob. Agents Chemother. 38:1262-1270.[Abstract/Free Full Text]
  184. 93
  185. Nadjar, D., R. Labia, C. Cerceau, C. Bizet, A. Philippon, and G. Arlet. 2001. Molecular characterization of chromosomal class C ß-lactamase and its regulatory gene in Ochrobactrum anthropi. Antimicrob. Agents Chemother. 45:2324-2330.[Abstract/Free Full Text]
  186. 94
  187. Nakano, R., R. Okamoto, Y. Nakano, K. Kaneko, N. Okitsu, Y. Hosaka, and M. Inoue. 2004. CFE-1, a novel plasmid-encoded AmpC ß-lactamase with an ampR gene originating from Citrobacter freundii. Antimicrob. Agents Chemother. 48:1151-1158.[Abstract/Free Full Text]
  188. 95
  189. Nordmann, P., E. Ronco, T. Naas, C. Duport, Y. Michel-Briand, and R. Labia. 1993. Characterization of a novel extended-spectrum ß-lactamase from Pseudomonas aeruginosa. Antimicrob. Agents Chemother. 37:962-969.[Abstract/Free Full Text]
  190. 96
  191. O'Hara, K., S. Haruta, T. Sawai, M. Tsunoda, and S. Iyobe. 1998. Novel metallo ß-lactamase mediated by a Shigella flexneri plasmid. FEMS Microbiol. Lett. 162:201-206.[Medline]
  192. 97
  193. Ohsuka, S., Y. Arakawa, T. Horii, H. Ito, and M. Ohta. 1995. Effect of pH on activities of novel ß-lactamases and ß-lactamase inhibitors against these ß-lactamases. Antimicrob. Agents Chemother. 39:1856-1858.[Abstract]
  194. 98
  195. Osano, E., Y. Arakawa, R. Wacharotayankun, M. Ohta, T. Horii, H. Ito, F. Yoshimura, and N. Kato. 1994. Molecular characterization of an enterobacterial metallo-ß-lactamase found in a clinical isolate of Serratia marcescens that shows imipenem resistance. Antimicrob. Agents Chemother. 38:71-78.[Abstract/Free Full Text]
  196. 99
  197. Papanicolaou, G. A., A. A. Medeiros, and G. A. Jacoby. 1990. Novel plasmid-mediated ß-lactamase (MIR-1) conferring resistance to oxyimino- and alpha-methoxy ß-lactams in clinical isolates of Klebsiella pneumoniae. Antimicrob. Agents Chemother. 34:2200-2209.[Abstract/Free Full Text]
  198. 100
  199. Parker, A. C., and C. J. Smith. 1993. Genetic and biochemical analysis of a novel Ambler class A ß-lactamase responsible for cefoxitin resistance in Bacteroides species. Antimicrob. Agents Chemother. 37:1028-1036.[Abstract/Free Full Text]
  200. 101
  201. Paton, R., R. Miles, J. Hood, and A. SGB. 1993. ARI 1: ß-lactamase-mediated imipenem resistance in Acinetobacter baumannii. Int. J. Antimicrob. Agents 2:81-88.[Medline]
  202. 102
  203. Payne, D. J., J. Hood, M. S. Marriott, and S. G. B. Amyes. 1990. Separation of plasmid-mediated extended spectrum ß-lactamases by fast protein liquid chromotography (FPLC system). FEMS Microbiol. Lett. 69:195-200.
  204. 103
  205. Payne, D. J., M. S. Marriott, and S. G. B. Amyes. 1989. TEM-E1: a novel ß-lactamase conferring resistance to ceftazidime. FEMS Microbiol. Lett. 59:97-100.
  206. 104
  207. Péduzzi, J., M. Barthélémy, K. Tiwari, D. Mattioni, and R. Labia. 1989. Structural features related to hydrolytic activity against ceftazidime of plasmid-mediated SHV-type CAZ-5 ß-lactamase. Antimicrob. Agents Chemother. 33:2160-2163.[Abstract/Free Full Text]
  208. 105
  209. Perilli, M., A. Felici, N. Franceschini, A. De Santis, L. Pagani, F. Luzzaro, A. Oratore, G. M. Rossolini, J. R. Knox, and G. Amicosante. 1997. Characterization of a new TEM-derived ß-lactamase produced in a Serratia marcescens strain. Antimicrob. Agents Chemother. 41:2374-2382.[Abstract]
  210. 106
  211. Petit, A., D. L. Sirot, C. M. Chanal, J. L. Sirot, R. Labia, G. Gerbaud, and R. A. Cluzel. 1988. Novel plasmid-mediated ß-lactamase in clinical isolates of Klebsiella pneumoniae more resistant to ceftazidime than to other broad-spectrum cephalosporins. Antimicrob. Agents Chemother. 32:626-630.[Abstract/Free Full Text]
  212. 107
  213. Petrella, S., D. Clermont, I. Casin, V. Jarlier, and W. Sougakoff. 2001. Novel class A ß-lactamase Sed-1 from Citrobacter sedlakii: genetic diversity of ß-lactamases within the Citrobacter genus. Antimicrob. Agents Chemother. 45:2287-2298.[Abstract/Free Full Text]
  214. 108
  215. Philippon, A., R. Labia, and G. Jacoby. 1989. Extended-spectrum ß-lactamases. Antimicrob. Agents Chemother. 33:1131-1136.[Free Full Text]
  216. 109
  217. Philippon, A., G. Paul, M. Barthelemy, R. Labia, and P. Nevot. 1980. Properties of the beta-lactamase (penicillinase) produced by Levinea malonatica. FEMS Microbiol. Lett. 8:191-194.[CrossRef]
  218. 110
  219. Pitton, J. S. 1972. Mechanism of the bacterial resistance to antibiotics, p. 15-93. In R. H. E. A. Adrian (ed.), Reviews of physiology. Springer-Verlag, Berlin, Germany.
  220. 111
  221. Poirel, L., L. Brinas, A. Verlinde, L. Ide, and P. Nordmann. 2005. BEL-1, a novel clavulanic acid-inhibited extended-spectrum ß-lactamase, and the class 1 integron In120 in Pseudomonas aeruginosa. Antimicrob. Agents Chemother. 49:3743-3748.[Abstract/Free Full Text]
  222. 112
  223. Poirel, L., M. Gniadkowski, and P. Nordmann. 2002. Biochemical analysis of the ceftazidime-hydrolysing extended-spectrum ß-lactamase CTX-M-15 and of its structurally related ß-lactamase CTX-M-3. J. Antimicrob. Chemother. 50:1031-1034.[Abstract/Free Full Text]
  224. 113
  225. Poirel, L., C. Heritier, and P. Nordmann. 2005. Genetic and biochemical characterization of the chromosome-encoded class B ß-lactamases from Shewanella livingstonensis (SLB-1) and Shewanella frigidimarina (SFB-1). J. Antimicrob. Chemother. 55:680-685.[Abstract/Free Full Text]
  226. 114
  227. Poirel, L., P. Kampfer, and P. Nordmann. 2002. Chromosome-encoded Ambler class A ß-lactamase of Kluyvera georgiana, a probable progenitor of a subgroup of CTX-M extended-spectrum ß-lactamases. Antimicrob. Agents Chemother. 46:4038-4040.[Abstract/Free Full Text]
  228. 115
  229. Poirel, L., F. Laurent, T. Naas, R. Labia, P. Boiron, and P. Nordmann. 2001. Molecular and biochemical analysis of AST-1, a class A ß-lactamase from Nocardia asteroides sensu stricto. Antimicrob. Agents Chemother. 45:878-882.[Abstract/Free Full Text]
  230. 116
  231. Poirel, L., I. Le Thomas, T. Naas, A. Karim, and P. Nordmann. 2000. Biochemical sequence analyses of GES-1, a novel class A extended-spectrum ß-lactamase, and the class 1 integron In52 from Klebsiella pneumoniae. Antimicrob. Agents Chemother. 44:622-632.[Abstract/Free Full Text]
  232. 117
  233. Poirel, L., T. Naas, M. Guibert, E. B. Chaibi, R. Labia, and P. Nordmann. 1999. Molecular and biochemical characterization of VEB-1, a novel class A extended-spectrum ß-lactamase encoded by an Escherichia coli integron gene. Antimicrob. Agents Chemother. 43:573-581.[Abstract/Free Full Text]
  234. 118
  235. Rasmussen, B. A., K. Bush, D. Keeney, Y. Yang, R. Hare, C. O'Gara, and A. A. Medeiros. 1996. Characterization of IMI-1 ß-lactamase, a class A carbapenem-hydrolyzing enzyme from Enterobacter cloacae. Antimicrob. Agents Chemother. 40:2080-2086.[Abstract]
  236. 119
  237. Rasmussen, B. A., Y. Gluzman, and F. P. Tally. 1990. Cloning and sequencing of the class B ß-lactamase gene (ccrA) from Bacteroides fragilis TAL3636. Antimicrob. Agents Chemother. 34:1590-1592.[Abstract/Free Full Text]
  238. 120
  239. Rasmussen, B. A., D. Keeney, Y. Yang, and K. Bush. 1994. Cloning and expression of a cloxacillin-hydrolyzing enzyme and a cephalosporinase from Aeromonas sobria AER 14M in Escherichia coli: requirement for an E. coli chromosomal mutation for efficient expression of the class D enzyme. Antimicrob. Agents Chemother. 38:2078-2085.[Abstract/Free Full Text]
  240. 121
  241. Rasmussen, B. A., Y. Yang, N. Jacobus, and K. Bush. 1994. Contribution of enzymatic properties, cell permeability, and enzyme expression to microbiological activities of ß-lactams in three Bacteroides fragilis isolates that harbor a metallo-ß-lactamase gene. Antimicrob. Agents Chemother. 38:2116-2120.[Abstract/Free Full Text]
  242. 122
  243. Reid, A. J., and S. G. B. Amyes. 1986. Plasmid penicillin resistance in Vibrio cholerae: identification of the new ß-lactamase SAR-1. Antimicrob. Agents Chemother. 30:245-247.[Abstract/Free Full Text]
  244. 123
  245. Reid, A. J., I. N. Simpson, P. B. Harper, and S. G. B. Amyes. 1988. The differential expression of genes for the PSE-4 ß-lactamase in Pseudomonas aeruginosa and the Enterobacteriaceae. J. Antimicrob. Chemother. 21:525-533.[Abstract/Free Full Text]
  246. 124
  247. Rice, L. B., S. H. Marshall, L. L. Carias, L. Sutton, and G. A. Jacoby. 1993. Sequences of MGH-1, YOU-1, and YOU-2 extended-spectrum ß-lactamase genes. Antimicrob. Agents Chemother. 37:2760-2761.[Abstract/Free Full Text]
  248. 125
  249. Rice, L. B., S. H. Willey, G. A. Papanicolaou, A. A. Medeiros, G. M. Eliopoulos, R. C. Moellering, Jr., and G. A. Jacoby. 1990. Outbreak of ceftazidime resistance caused by extended-spectrum ß-lactamases at a Massachusetts chronic-care facility. Antimicrob. Agents Chemother. 34:2193-2199.[Abstract/Free Full Text]
  250. 126
  251. Richmond, M. H. 1963. Purification and properties of the exopenicillinase from Staphylococcus aureus. Biochem. J. 88:452-459.[Medline]
  252. 127
  253. Rogers, M. B., A. C. Parker, and C. J. Smith. 1993. Cloning and characterization of the endogenous cephalosporinase gene, cepA, from Bacteroides fragilis reveals a new subgroup of Ambler class A ß-lactamases. Antimicrob. Agents Chemother. 37:2391-2400.[Abstract/Free Full Text]
  254. 128
  255. Rossolini, G. M., M. A. Condemi, F. Pantanella, J. D. Docquier, G. Amicosante, and M. C. Thaller. 2001. Metallo-ß-lactamase producers in environmental microbiota: new molecular class B enzyme in Janthinobacterium lividum. Antimicrob. Agents Chemother. 45:837-844.[Abstract/Free Full Text]
  256. 129
  257. Rossolini, G. M., N. Franceschini, M. L. Riccio, P. S. Mercuri, M. Perilli, M. Galleni, J. M. Frere, and G. Amicosante. 1998. Characterization and sequence of the Chryseobacterium (Flavobacterium) meningosepticum carbapenemase: a new molecular class B ß-lactamase showing a broad substrate profile. Biochem. J. 332:145-152.[Medline]
  258. 130
  259. Rubin, L. G., A. A. Medeiros, R. H. Yolken, and E. R. Moxon. 1981. Ampicillin treatment failure of apparently ß-lactamase-negative Haemophilus influenzae type b meningitis due to novel ß-lactamase. Lancet ii:1008-1010.
  260. 131
  261. Saavedra, M. J., L. Peixe, J. C. Sousa, I. Henriques, A. Alves, and A. Correia. 2003. Sfh-I, a subclass B2 metallo-ß-lactamase from a Serratia fonticola environmental isolate. Antimicrob. Agents Chemother. 47:2330-2333.[Abstract/Free Full Text]
  262. 132
  263. Saino, Y., F. Kobayashi, M. Inoue, and S. Mitsuhashi. 1982. Purification and properties of inducible penicillin ß-lactamase isolated from Pseudomonas maltophilia. Antimicrob. Agents Chemother. 22:564-570.[Abstract/Free Full Text]
  264. 133
  265. Shlaes, D. M., A. A. Medeiros, M. A. Kron, C. Currie-McCumber, E. Papa, and C. V. Vartian. 1986. Novel plasmid-mediated ß-lactamase in members of the family Enterobacteriaceae from Ohio. Antimicrob. Agents Chemother. 30:220-224.[Abstract/Free Full Text]
  266. 134
  267. Silva, J., C. Aguilar, G. Ayala, M. A. Estrada, U. Garza-Ramos, R. Lara-Lemus, and L. Ledezma. 2000. TLA-1: a new plasmid-mediated extended-spectrum ß-lactamase from Escherichia coli. Antimicrob. Agents Chemother. 44:997-1003.[Abstract/Free Full Text]
  268. 135
  269. Simm, A. M., C. S. Higgins, S. T. Pullan, M. B. Avison, P. Niumsup, O. Erdozain, P. M. Bennett, and T. R. Walsh. 2001. A novel metallo-ß-lactamase, Mbl1b, produced by the environmental bacterium Caulobacter crescentus. FEBS Lett. 509:350-354.[CrossRef][Medline]
  270. 136
  271. Simpson, I. N., S. J. Plested, M. J. Budin-Jones, J. Lees, R. W. Hedges, and G. A. Jacoby. 1983. Characterisation of a novel plasmid-mediated ß-lactamase and its contribution to ß-lactam resistance in Pseudomonas aeruginosa. FEMS Microbiol. Lett. 19:23-27.
  272. 137
  273. Sirot, D., C. Recule, E. B. Chaibi, L. Bret, J. Croize, C. Chanal-Claris, R. Labia, and J. Sirot. 1997. A complex mutant of TEM-1 ß-lactamase with mutations encountered in both IRT-4 and extended-spectrum TEM-15, produced by an Escherichia coli clinical isolate. Antimicrob. Agents Chemother. 41:1322-1325.[Abstract]
  274. 138
  275. Sirot, D., J. Sirot, R. Labia, A. Morand, P. Courvalin, A. Darfeuille-Michaud, R. Perroux, and R. Cluzel. 1987. Transferable resistance to third-generation cephalosporins in clinical isolates of Klebsiella pneumoniae: identification of CTX-1, a novel ß-lactamase. J. Antimicrob. Chemother. 20:323-334.[Abstract/Free Full Text]
  276. 139
  277. Smith, C. J., T. K. Bennett, and A. C. Parker. 1994. Molecular and genetic analysis of the Bacteroides uniformis cephalosporinase gene, cblA, encoding the species-specific ß-lactamase. Antimicrob. Agents Chemother. 38:1711-1715.[Abstract/Free Full Text]
  278. 140
  279. Sougakoff, W., S. Goussard, G. Gerbaud, and P. Courvalin. 1988. Plasmid-mediated resistance to third-generation cephalosporins caused by point mutations in TEM-type penicillinase genes. Rev. Infect. Dis. 10:879-884.[Medline]
  280. 141
  281. Sougakoff, W., A. Petit, S. Goussard, D. Sirot, A. Bure, and P. Courvalin. 1989. Characterization of the plasmid genes blaT-4 and blaT-5 which encode the broad-spectrum ß-lactamases TEM-4 and TEM-5 in Enterobacteriaceae. Gene 78:339-348.[CrossRef][Medline]
  282. 142
  283. Spencer, R. C., P. F. Wheat, T. G. Winstanley, D. M. Cox, and S. J. Plested. 1987. Novel ß-lactamase in a clinical isolate of Klebsiella pneumoniae conferring unusual resistance to ß-lactam antibiotics. J. Antimicrob. Chemother. 20:919-921.[Free Full Text]
  284. 143
  285. Teo, J. W., A. Suwanto, and C. L. Poh. 2000. Novel ß-lactamase genes from two environmental isolates of Vibrio harveyi. Antimicrob. Agents Chemother. 44:1309-1314.[Abstract/Free Full Text]
  286. 144
  287. Thompson, J. S., and M. H. Malamy. 1990. Sequencing the gene for an imipenem-cefoxitin-hydrolyzing enzyme (CfiA) from Bacteroides fragilis TAL2480 reveals strong similarity between CfiA and Bacillus cereus ß-lactamase II. J. Bacteriol. 172:2584-2593.[Abstract/Free Full Text]
  288. 145
  289. Thomson, C. J., and S. G. Amyes. 1992. TRC-1: emergence of a clavulanic acid-resistant TEM ß-lactamase in a clinical strain. FEMS Microbiol. Lett. 70:113-117.[Medline]
  290. 146
  291. Timm, J., M. G. Perilli, C. Duez, J. Trias, G. Orefici, L. Fattorini, G. Amicosante, A. Oratore, B. Joris, J. M. Frère, et al. 1994. Transcription and expression analysis, using lacZ and phoA gene fusions, of Mycobacterium fortuitum ß-lactamase genes cloned from a natural isolate and a high-level ß-lactamase producer. Mol. Microbiol. 12:491-504.[Medline]
  292. 147
  293. Toleman, M. A., A. M. Simm, T. A. Murphy, A. C. Gales, D. J. Biedenbach, R. N. Jones, and T. R. Walsh. 2002. Molecular characterization of SPM-1, a novel metallo-ß-lactamase isolated in Latin America: report from the SENTRY antimicrobial survillance programme. J. Antimicrob. Chemother. 50:673-679.[Abstract/Free Full Text]
  294. 148
  295. Tzouvelekis, L. S., E. Tzelepi, A. F. Mentis, and A. Tsakris. 1993. Identification of a novel plasmid-mediated ß-lactamase with chromosomal cephalosporinase characteristics from Klebsiella pneumoniae. J. Antimicrob. Chemother. 31:645-654.[Abstract/Free Full Text]
  296. 149
  297. Vedel, G., A. Bellaaouaj, L. Gilly, R. Labia, A. Philippon, P. N. Vot, and G. Paul. 1992. Clinical isolates of Escherichia coli producing TRI ß-lactamases: novel TEM-enzymes conferring resistance to ß-lactamase inhibitors. J. Antimicrob. Chemother. 30:449-462.[Abstract/Free Full Text]
  298. 150
  299. Vimont, S., L. Poirel, T. Naas, and P. Nordmann. 2002. Identification of a chromosome-borne expanded-spectrum class A ß-lactamase from Erwinia persicina. Antimicrob. Agents Chemother. 46:3401-3405.[Abstract/Free Full Text]
  300. 151
  301. Vuye, A., G. Verschraegen, and G. Claeys. 1989. Plasmid-mediated ß-lactamases in clinical isolates of Klebsiella pneumoniae and Escherichia coli resistant to ceftazidime. Antimicrob. Agents Chemother. 33:757-761.[Abstract/Free Full Text]
  302. 152
  303. Walckenaer, E., L. Poirel, V. Leflon-Guibout, P. Nordmann, and M. H. Nicolas-Chanoine. 2004. Genetic and biochemical characterization of the chromosomal class A ß-lactamases of Raoultella (formerly Klebsiella) planticola and Raoultella ornithinolytica. Antimicrob. Agents Chemother. 48:305-312.[Abstract/Free Full Text]
  304. 153
  305. Wallace, R. J., Jr., V. A. Steingrube, D. R. Nash, D. G. Hollis, C. Flanagan, B. A. Brown, A. Labidi, and R. E. Weaver. 1989. BRO ß-lactamases of Branhamella catarrhalis and Moraxella subgenus Moraxella, including evidence for chromosomal ß-lactamase transfer by conjugation in B. catarrhalis, N. nonliquefaciens, and M. lacunata. Antimicrob. Agents Chemother. 33:1845-1854.[Abstract/Free Full Text]
  306. 154
  307. Walsh, T. R., W. A. Neville, M. H. Haran, D. Tolson, D. J. Payne, J. H. Bateson, A. P. MacGowan, and P. M. Bennett. 1998. Nucleotide and amino acid sequences of the metallo-ß-lactamase, ImiS, from Aeromonas veronii bv. sobria. >Antimicrob. Agents Chemother. 42:436-439.[Abstract/Free Full Text]
  308. 155
  309. Watanabe, Y., T. Yokota, Y. Higashi, Y. Wakai, and Y. Mine. 1991. In vitro and in vivo transferrable beta-lactam resistance due to a new plasmid-mediated oxyiminocephalosporinase from a clinical isolate of Proteus mirabilis. Microbiol. Immunol. 35:87-97.[Medline]
  310. 156
  311. Weng, S. F., J. W. Lin, C. H. Chen, Y. Y. Chen, and Y. H. Tseng. 2004. Constitutive expression of a chromosomal class A (BJM group 2) ß-lactamase in Xanthomonas campestris. Antimicrob. Agents Chemother. 48:209-215.[Abstract/Free Full Text]
  312. 157
  313. Woodford, N., D. J. Payne, A. P. Johnson, M. J. Weinbren, R. M. Perinpanayagam, R. C. George, B. D. Cookson, and S. G. B. Amyes. 1990. Transferable cephalosporin resistance not inhibited by clavulanate in Escherichia coli. Lancet 336:253.[Medline]
  314. 158
  315. Yagi, T., H. Kurokawa, K. Senda, S. Ichiyama, H. Ito, S. Ohsuka, K. Shibayama, K. Shimokata, N. Kato, M. Ohta, and Y. Arakawa. 1997. Nosocomial spread of cephem-resistant Escherichia coli strains carrying multiple Toho-1-like ß-lactamase genes. Antimicrob. Agents Chemother. 41:2606-2611.[Abstract]
  316. 159
  317. Yang, Y., G. A. Jacoby, and D. M. Livermore. 1988. LXA-1: a new plasmid-mediated ß-lactamase giving low-level resistance. FEMS Microbiol. Lett. 52:97-102.
  318. 160
  319. Yigit, H., A. M. Queenan, G. J. Anderson, A. Domenech-Sanchez, J. W. Biddle, C. D. Steward, S. Alberti, K. Bush, and F. C. Tenover. 2001. Novel carbapenem-hydrolyzing ß-lactamase, KPC-1, from a carbapenem-resistant strain of Klebsiella pneumoniae. Antimicrob. Agents Chemother. 45:1151-1161.[Abstract/Free Full Text]


Antimicrobial Agents and Chemotherapy, April 2006, p. 1123-1129, Vol. 50, No. 4
0066-4804/06/$08.00+0     doi:10.1128/AAC.50.4.1123-1129.2006
Copyright © 2006, American Society for Microbiology. All Rights Reserved.




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