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Mechanisms of Resistance

Tetracycline Resistance Mediated by tet(M) Has Variable Integrative Conjugative Element Composition in Mycoplasma hominis Strains Isolated in the United Kingdom from 2005 to 2015

Victoria J. Chalker, Martin G. Sharratt, Christopher L. Rees, Oliver H. Bell, Edward Portal, Kirsty Sands, Matthew S. Payne, Lucy C. Jones, Owen B. Spiller
Victoria J. Chalker
aNational Infection Service, Public Health England, London, United Kingdom
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Martin G. Sharratt
bDivision of Infection and Immunity, School of Medicine, Cardiff University, Cardiff, Wales, United Kingdom
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Christopher L. Rees
bDivision of Infection and Immunity, School of Medicine, Cardiff University, Cardiff, Wales, United Kingdom
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Oliver H. Bell
bDivision of Infection and Immunity, School of Medicine, Cardiff University, Cardiff, Wales, United Kingdom
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Edward Portal
bDivision of Infection and Immunity, School of Medicine, Cardiff University, Cardiff, Wales, United Kingdom
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Kirsty Sands
bDivision of Infection and Immunity, School of Medicine, Cardiff University, Cardiff, Wales, United Kingdom
cDepartment of Zoology, University of Oxford, United Kingdom
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Matthew S. Payne
dSchool of Medicine, Division of Obstetrics and Gynaecology, The University of Western Australia, Crawley, Australia
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Lucy C. Jones
bDivision of Infection and Immunity, School of Medicine, Cardiff University, Cardiff, Wales, United Kingdom
eDepartment of Integrated Sexual Health, Dewi Sant Hospital, Cwm Taf Morgannwg University Health Board, Pontypridd, United Kingdom
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Owen B. Spiller
aNational Infection Service, Public Health England, London, United Kingdom
bDivision of Infection and Immunity, School of Medicine, Cardiff University, Cardiff, Wales, United Kingdom
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DOI: 10.1128/AAC.02513-20
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ABSTRACT

A minimal genome and absent bacterial cell wall render Mycoplasma hominis inherently resistant to most antimicrobials except lincosamides, tetracyclines, and fluoroquinolones. Often dismissed as a commensal (except where linked to preterm birth), it causes septic arthritis in immunodeficient patients and is increasingly associated with transplant failure (particularly lung) accompanying immunosuppression. We examined antimicrobial susceptibility (AST) on strains archived from 2005 to 2015 submitted to the Public Health England reference laboratory and determined the underlying mechanism of resistance by whole-genome sequencing (WGS). Archived M. hominis strains included 32/115 from invasive infection (sepsis, cerebrospinal [CSF], peritoneal, and pleural fluid) over the 10-year period (6.4% of all samples submitted from 2010 to 2015 were positive). No clindamycin resistance was detected, while two strains were resistant to moxifloxacin and levofloxacin (resistance mutations S83L or E87G in gyrA and S81I or E84V in parC). One of these strains and 11 additional strains were tetracycline resistant, mediated by tet(M) carried within an integrative conjugative element (ICE) consistently integrated at the somatic rumA gene; however, the ICEs varied widely in 5 to 19 associated accessory genes. WGS analysis showed that tet(M)-carrying strains were not clonal, refuting previous speculation that the ICE was broken and immobile. We found tet(M)-positive and -negative strains (including the multiresistant 2015 strain) to be equally susceptible to tigecycline and josamycin; however, the British National Formulary does not include guidance for these. Continued M. hominis investigation and AST surveillance (especially immunocompromised patients) is warranted, and the limited number of therapeutics needs to be expanded in the United Kingdom.

FOOTNOTES

    • Received 2 December 2020.
    • Returned for modification 22 December 2020.
    • Accepted 5 January 2021.
    • Accepted manuscript posted online 19 January 2021.
  • Supplemental material is available online only.

  • Copyright © 2021 American Society for Microbiology.

All Rights Reserved.

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Tetracycline Resistance Mediated by tet(M) Has Variable Integrative Conjugative Element Composition in Mycoplasma hominis Strains Isolated in the United Kingdom from 2005 to 2015
Victoria J. Chalker, Martin G. Sharratt, Christopher L. Rees, Oliver H. Bell, Edward Portal, Kirsty Sands, Matthew S. Payne, Lucy C. Jones, Owen B. Spiller
Antimicrobial Agents and Chemotherapy Mar 2021, 65 (4) e02513-20; DOI: 10.1128/AAC.02513-20

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Tetracycline Resistance Mediated by tet(M) Has Variable Integrative Conjugative Element Composition in Mycoplasma hominis Strains Isolated in the United Kingdom from 2005 to 2015
Victoria J. Chalker, Martin G. Sharratt, Christopher L. Rees, Oliver H. Bell, Edward Portal, Kirsty Sands, Matthew S. Payne, Lucy C. Jones, Owen B. Spiller
Antimicrobial Agents and Chemotherapy Mar 2021, 65 (4) e02513-20; DOI: 10.1128/AAC.02513-20
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KEYWORDS

Mycoplasma hominis
epidemiology
United Kingdom
antimicrobial resistance
genomics
Mycoplasma
antibiotic resistance
antimicrobial activity
genome analysis
integral conjugative element
tetracyclines

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