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Experimental Therapeutics

In Vitro and In Vivo Characterization of Potent Antileishmanial Methionine Aminopeptidase 1 Inhibitors

Felipe Rodriguez, Sarah F. John, Eva Iniguez, Sebastian Montalvo, Karina Michael, Lyndsey White, Dong Liang, Omonike A. Olaleye, Rosa A. Maldonado
Felipe Rodriguez
aDepartment of Biological Sciences, Border Biomedical Research Center, The University of Texas at El Paso, El Paso, Texas, USA
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Sarah F. John
bCollege of Pharmacy and Health Sciences, Texas Southern University, Houston, Texas, USA
dHarris Health Systems, Houston, Texas, USA
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Eva Iniguez
aDepartment of Biological Sciences, Border Biomedical Research Center, The University of Texas at El Paso, El Paso, Texas, USA
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Sebastian Montalvo
aDepartment of Biological Sciences, Border Biomedical Research Center, The University of Texas at El Paso, El Paso, Texas, USA
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Karina Michael
bCollege of Pharmacy and Health Sciences, Texas Southern University, Houston, Texas, USA
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Lyndsey White
bCollege of Pharmacy and Health Sciences, Texas Southern University, Houston, Texas, USA
cCharles River, Worcester, Massachusetts, USA
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Dong Liang
bCollege of Pharmacy and Health Sciences, Texas Southern University, Houston, Texas, USA
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Omonike A. Olaleye
bCollege of Pharmacy and Health Sciences, Texas Southern University, Houston, Texas, USA
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Rosa A. Maldonado
aDepartment of Biological Sciences, Border Biomedical Research Center, The University of Texas at El Paso, El Paso, Texas, USA
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  • ORCID record for Rosa A. Maldonado
DOI: 10.1128/AAC.01422-19
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ABSTRACT

Leishmania major is the causative agent of cutaneous leishmaniasis (CL). No human vaccine is available for CL, and current drug regimens present several drawbacks, such as emerging resistance, severe toxicity, medium effectiveness, and/or high cost. Thus, the need for better treatment options against CL is a priority. In the present study, we validate the enzyme methionine aminopeptidase 1 of L. major (MetAP1Lm), a metalloprotease that catalyzes the removal of N-terminal methionine from peptides and proteins, as a chemotherapeutic target against CL infection. The in vitro antileishmanial activities of eight novel MetAP1 inhibitors (OJT001 to OJT008) were investigated. Three compounds, OJT006, OJT007, and OJT008, demonstrated potent antiproliferative effects in macrophages infected with L. major amastigotes and promastigotes at submicromolar concentrations, with no cytotoxicity against host cells. Importantly, the leishmanicidal effect in transgenic L. major promastigotes overexpressing MetAP1Lm was diminished by almost 10-fold in comparison to the effect in wild-type promastigotes. Furthermore, the in vivo activities of OJT006, OJT007, and OJT008 were investigated in L. major-infected BALB/c mice. In comparison to the footpad parasite load in the control group, OJT008 decreased the footpad parasite load significantly, by 86%, and exhibited no toxicity in treated mice. We propose MetAP1 inhibitor OJT008 as a potential chemotherapeutic candidate against CL infection caused by L. major infection.

FOOTNOTES

    • Received 20 August 2019.
    • Returned for modification 2 December 2019.
    • Accepted 8 March 2020.
    • Accepted manuscript posted online 16 March 2020.
  • Supplemental material is available online only.

  • Copyright © 2020 American Society for Microbiology.

All Rights Reserved.

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In Vitro and In Vivo Characterization of Potent Antileishmanial Methionine Aminopeptidase 1 Inhibitors
Felipe Rodriguez, Sarah F. John, Eva Iniguez, Sebastian Montalvo, Karina Michael, Lyndsey White, Dong Liang, Omonike A. Olaleye, Rosa A. Maldonado
Antimicrobial Agents and Chemotherapy May 2020, 64 (6) e01422-19; DOI: 10.1128/AAC.01422-19

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In Vitro and In Vivo Characterization of Potent Antileishmanial Methionine Aminopeptidase 1 Inhibitors
Felipe Rodriguez, Sarah F. John, Eva Iniguez, Sebastian Montalvo, Karina Michael, Lyndsey White, Dong Liang, Omonike A. Olaleye, Rosa A. Maldonado
Antimicrobial Agents and Chemotherapy May 2020, 64 (6) e01422-19; DOI: 10.1128/AAC.01422-19
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KEYWORDS

Leishmania major
antiparasitic agents
cutaneous leishmaniasis
drug discovery
methionine aminopeptidase 1
molecular parasitology
murine model of cutaneous leishmaniasis
parasitology
target validation

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