Cargando…

Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1

Drug induced reversion of antibiotic resistance is a promising way to combat multidrug resistant infections. However, lacking knowledge of mechanisms of drug resistance reversion impedes employing this approach in medicinal therapies. Induction of antibiotic resistance reversion by a new anti-tuberc...

Descripción completa

Detalles Bibliográficos
Autores principales: Ilin, Aleksandr I., Kulmanov, Murat E., Korotetskiy, Ilya S., Islamov, Rinat A., Akhmetova, Gulshara K., Lankina, Marina V., Reva, Oleg N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5420568/
https://www.ncbi.nlm.nih.gov/pubmed/28534009
http://dx.doi.org/10.3389/fcimb.2017.00151
_version_ 1783234413009567744
author Ilin, Aleksandr I.
Kulmanov, Murat E.
Korotetskiy, Ilya S.
Islamov, Rinat A.
Akhmetova, Gulshara K.
Lankina, Marina V.
Reva, Oleg N.
author_facet Ilin, Aleksandr I.
Kulmanov, Murat E.
Korotetskiy, Ilya S.
Islamov, Rinat A.
Akhmetova, Gulshara K.
Lankina, Marina V.
Reva, Oleg N.
author_sort Ilin, Aleksandr I.
collection PubMed
description Drug induced reversion of antibiotic resistance is a promising way to combat multidrug resistant infections. However, lacking knowledge of mechanisms of drug resistance reversion impedes employing this approach in medicinal therapies. Induction of antibiotic resistance reversion by a new anti-tuberculosis drug FS-1 has been reported. FS-1 was used in this work in combination with standard anti-tuberculosis antibiotics in an experiment on laboratory guinea pigs infected with an extensively drug resistant (XDR) strain Mycobacterium tuberculosis SCAID 187.0. During the experimental trial, genetic changes in the population were analyzed by sequencing of M. tuberculosis isolates followed by variant calling. In total 11 isolates obtained from different groups of infected animals at different stages of disease development and treatment were sequenced. It was found that despite the selective pressure of antibiotics, FS-1 caused a counter-selection of drug resistant variants that speeded up the recovery of the infected animals from XDR tuberculosis. Drug resistance mutations reported in the genome of the initial strain remained intact in more sensitive isolates obtained in this experiment. Variant calling in the sequenced genomes revealed that the drug resistance reversion could be associated with a general increase in genetic heterogeneity of the population of M. tuberculosis. Accumulation of mutations in PpsA and PpsE subunits of phenolpthiocerol polyketide synthase was observed in the isolates treated with FS-1 that may indicate an increase of persisting variants in the population. It was hypothesized that FS-1 caused an active counter-selection of drug resistant variants from the population by aggravating the cumulated fitness cost of the drug resistance mutations. Action of FS-1 on drug resistant bacteria exemplified the theoretically predicted induced synergy mechanism of drug resistance reversion. An experimental model to study the drug resistance reversion phenomenon is hereby introduced.
format Online
Article
Text
id pubmed-5420568
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-54205682017-05-22 Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1 Ilin, Aleksandr I. Kulmanov, Murat E. Korotetskiy, Ilya S. Islamov, Rinat A. Akhmetova, Gulshara K. Lankina, Marina V. Reva, Oleg N. Front Cell Infect Microbiol Microbiology Drug induced reversion of antibiotic resistance is a promising way to combat multidrug resistant infections. However, lacking knowledge of mechanisms of drug resistance reversion impedes employing this approach in medicinal therapies. Induction of antibiotic resistance reversion by a new anti-tuberculosis drug FS-1 has been reported. FS-1 was used in this work in combination with standard anti-tuberculosis antibiotics in an experiment on laboratory guinea pigs infected with an extensively drug resistant (XDR) strain Mycobacterium tuberculosis SCAID 187.0. During the experimental trial, genetic changes in the population were analyzed by sequencing of M. tuberculosis isolates followed by variant calling. In total 11 isolates obtained from different groups of infected animals at different stages of disease development and treatment were sequenced. It was found that despite the selective pressure of antibiotics, FS-1 caused a counter-selection of drug resistant variants that speeded up the recovery of the infected animals from XDR tuberculosis. Drug resistance mutations reported in the genome of the initial strain remained intact in more sensitive isolates obtained in this experiment. Variant calling in the sequenced genomes revealed that the drug resistance reversion could be associated with a general increase in genetic heterogeneity of the population of M. tuberculosis. Accumulation of mutations in PpsA and PpsE subunits of phenolpthiocerol polyketide synthase was observed in the isolates treated with FS-1 that may indicate an increase of persisting variants in the population. It was hypothesized that FS-1 caused an active counter-selection of drug resistant variants from the population by aggravating the cumulated fitness cost of the drug resistance mutations. Action of FS-1 on drug resistant bacteria exemplified the theoretically predicted induced synergy mechanism of drug resistance reversion. An experimental model to study the drug resistance reversion phenomenon is hereby introduced. Frontiers Media S.A. 2017-05-08 /pmc/articles/PMC5420568/ /pubmed/28534009 http://dx.doi.org/10.3389/fcimb.2017.00151 Text en Copyright © 2017 Ilin, Kulmanov, Korotetskiy, Islamov, Akhmetova, Lankina and Reva. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Ilin, Aleksandr I.
Kulmanov, Murat E.
Korotetskiy, Ilya S.
Islamov, Rinat A.
Akhmetova, Gulshara K.
Lankina, Marina V.
Reva, Oleg N.
Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1
title Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1
title_full Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1
title_fullStr Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1
title_full_unstemmed Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1
title_short Genomic Insight into Mechanisms of Reversion of Antibiotic Resistance in Multidrug Resistant Mycobacterium tuberculosis Induced by a Nanomolecular Iodine-Containing Complex FS-1
title_sort genomic insight into mechanisms of reversion of antibiotic resistance in multidrug resistant mycobacterium tuberculosis induced by a nanomolecular iodine-containing complex fs-1
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5420568/
https://www.ncbi.nlm.nih.gov/pubmed/28534009
http://dx.doi.org/10.3389/fcimb.2017.00151
work_keys_str_mv AT ilinaleksandri genomicinsightintomechanismsofreversionofantibioticresistanceinmultidrugresistantmycobacteriumtuberculosisinducedbyananomoleculariodinecontainingcomplexfs1
AT kulmanovmurate genomicinsightintomechanismsofreversionofantibioticresistanceinmultidrugresistantmycobacteriumtuberculosisinducedbyananomoleculariodinecontainingcomplexfs1
AT korotetskiyilyas genomicinsightintomechanismsofreversionofantibioticresistanceinmultidrugresistantmycobacteriumtuberculosisinducedbyananomoleculariodinecontainingcomplexfs1
AT islamovrinata genomicinsightintomechanismsofreversionofantibioticresistanceinmultidrugresistantmycobacteriumtuberculosisinducedbyananomoleculariodinecontainingcomplexfs1
AT akhmetovagulsharak genomicinsightintomechanismsofreversionofantibioticresistanceinmultidrugresistantmycobacteriumtuberculosisinducedbyananomoleculariodinecontainingcomplexfs1
AT lankinamarinav genomicinsightintomechanismsofreversionofantibioticresistanceinmultidrugresistantmycobacteriumtuberculosisinducedbyananomoleculariodinecontainingcomplexfs1
AT revaolegn genomicinsightintomechanismsofreversionofantibioticresistanceinmultidrugresistantmycobacteriumtuberculosisinducedbyananomoleculariodinecontainingcomplexfs1