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Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance

The emergence of compensatory mutations in the polymerase gene of drug resistant hepatitis B virus (HBV) is associated with treatment failure. We previously identified a multi-drug resistant HBV mutant, which displayed resistance towards lamivudine (LMV), clevudine (CLV), and entecavir (ETV), along...

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Autores principales: Ahn, Sung Hyun, Kim, Doo Hyun, Lee, Ah Ram, Kim, Beom Kyung, Park, Yong Kwang, Park, Eun-Sook, Ahn, Sang Hoon, Shin, Gu-Choul, Park, Soree, Kang, Hong Seok, Rhee, Jin-Kyu, Yang, Sung-Il, Chong, Youhoon, Kim, Kyun-Hwan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4556173/
https://www.ncbi.nlm.nih.gov/pubmed/26322642
http://dx.doi.org/10.1371/journal.pone.0136728
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author Ahn, Sung Hyun
Kim, Doo Hyun
Lee, Ah Ram
Kim, Beom Kyung
Park, Yong Kwang
Park, Eun-Sook
Ahn, Sang Hoon
Shin, Gu-Choul
Park, Soree
Kang, Hong Seok
Rhee, Jin-Kyu
Yang, Sung-Il
Chong, Youhoon
Kim, Kyun-Hwan
author_facet Ahn, Sung Hyun
Kim, Doo Hyun
Lee, Ah Ram
Kim, Beom Kyung
Park, Yong Kwang
Park, Eun-Sook
Ahn, Sang Hoon
Shin, Gu-Choul
Park, Soree
Kang, Hong Seok
Rhee, Jin-Kyu
Yang, Sung-Il
Chong, Youhoon
Kim, Kyun-Hwan
author_sort Ahn, Sung Hyun
collection PubMed
description The emergence of compensatory mutations in the polymerase gene of drug resistant hepatitis B virus (HBV) is associated with treatment failure. We previously identified a multi-drug resistant HBV mutant, which displayed resistance towards lamivudine (LMV), clevudine (CLV), and entecavir (ETV), along with a strong replication capacity. The aim of this study was to identify the previously unknown compensatory mutations, and to determine the clinical relevance of this mutation during antiviral therapy. In vitro mutagenesis, drug susceptibility assay, and molecular modeling studies were performed. The rtL269I substitution conferred 2- to 7-fold higher replication capacity in the wild-type (WT) or YMDD mutation backbone, regardless of drug treatment. The rtL269I substitution alone did not confer resistance to LMV, ETV, adefovir (ADV), or tenofovir (TDF). However, upon combination with YMDD mutation, the replication capacity under LMV or ETV treatment was enhanced by several folds. Molecular modeling studies suggested that the rtL269I substitution affects template binding, which may eventually lead to the enhanced activity of rtI269-HBV polymerase in both WT virus and YMDD mutant. The clinical relevance of the rtL269I substitution was validated by its emergence in association with YMDD mutation in chronic hepatitis B (CHB) patients with sub-optimal response or treatment failure to LMV or CLV. Our study suggests that substitution at rt269 in HBV polymerase is associated with multi-drug resistance, which may serve as a novel compensatory mutation for replication-defective multi-drug resistant HBV.
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spelling pubmed-45561732015-09-10 Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance Ahn, Sung Hyun Kim, Doo Hyun Lee, Ah Ram Kim, Beom Kyung Park, Yong Kwang Park, Eun-Sook Ahn, Sang Hoon Shin, Gu-Choul Park, Soree Kang, Hong Seok Rhee, Jin-Kyu Yang, Sung-Il Chong, Youhoon Kim, Kyun-Hwan PLoS One Research Article The emergence of compensatory mutations in the polymerase gene of drug resistant hepatitis B virus (HBV) is associated with treatment failure. We previously identified a multi-drug resistant HBV mutant, which displayed resistance towards lamivudine (LMV), clevudine (CLV), and entecavir (ETV), along with a strong replication capacity. The aim of this study was to identify the previously unknown compensatory mutations, and to determine the clinical relevance of this mutation during antiviral therapy. In vitro mutagenesis, drug susceptibility assay, and molecular modeling studies were performed. The rtL269I substitution conferred 2- to 7-fold higher replication capacity in the wild-type (WT) or YMDD mutation backbone, regardless of drug treatment. The rtL269I substitution alone did not confer resistance to LMV, ETV, adefovir (ADV), or tenofovir (TDF). However, upon combination with YMDD mutation, the replication capacity under LMV or ETV treatment was enhanced by several folds. Molecular modeling studies suggested that the rtL269I substitution affects template binding, which may eventually lead to the enhanced activity of rtI269-HBV polymerase in both WT virus and YMDD mutant. The clinical relevance of the rtL269I substitution was validated by its emergence in association with YMDD mutation in chronic hepatitis B (CHB) patients with sub-optimal response or treatment failure to LMV or CLV. Our study suggests that substitution at rt269 in HBV polymerase is associated with multi-drug resistance, which may serve as a novel compensatory mutation for replication-defective multi-drug resistant HBV. Public Library of Science 2015-08-31 /pmc/articles/PMC4556173/ /pubmed/26322642 http://dx.doi.org/10.1371/journal.pone.0136728 Text en © 2015 Ahn et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ahn, Sung Hyun
Kim, Doo Hyun
Lee, Ah Ram
Kim, Beom Kyung
Park, Yong Kwang
Park, Eun-Sook
Ahn, Sang Hoon
Shin, Gu-Choul
Park, Soree
Kang, Hong Seok
Rhee, Jin-Kyu
Yang, Sung-Il
Chong, Youhoon
Kim, Kyun-Hwan
Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance
title Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance
title_full Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance
title_fullStr Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance
title_full_unstemmed Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance
title_short Substitution at rt269 in Hepatitis B Virus Polymerase Is a Compensatory Mutation Associated with Multi-Drug Resistance
title_sort substitution at rt269 in hepatitis b virus polymerase is a compensatory mutation associated with multi-drug resistance
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4556173/
https://www.ncbi.nlm.nih.gov/pubmed/26322642
http://dx.doi.org/10.1371/journal.pone.0136728
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