Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maraviroc

Introduction Maraviroc inhibits CCR5-tropic HIV-1 across different subtypes in vitro and has demonstrated efficacy in clinical trials. V3-loop amino acid variants observed in individual maraviroc-resistant viruses have not been found to be predictive of reduced susceptibility. Sequence-database sear...

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Main Authors: ME Lewis, B Jubb, P Simpson, A Lopatukhin, D Kireev, M Bobkova, C Craig, E van der Ryst, M Westby, SL Butler
Format: Article
Language:English
Published: SAGE Publishing 2021-06-01
Series:Antiviral Chemistry & Chemotherapy
Online Access:https://doi.org/10.1177/20402066211025156
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spelling doaj-e7be8339c5714171affa6fe5f326b4c22021-06-25T02:04:39ZengSAGE PublishingAntiviral Chemistry & Chemotherapy2040-20662021-06-012910.1177/20402066211025156Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maravirocME LewisB JubbP SimpsonA LopatukhinD KireevM BobkovaC CraigE van der RystM WestbySL ButlerIntroduction Maraviroc inhibits CCR5-tropic HIV-1 across different subtypes in vitro and has demonstrated efficacy in clinical trials. V3-loop amino acid variants observed in individual maraviroc-resistant viruses have not been found to be predictive of reduced susceptibility. Sequence-database searches have demonstrated that approximately 7.3% of viruses naturally encode these variants, raising concerns regarding potential pre-existing resistance. A study from Russia reported that combinations of these same amino acids are present in the V3 loops of the Russian variant subtype A (IDU-A, now A6) with a much greater prevalence (range: 74.4%–92.3%) depending on the combination. However, these studies and database searches did not include phenotypic evaluation. Methods Sixteen Russian HIV-1 isolates (including sub-subtype A6 viruses) were assessed for V3 loop sequence and phenotypic susceptibility to maraviroc. Results All 12 of the A6 viruses and 2/4 subtype B isolates encoded V3-loop variants that have previously been identified in individual virus isolates with reduced susceptibility to maraviroc. However, despite the prevalence of these V3-loop amino acid variants among the tested viruses, phenotypic sensitivity to maraviroc was observed in all instances. Similarly, reduced susceptibility to maraviroc was not found in virus from participants who experienced virologic failure in a clinical study of maraviroc in Russia (A4001101, [NCT01275625]). Discussion Altogether, these data confirm that the presence of individual or combinations of V3-loop amino acid residues in sub-subtype A6 viruses alone does not predict natural resistance to maraviroc and that V3-loop genotype analysis of R5 virus prior to treatment is not helpful in predicting clinical outcome.https://doi.org/10.1177/20402066211025156
collection DOAJ
language English
format Article
sources DOAJ
author ME Lewis
B Jubb
P Simpson
A Lopatukhin
D Kireev
M Bobkova
C Craig
E van der Ryst
M Westby
SL Butler
spellingShingle ME Lewis
B Jubb
P Simpson
A Lopatukhin
D Kireev
M Bobkova
C Craig
E van der Ryst
M Westby
SL Butler
Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maraviroc
Antiviral Chemistry & Chemotherapy
author_facet ME Lewis
B Jubb
P Simpson
A Lopatukhin
D Kireev
M Bobkova
C Craig
E van der Ryst
M Westby
SL Butler
author_sort ME Lewis
title Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maraviroc
title_short Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maraviroc
title_full Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maraviroc
title_fullStr Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maraviroc
title_full_unstemmed Highly prevalent Russian HIV-1 V3-loop sequence variants are susceptible to maraviroc
title_sort highly prevalent russian hiv-1 v3-loop sequence variants are susceptible to maraviroc
publisher SAGE Publishing
series Antiviral Chemistry & Chemotherapy
issn 2040-2066
publishDate 2021-06-01
description Introduction Maraviroc inhibits CCR5-tropic HIV-1 across different subtypes in vitro and has demonstrated efficacy in clinical trials. V3-loop amino acid variants observed in individual maraviroc-resistant viruses have not been found to be predictive of reduced susceptibility. Sequence-database searches have demonstrated that approximately 7.3% of viruses naturally encode these variants, raising concerns regarding potential pre-existing resistance. A study from Russia reported that combinations of these same amino acids are present in the V3 loops of the Russian variant subtype A (IDU-A, now A6) with a much greater prevalence (range: 74.4%–92.3%) depending on the combination. However, these studies and database searches did not include phenotypic evaluation. Methods Sixteen Russian HIV-1 isolates (including sub-subtype A6 viruses) were assessed for V3 loop sequence and phenotypic susceptibility to maraviroc. Results All 12 of the A6 viruses and 2/4 subtype B isolates encoded V3-loop variants that have previously been identified in individual virus isolates with reduced susceptibility to maraviroc. However, despite the prevalence of these V3-loop amino acid variants among the tested viruses, phenotypic sensitivity to maraviroc was observed in all instances. Similarly, reduced susceptibility to maraviroc was not found in virus from participants who experienced virologic failure in a clinical study of maraviroc in Russia (A4001101, [NCT01275625]). Discussion Altogether, these data confirm that the presence of individual or combinations of V3-loop amino acid residues in sub-subtype A6 viruses alone does not predict natural resistance to maraviroc and that V3-loop genotype analysis of R5 virus prior to treatment is not helpful in predicting clinical outcome.
url https://doi.org/10.1177/20402066211025156
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