首页> 外文OA文献 >Distinct Mechanisms of HIV-1 Hypersusceptibility to Non-Nucleoside Reverse Transcriptase Inhibitors: A Discussion of Nucleoside Reverse Transcriptase Inhibitor Induced Mutations V118I, H208Y, and T215Y
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Distinct Mechanisms of HIV-1 Hypersusceptibility to Non-Nucleoside Reverse Transcriptase Inhibitors: A Discussion of Nucleoside Reverse Transcriptase Inhibitor Induced Mutations V118I, H208Y, and T215Y

机译:HIV-1对非核苷逆转录酶抑制剂的高度敏感性的不同机制:核苷逆转录酶抑制剂诱导的突变V118I,H208Y和T215Y的讨论

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摘要

Hypersusceptibility (HS) to non-nucleoside reverse transcriptase inhibitors (NNRTI) improves virological response to NNRTI-containing regimens. NNRTI HS is associated with nucleoside RT inhibitor (NRTI) mutations, especially those conferring resistance to AZT. Recent logistic regression analyses of a large genotype-phenotype dataset showed the NRTI mutations most strongly associated with NNRTI HS are T215Y, H208Y and V118I. We hypothesized that NRTI mutations V118I, H208Y, and T215Y in combination cause NNRTI HS and that this phenotype is due to multiple mechanisms including a decrease in enzyme activity and/or deficient viral replication due to decreased virion packaged RT. Therefore we sought to: (1) determine the phenotypic effects of these mutations alone and in combination on the susceptibilityof infectious molecular clones and recombinant reverse transcriptase proteins to efavirenz, delavirdine, and nevirapine; and (2) elucidate differences in viral replication, protein production and packaging for virus containing mutations V118I, H208Y, and/or T215Y. We established different patterns of NNRTI HS and replication capacity depending on the combination of mutations present. HIV-1 virus containing H208Y + T215Y were HS to all NNRTI; whereas the V118I/T215Y virus was only HS to delavirdine and nevirapine. H208Y + T215Y viruses exhibited reduced replication capacity compared to wildtype HIV-1. In comparison, the V118I/T215Y virus replicated as efficiently as wildtype virus. Upon further investigation we found the amount of HIV-1 RT incorporated into the H208Y + T215Y viruses was significantly reduced compared with wildtype virus due to decreased viral packaging of GagPol precursors. Interestingly, the RT content in the V118I/T215Y virus was similar to wildtype virus. Furthermore, purified recombinant RT containing the H208Y+ T215Y mutations were not NNRTI HS. In contrast, the V118I/T215Y mutant RT showed five-fold increased susceptibility to NNRTI. Our work highlights the complexity of the HS phenotype and provides an in-depth understanding of how NRTI mutations V118I, H208Y, and T215Y contribute to increased NNRTI susceptibility.
机译:对非核苷类逆转录酶抑制剂(NNRTI)的过敏性(HS)可改善对含NNRTI方案的病毒学应答。 NNRTI HS与核苷RT抑制剂(NRTI)突变相关,尤其是那些赋予AZT抗性的突变。最近对大型基因型-表型数据集进行的逻辑回归分析显示,与NNRTI HS最相关的NRTI突变是T215Y,H208Y和V118I。我们假设NRTI突变V118I,H208Y和T215Y共同引起NNRTI HS,并且该表型是由于多种机制引起的,包括酶活性降低和/或病毒颗粒包装的RT降低导致病毒复制不足。因此,我们寻求:(1)单独确定这些突变的表型效应,并确定它们对传染性分子克隆和重组逆转录酶蛋白对依非韦伦,地拉夫定和奈韦拉平的敏感性。 (2)阐明病毒变异V118I,H208Y和/或T215Y的病毒复制,蛋白质生产和包装的差异。根据存在的突变,我们建立了不同的NNRTI HS模式和复制能力。含有H208Y + T215Y的HIV-1病毒均为所有NNRTI的HS。而V118I / T215Y病毒仅是地拉夫定和奈韦拉平的HS。与野生型HIV-1相比,H208Y + T215Y病毒的复制能力降低。相比之下,V118I / T215Y病毒的复制效率与野生型病毒相同。经过进一步调查,我们发现,由于GagPol前体的病毒包装减少,与野生型病毒相比,掺入H208Y + T215Y病毒的HIV-1 RT的量明显减少。有趣的是,V118I / T215Y病毒中的RT含量与野生型病毒相似。此外,含有H208Y + T215Y突变的纯化重组RT不是NNRTI HS。相反,V118I / T215Y突变体RT对NNRTI的敏感性增加了五倍。我们的工作突出了HS表型的复杂性,并提供了对NRTI突变V118I,H208Y和T215Y如何促进NNRTI敏感性的深入了解。

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    Clark Shauna Antoinette;

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  • 年度 2008
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  • 正文语种 en
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