首页> 外文期刊>JAIDS: Journal of acquired immune deficiency syndromes >An increase in viral replicative capacity drives the evolution of protease inhibitor-resistant human immunodeficiency virus type 1 in the absence of drugs.
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An increase in viral replicative capacity drives the evolution of protease inhibitor-resistant human immunodeficiency virus type 1 in the absence of drugs.

机译:在没有药物的情况下,病毒复制能力的提高驱动了蛋白酶抑制剂抗性人类免疫缺陷病毒1型的进化。

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摘要

Little is known about the factors which drive the evolution of protease inhibitor-resistant human immunodeficiency virus type-1 in the absence of drugs. To examine if viral replicative capacity (RC) is an important determinant, we performed in vitro evolution experiments in the absence of drugs with a unique panel of 6 drug-resistant human immunodeficiency virus type-1 recombinant protease variants with a range of different RC. The experiments revealed that an increase in viral RC was indeed an important determinant of evolution. Initial protease inhibitor-resistant viruses with only a few protease mutations and a lowered RC evolved into viruses with an increased RC, either by reversion of primary resistance mutations or by the acquisition of compensatory mutations. For these viruses with a lowered RC, higher fitness peaks are most likely available in the sequence space. Evolution of these viruses in the absence of drugs will therefore drive them to new fitness peaks. In contrast, viruses with an RC comparable to wild type or even higher than wild type did not show any evolution. In the case of these viruses, it is not so likely that higher fitness peaks are present within the sequence space, and therefore, these variants will persist in the absence of drug pressure.
机译:在没有药物的情况下,对导致蛋白酶抑制剂抗性的人类免疫缺陷病毒1型进化的因素知之甚少。为了检查病毒复制能力(RC)是否是重要的决定因素,我们在没有药物的情况下进行了体外进化实验,该药物具有独特的6种耐药性人类免疫缺陷病毒1型重组蛋白酶变异体,并具有一系列不同的RC。实验表明,病毒RC的增加确实是进化的重要决定因素。最初具有少量蛋白酶突变和较低RC的蛋白酶抑制剂抗性病毒通过逆转初级耐药性突变或通过获得补偿性突变演变为具有RC增强的病毒。对于这些具有较低RC的病毒,较高的适应性峰很可能在序列空间中可用。在没有药物的情况下,这些病毒的进化将推动它们达到新的适应性高峰。相反,具有与野生型相当甚至更高的RC的病毒没有显示出任何进化。对于这些病毒,不太可能在序列空间内存在更高的适应性峰,因此,这些变体将在没有药物压力的情况下持续存在。

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