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Lethal mutagenesis of HIV with mutagenic nucleoside analogs

机译:用致突变核苷类似物对HIV进行致命致突变。

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摘要

The human immunodeficiency virus (HIV) replicates its genome and mutates at exceptionally high rates. As a result, the virus is able to evade immunological and chemical antiviral agents. We tested the hypothesis that a further increase in the mutation rate by promutagenic nucleoside analogs would abolish viral replication. We evaluated deoxynucleoside analogs for lack of toxicity to human cells, incorporation by HIV reverse transcriptase, resistance to repair when incorporated into the DNA strand of an RNA⋅DNA hybrid, and mispairing at high frequency. Among the candidates tested, 5-hydroxydeoxycytidine (5-OH-dC) fulfilled these criteria. In seven of nine experiments, the presence of this analog resulted in the loss of viral replicative potential after 9–24 sequential passages of HIV in human CEM cells. In contrast, loss of viral replication was not observed in 28 control cultures passaged in the absence of the nucleoside analog, nor with other analogs tested. Sequence analysis of a portion of the HIV reverse transcriptase gene demonstrated a disproportionate increase in G → A substitutions, mutations predicted to result from misincorporation of 5-OH-dC into the cDNA during reverse transcription. Thus, “lethal mutagenesis” driven by the class of deoxynucleoside analogs represented by 5-OH-dC could provide a new approach to treating HIV infections and, potentially, other viral infections.
机译:人类免疫缺陷病毒(HIV)复制其基因组并以极高的速率变异。结果,该病毒能够逃避免疫和化学抗病毒剂。我们测试了这样的假设,即促突变核苷类似物突变率的进一步提高将消除病毒复制。我们评估了脱氧核苷类似物对人体细胞的毒性,HIV逆转录酶的掺入,掺入RNA·DNA杂交体的DNA链时对修复的抵抗力以及高频错配。在测试的候选物中,5-羟基脱氧胞苷(5-OH-dC)满足这些标准。在9个实验中的7个中,这种类似物的存在导致HIV在人类CEM细胞中连续9-24次传代后丧失了病毒复制潜能。相反,在不存在核苷类似物的情况下,在传代的28个对照培养物中也未观察到病毒复制的丧失,也未与其他测试的类似物一起观察到。对一部分HIV逆转录酶基因的序列分析表明,G→A取代的增加不成比例,预测突变 是由于在反向过程中将5-OH-dC误掺入cDNA 转录。因此,“致命诱变”由 以5-OH-dC为代表的脱氧核苷类似物可提供新的 治疗HIV感染以及可能的其他病毒的方法 感染。

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