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Construction and Characterization of a Temperature-Sensitive Human Immunodeficiency Virus Type 1 Reverse Transcriptase Mutant

机译:温度敏感型人类免疫缺陷病毒1型逆转录酶突变体的构建与表征

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摘要

A temperature-sensitive (ts) human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT) mutant was generated by charged-cluster-to-alanine mutagenesis. The mutant virus, containing three charged residues within the RT finger domain changed to alanine (K64A, K66A, and D67A), replicated normally at 34.5 but not 39.5°C. Quantitating virus particle production by p24 antigen capture or virion-associated RT activity and virus infectivity by the MAGI cell assay, we found that (i) mutant virions produced at the permissive temperature were indistinguishable from wild-type virus in assays performed at the nonpermissive temperature, suggesting that the ts mutation did not impair early steps in the virus replication cycle and that the mutant RT enzyme was not ts; and (ii) virus particle production in cells transfected with the ts mutant at the nonpermissive temperature was comparable to that of wild-type virus. However, the particle-associated RT activity and infectivity of mutant virions produced at the nonpermissive temperature were greatly reduced when assays were conducted at the permissive temperature. These results are consistent with an irreversible ts event affecting RT that occurs during virus particle production. Radioimmunoprecipitation analyses revealed that both p66 and p51 RT subunits were absent from mutant virions generated at 39.5°C. The presence of normal levels of HIV-1 integrase in mutant particles produced at the nonpermissive temperature was inconsistent with defective Gag-Pol synthesis or Gag-Pol incorporation into progeny virions. Furthermore, wild-type levels of the mutant Pr160gag-pol were detected in virions produced at the nonpermissive temperature when the HIV-1 protease was inactivated by site-specific mutagenesis. Taken together, these results are most consistent with a ts defect affecting the degradation or aberrant processing of the mutated RT during its processing/maturation within nascent particles.
机译:温度敏感(ts)人类免疫缺陷病毒1型(HIV-1)逆转录酶(RT)突变体是通过带电荷的簇到丙氨酸诱变产生的。突变病毒在RT指状结构域中包含三个带电残基,变为丙氨酸(K64A,K66A和D67A),可在34.5°C而非39.5°C正常复制。通过MAGI细胞分析定量p24抗原捕获或病毒体相关的RT活性和病毒感染性来量化病毒颗粒的产生,我们发现(i)在许可温度下进行的分析中,在许可温度下产生的突变体病毒粒子与野生型病毒没有区别,表明ts突变不会损害病毒复制周期的早期步骤,而突变RT酶不是ts。 (ii)在非容许温度下经ts突变体转染的细胞中病毒颗粒的产生与野生型病毒相当。但是,当在许可温度下进行测定时,在非许可温度下产生的突变体病毒粒子的颗粒相关RT活性和感染性大大降低。这些结果与影响病毒颗粒生产过程中发生的RT的不可逆ts事件一致。放射免疫沉淀分析表明,在39.5°C产生的突变体病毒体中均不存在p66和p51 RT亚基。在非许可温度下产生的突变颗粒中正常水平的HIV-1整合酶的存在与有缺陷的Gag-Pol合成或Gag-Pol掺入子代病毒体不一致。此外,当HIV-1蛋白酶通过位点特异性诱变失活时,在非许可温度下产生的病毒体中检测到突变型Pr160 gag-pol 的野生型水平。两者合计,这些结果与ts缺陷最一致,该缺陷会影响突变的RT在新生粒子内的加工/成熟过程中的降解或异常加工。

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