首页> 外文OA文献 >Mutations at amino acid positions 63, 189, and 396 of human immunodeficiency virus type 1 reverse transcriptase (RT) partially restore the DNA polymerase activity of a Trp229Tyr mutant RT.
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Mutations at amino acid positions 63, 189, and 396 of human immunodeficiency virus type 1 reverse transcriptase (RT) partially restore the DNA polymerase activity of a Trp229Tyr mutant RT.

机译:人类免疫缺陷病毒1型逆转录酶(RT)的氨基酸位置63、189和396的突变可部分恢复Trp229Tyr突变体RT的DNA聚合酶活性。

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摘要

Trp229 is part of the nonnucleoside reverse transcriptase inhibitor (NNRTI)-binding pocket of HIV-1 reverse transcriptase (RT). It is also an important constituent of the so-called "primer grip." Using a recombinant virus assay, we tried to obtain recombinant virus containing a Trp229Phe or a Trp229Tyr mutation in its RT. Previous studies already established the very low DNA polymerase activities of both the Trp229Phe and the Trp229Tyr mutant RT enzymes. We were able to obtain a Trp229Tyr but not a Trp229Phe mutant virus. However, in addition to the Trp229Tyr mutation this mutant virus also contained an Ile63Met, a Val189Ile, and a Glu396Gly mutation in its RT. When we evaluated the quadruple mutant virus for sensitivity/resistance against a variety of NNRTIs, no significant difference with the sensitivity/resistance profile of the single Trp229Tyr mutant RT enzyme could be observed. We found that the three additional mutations partly restored the low RNA- and DNA-dependent DNA polymerase activities of the Trp229Tyr mutant enzyme. Kinetic analysis revealed that both template/primer binding and dNTP incorporation are affected by the Trp229Tyr mutation. Our findings demonstrate that a mutation at position 229 is unlikely to occur under NNRTI drug pressure due to the poor catalytic activity of the singly mutated RT and the favorable drug sensitivity profile of the mutated enzyme/viruses in both the absence and the presence of the compensatory mutations. Therefore, amino acid position 229 may be regarded as an excellent amino acid target within the NNRTI pocket for rational drug design.
机译:Trp229是HIV-1逆转录酶(RT)的非核苷逆转录酶抑制剂(NNRTI)结合口袋的一部分。它也是所谓的“底漆手柄”的重要组成部分。使用重组病毒分析,我们试图获得在其RT中包含Trp229Phe或Trp229Tyr突变的重组病毒。先前的研究已经确定了Trp229Phe和Trp229Tyr突变体RT酶的DNA聚合酶活性非常低。我们能够获得Trp229Tyr,但不能获得Trp229Phe突变病毒。但是,除了Trp229Tyr突变外,该突变病毒在其RT中还包含Ile63Met,Val189Ile和Glu396Gly突变。当我们评估四重突变体病毒对多种NNRTI的敏感性/抗性时,与单个Trp229Tyr突变体RT酶的敏感性/抗性谱没有明显差异。我们发现这三个额外的突变部分恢复了Trp229Tyr突变酶的低RNA和DNA依赖性DNA聚合酶活性。动力学分析表明,模板/引物结合和dNTP掺入均受Trp229Tyr突变影响。我们的发现表明,在不存在和存在代偿性的情况下,由于单个突变的RT的催化活性较差以及突变的酶/病毒的良好药物敏感性,在NNRTI药物压力下不太可能在229位发生突变突变。因此,对于合理的药物设计,氨基酸位置229可被视为NNRTI口袋中的优秀氨基酸靶标。

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