首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Structure of HIV-1 reverse transcriptase bound to an inhibitor active against mutant reverse transcriptases resistant to other nonnucleoside inhibitors.
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Structure of HIV-1 reverse transcriptase bound to an inhibitor active against mutant reverse transcriptases resistant to other nonnucleoside inhibitors.

机译:HIV-1逆转录酶的结构与对其他非核苷抑制剂具有抗性的突变逆转录酶具有活性的抑制剂结合。

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摘要

We have determined the crystal structure of the HIV type 1 reverse transcriptase complexed with CP-94,707, a new nonnucleoside reverse transcriptase inhibitor (NNRTI), to 2.8-A resolution. In addition to inhibiting the wild-type enzyme, this compound inhibits mutant enzymes that are resistant to inhibition by nevirapine, efavirenz, and delaviridine. In contrast to other NNRTI complexes where tyrosines 181 and 188 are pointing toward the enzyme active site, the binding pocket in this complex has the tyrosines pointing the opposite direction, as in the unliganded protein structure, to accommodate CP-94,707. This conformation of the pocket has not been observed previously in NNRTI complexes and substantially alters the shape and surface features that are available for interactions with the inhibitor. One ring of CP-94,707 makes extensive stacking interactions with tryptophan 229, one of the few residues in the NNRTI-binding pocket that cannot readily mutate to give rise to drug resistance. In this conformation of the pocket, mutations of tyrosines 181 and 188 are less likely to disrupt inhibitor binding. Modeling the asparagine mutation of lysine 103 shows that a hydrogen bond between it and tyrosine 188 could form as readily in the CP-94,707 complex as it does in the apoenzyme structure, providing an explanation for the activity of this inhibitor against this clinically important mutant.
机译:我们已经确定了与一种新型的非核苷类逆转录酶抑制剂(NNRTI)CP-94,707复合的HIV 1型逆转录酶的晶体结构,其分辨率为2.8-A。除抑制野生型酶外,该化合物还抑制对奈韦拉平,依非韦伦和德拉维啶具有抑制作用的突变酶。与酪氨酸181和188指向酶活性位点的其他NNRTI复合物相反,该复合物中的结合口袋中的酪氨酸指向相反的方向(如未配体的蛋白质结构),以容纳CP-94,707。以前在NNRTI复合物中没有观察到这种口袋的构象,它实质上改变了可用于与抑制剂相互作用的形状和表面特征。 CP-94,707的一个环与色氨酸229发生广泛的堆叠相互作用,色氨酸229是NNRTI结合口袋中少数几个不易突变以引起耐药性的残基之一。在口袋的这种构象中,酪氨酸181和188的突变不太可能破坏抑制剂的结合。对赖氨酸103的天冬酰胺突变进行建模显示,其与酪氨酸188之间的氢键可以像在脱辅酶结构中一样容易在CP-94,707络合物中形成,为该抑制剂针对这种临床上重要的突变体的活性提供了解释。

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