首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Unique features in the structure of the complex between HIV-1 reverse transcriptase and the bis(heteroaryl)piperazine (BHAP) U-90152 explain resistance mutations for this nonnucleoside inhibitor
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Unique features in the structure of the complex between HIV-1 reverse transcriptase and the bis(heteroaryl)piperazine (BHAP) U-90152 explain resistance mutations for this nonnucleoside inhibitor

机译:HIV-1逆转录酶和双(杂芳基)哌嗪(BHAP)U-90152之间的复合物结构的独特特征解释了这种非核苷抑制剂的抗性突变

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摘要

The viral reverse transcriptase (RT) provides an attractive target in the search for anti-HIV therapies. The nonnucleoside inhibitors (NNIs) are a diverse set of compounds (usually HIV-1 specific) that function by distorting the polymerase active site upon binding in a nearby pocket. Despite being potent and of generally low toxicity, their clinical use has been limited by rapid selection for resistant viral populations. The 2.65-Å resolution structure of the complex between HIV-1 RT and the bis(heteroaryl)piperazine (BHAP) NNI, 1-(5-methanesulfonamido-1H-indol-2-yl-carbonyl)-4-[3-(1-methyl-ethylamino)pyridinyl] piperazine (U-90152), reveals the inhibitor conformation and bound water molecules. The bulky U-90152 molecule occupies the same pocket as other NNIs, but the complex is stabilized quite differently, in particular by hydrogen bonding to the main chain of Lys-103 and extensive hydrophobic contacts with Pro-236. These interactions rationalize observed resistance mutations, notably Pro-236-Leu, which occurs characteristically for BHAPs. When bound, part of U-90152 protrudes into the solvent creating a channel between Pro-236 and the polypeptide segments 225–226 and 105–106, giving the first clear evidence of the entry mode for NNIs. The structure allows prediction of binding modes for related inhibitors [(altrylamino)piperidine–BHAPs] and suggests changes to U-90152, such as the addition of a 6 amino group to the pyridine ring, which may make binding more resilient to mutations in the RT. The observation of novel hydrogen bonding to the protein main chain may provide lessons for the improvement of quite different inhibitors.
机译:病毒逆转录酶(RT)为寻找抗HIV疗法提供了一个有吸引力的目标。非核苷抑制剂(NNIs)是多种化合物(通常是HIV-1特异性的),通过结合在附近的口袋中使聚合酶活性位点扭曲而起作用。尽管其效力强且毒性通常较低,但其临床应用受到快速选择耐药性病毒种群的限制。 HIV-1 RT与双(杂芳基)哌嗪(BHAP)NNI,1-(5-甲磺酰胺基-1H-吲哚-2-基-羰基)-4- [3-( 1-甲基-乙基氨基)吡啶基]哌嗪(U-90152),揭示了抑制剂的构象和结合​​的水分子。庞大的U-90152分子与其他NNI占据相同的口袋,但复合物的稳定作用却大不相同,尤其是通过氢键连接Lys-103主链和与Pro-236广泛疏水接触。这些相互作用使观察到的抗性突变合理化,特别是Pro-236-Leu,该突变是BHAP特有的。结合后,U-90152的一部分伸入溶剂中,从而在Pro-236与多肽片段225-226和105-106之间建立通道,为NNI进入模式提供了第一个明确证据。该结构可以预测相关抑制剂[(altrylamino)piperidine–BHAPs]的结合模式,并建议对U-90152进行更改,例如在吡啶环上添加6个氨基,这可能会使结合对核苷酸的突变更具弹性。 RT。新型氢键结合到蛋白质主链上的观察可能为改进完全不同的抑制剂提供经验教训。

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