首页> 外文OA文献 >Crystal structure of tert -butyldimethylsilyl-spiroaminooxathioledioxide- thymine (TSAO-T) in complex with HIV-1 reverse transcriptase (RT) redefines the elastic limits of the non-nucleoside inhibitor-binding pocket
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Crystal structure of tert -butyldimethylsilyl-spiroaminooxathioledioxide- thymine (TSAO-T) in complex with HIV-1 reverse transcriptase (RT) redefines the elastic limits of the non-nucleoside inhibitor-binding pocket

机译:叔丁基二甲基甲硅烷基-螺氨基氧杂硫代氧化二氧胸腺嘧啶(TSAO-T)与HIV-1逆转录酶(RT)复合的晶体结构重新定义了非核苷抑制剂结合口袋的弹性极限

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摘要

tert-Butyldimethylsilyl-spiroaminooxathioledioxide (TSAO) compounds have an embedded thymidine-analogue backbone; however, TSAO compounds invoke non-nucleoside RT inhibitor (NNRTI) resistance mutations. Our crystal structure of RT:7 (TSAO-T) complex shows that 7 binds inside the NNRTI-binding pocket, assuming a >dragon> shape, and interacts extensively with almost all the pocket residues. The structure also explains the structure-activity relationships and resistance data for TSAO compounds. The binding of 7 causes hyper-expansion of the pocket and significant rearrangement of RT subdomains. This nonoptimal complex formation is apparently responsible (1) for the lower stability of a RT (p66/p51) dimer and (2) for the lower potency of 7 despite of its extensive interactions with RT. However, the HIV-1 RT:7 structure reveals novel design features such as (1) interactions with the conserved Tyr183 from the YMDD-motif and (2) a possible way for an NNRTI to reach the polymerase active site that may be exploited in designing new NNRTIs.
机译:叔丁基二甲基甲硅烷基-螺氨基氧杂硫醇二氧化物(TSAO)化合物具有嵌入的胸苷类似物骨架;但是,TSAO化合物会引起非核苷RT抑制剂(NNRTI)耐药性突变。我们的RT:7(TSAO-T)配合物的晶体结构表明,7结合在NNRTI结合口袋内部(呈>龙>形状),并与几乎所有口袋残基广泛相互作用。该结构还解释了TSAO化合物的构效关系和抗性数据。 7的结合导致口袋的过度扩张和RT子域的重大重排。这种非最佳的复合物形成显然是(1)RT(p66 / p51)二聚体较低的稳定性和(2)7较低效力的原因,尽管其与RT发生了广泛的相互作用。然而,HIV-1 RT:7结构揭示了新颖的设计特征,例如(1)与来自YMDD-motif的保守Tyr183的相互作用,以及(2)NNRTI到达聚合酶活性位点的可能方式,可在设计新的NNRTI。

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