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Molecular mechanism of dioxolane nucleosides against 3TC resistant M184V mutant HIV.

机译:二氧戊环核苷抗3TC抗性M184V突变HIV的分子机制。

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摘要

The mutation and resultant adaptability of HIV-1 reverse transcriptase (RT) present a major challenge to the design of the effective antiviral strategies because many initially potent drugs lose efficacy over time. Even though there is an urgent need for a comprehensive understanding of the molecular mechanism of anti-HIV drug resistance by mutant RTs, the unavailability of the structural information of the mutant RTs has prevented detailed investigations. In this study, the active site of the 3TC-resistant (M184V) RT is constructed by a computational method, which clearly shows that the side chain of Val184 occupies the binding site for the nucleoside triphosphates. Therefore, the distance between the side chain of Val184 and the sugar moiety of the nucleoside triphosphate must be closely related to the cross-resistance by M184V RT. The natural substrates, 2'-deoxyribo nucleoside triphosphates, escape from the steric stress from the bulky side chain of Val184 by virtue of the d-sugar conformation as well as the interaction of its 3'-OH group with Tyr115, which locates the nucleoside triphosphate out of the clashing distance from Val184. Similarly, the energy-minimized structures of various d-dioxolane nucleoside triphosphates (TP)/RT complexes indicate that the d-dioxolane sugar moiety acquires enough distance from Val184 due to the specific interaction of its 3'-oxygen atom with the nearby enzyme residues such as Tyr115 and Arg72.
机译:HIV-1逆转录酶(RT)的突变及其产生的适应性对有效抗病毒策略的设计提出了重大挑战,因为许多最初有效的药物会随着时间的流逝而失去功效。尽管迫切需要全面了解突变体RTs的抗HIV耐药性的分子机制,但由于缺乏突变体RTs的结构信息,因此无法进行详细研究。在这项研究中,通过计算方法构建了3TC抗性(M184V)RT的活性位点,该位点清楚地表明Val184的侧链占据了三磷酸核苷的结合位点。因此,Val184的侧链与三磷酸核苷的糖部分之间的距离必须与M184V RT的交叉电阻密切相关。天然底物2'-脱氧核糖核苷三磷酸凭借d-糖构象及其3'-OH基团与Tyr115(位于核苷的位置)的相互作用,摆脱了Val184庞大侧链的空间应力。三磷酸酯与Val184的碰撞距离之外。同样,各种d-二氧戊环核苷三磷酸(TP)/ RT配合物的能量最小化结构表明,由于其3'-氧原子与附近酶残基的特异性相互作用,d-二氧戊环糖部分与Val184具有足够的距离。例如Tyr115和Arg72。

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