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The structure of HIV-1 reverse transcriptase complexed with 9-chloro-TIBO: lessons for inhibitor design.

机译:HIV-1逆转录酶与9-chloro-TIBO复合的结构:抑制剂设计的经验教训。

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摘要

BACKGROUND: HIV reverse transcriptase (RT) is a key target of anti-AIDS therapies. Structural studies of HIV-1 RT, unliganded and complexed with different non-nucleoside inhibitors (NNIs), have pointed to a common mode of binding and inactivation through distortion of the polymerase catalytic site by NNIs containing two hinged rings. The mode of binding of the TIBO family of inhibitors is of interest because these compounds do not fit the two-hinged-ring model. RESULTS: The structure of HIV-1 RT complexed with 9-chloro-TIBO (R82913) has been determined at 2.6 A resolution. As reported for the lower resolution analysis of another TIBO compound, this inhibitor binds at the same site as other NNIs, but our higher resolution study reveals the Cl-TIBO is distorted from the conformation seen in crystals of the inhibitor alone. This allows Cl-TIBO to mimic the binding of NNIs containing two hinged rings. Inhibitor-protein interactions are again predominantly hydrophobic and the protein conformation corresponds to that seen in complexes with other tight-binding NNIs. CONCLUSIONS: Although Cl-TIBO is chemically very different from other NNIs, it achieves remarkable spatial equivalence and shape complementarity with other NNIs on binding to RT. Comparison of the different RT-NNI complexes suggests modifications to the TIBO group of inhibitors which might enhance their binding and hence, potentially, their therapeutic efficacy.
机译:背景:HIV逆转录酶(RT)是抗艾滋病治疗的关键目标。 HIV-1 RT的结构研究未结合并与不同的非核苷抑制剂(NNIs)结合,指出了一种常见的结合和失活模式,即通过含有两个铰链环的NNI扭曲聚合酶催化位点而使其失活。 TIBO抑制剂家族的结合方式令人关注,因为这些化合物不适合双环模型。结果:HIV-1 RT与9-chloro-TIBO(R82913)复合的结构已在2.6 A分辨率下测定。正如对另一种TIBO化合物的低分辨率分析所报道的那样,该抑制剂与其他NNI的结合位点相同,但我们的更高分辨率的研究表明,Cl-TIBO与仅在抑制剂晶体中所见的构象不同。这允许C1-TIBO模拟包含两个铰链环的NNI的结合。抑制剂-蛋白质相互作用再次主要是疏水性的,并且该蛋白质构象对应于与其他紧密结合的NNI的复合物中所见的构象。结论:尽管Cl-TIBO在化学上与其他NNI有很大不同,但在与RT结合时,它可与其他NNI实现显着的空间等效性和形状互补性。不同RT-NNI复合物的比较表明,对TIBO组抑制剂的修饰可能会增强其结合,从而可能增强其治疗功效。

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