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Structural Aspects of Drug Resistance and Inhibition of HIV-1 Reverse Transcriptase

机译:耐药性和HIV-1逆转录酶抑制的结构方面

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摘要

HIV-1 Reverse Transcriptase (HIV-1 RT) has been the target of numerous approved anti-AIDS drugs that are key components of Highly Active Anti-Retroviral Therapies (HAART). It remains the target of extensive structural studies that continue unabated for almost twenty years. The crystal structures of wild-type or drug-resistant mutant HIV RTs in the unliganded form or in complex with substrates and/or drugs have offered valuable glimpses into the enzyme’s folding and its interactions with DNA and dNTP substrates, as well as with nucleos(t)ide reverse transcriptase inhibitor (NRTI) and non-nucleoside reverse transcriptase inhibitor (NNRTIs) drugs. These studies have been used to interpret a large body of biochemical results and have paved the way for innovative biochemical experiments designed to elucidate the mechanisms of catalysis and drug inhibition of polymerase and RNase H functions of RT. In turn, the combined use of structural biology and biochemical approaches has led to the discovery of novel mechanisms of drug resistance and has contributed to the design of new drugs with improved potency and ability to suppress multi-drug resistant strains.
机译:HIV-1逆转录酶(HIV-1 RT)已成为许多获批的抗AIDS药物的目标,这些药物是高效抗逆转录病毒疗法(HAART)的关键组成部分。它仍然是广泛的结构研究的目标,该研究将持续近二十年。未配体形式或与底物和/或药物复合的野生型或抗药性突变HIV RTs的晶体结构为酶的折叠及其与DNA和dNTP底物以及与核苷酸的相互作用提供了宝贵的一瞥(逆转录酶抑制剂(NRTI)和非核苷逆转录酶抑制剂(NNRTIs)药物。这些研究已被用来解释大量的生化结果,并为创新的生化实验铺平了道路,这些实验旨在阐明RT的聚合酶和RNase H功能的催化和药物抑制机理。反过来,结构生物学和生化方法的结合使用导致了新的耐药机制的发现,并为新药的设计做出了贡献,这些新药具有更高的效力和抑制多药耐药菌株的能力。

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