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分子“体操”:HIV-1对CCR5拮抗剂的耐药机制及其对病毒表型的影响

Molecular Gymnastics: Mechanisms of HIV-1 Resistance to CCR5 Antagonists and Impact on Virus Phenotypes.

作者信息

Roche Michael, Borm Katharina, Flynn Jacqueline K, Lewin Sharon R, Churchill Melissa J, Gorry Paul R

机构信息

College of Science, Engineering and Health, RMIT University, 414-418 Swanston St, Melbourne 3083, Australia.

出版信息

Curr Top Med Chem. 2016;16(10):1091-106. doi: 10.2174/1568026615666150901114724.

Abstract

Human immunodeficiency virus type 1 (HIV-1) enters host cells through the binding of its envelope glycoproteins (Env) to the host cell receptor CD4 and then subsequent binding to a chemokine coreceptor, either CCR5 or CXCR4. CCR5 antagonists are a relatively recent class addition to the armamentarium of anti-HIV-1 drugs. These compounds act by binding to a hydrophobic pocket formed by the transmembrane helices of CCR5 and altering the conformation of the extracellular domains, such that they are no longer recognized by Env. Maraviroc is the first drug within this class to be licenced for use in HIV-1 therapy regimens. HIV resistance to CCR5 antagonists occurs either through outgrowth of pre-existing CXCR4-using viruses, or through acquisition of the ability of CCR5-using HIV-1 to use the antagonist bound form of CCR5. In the latter scenario, the mechanism underlying resistance is through complex alterations in the way that resistant Envs engage CCR5. These significant changes are unlikely to occur without consequence to the viral entry phenotype and may also open up new avenues to target CCR5 antagonist resistant viruses. This review discusses the mechanism of action of CCR5 antagonists, how HIV resistance to CCR5 antagonists occurs, and the subsequent effects on Env function.

摘要

1型人类免疫缺陷病毒(HIV-1)通过其包膜糖蛋白(Env)与宿主细胞受体CD4结合,随后再与趋化因子共受体CCR5或CXCR4结合,从而进入宿主细胞。CCR5拮抗剂是抗HIV-1药物库中相对较新的一类药物。这些化合物通过与CCR5跨膜螺旋形成的疏水口袋结合并改变细胞外结构域的构象来发挥作用,使Env不再识别它们。马拉维若(maraviroc)是该类药物中首个被批准用于HIV-1治疗方案的药物。HIV对CCR5拮抗剂产生耐药性的情况,要么是预先存在的利用CXCR4的病毒大量增殖,要么是利用CCR5的HIV-1获得了使用与拮抗剂结合形式的CCR5的能力。在后一种情况下,耐药性的潜在机制是耐药性Env与CCR5结合方式的复杂改变。这些显著变化不太可能不影响病毒进入表型,并且还可能为靶向CCR5拮抗剂耐药病毒开辟新途径。本综述讨论了CCR5拮抗剂的作用机制、HIV对CCR5拮抗剂产生耐药性的方式以及对Env功能的后续影响。

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