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HIV-1的肽三唑抑制剂:Env亚稳定性的劫持者

Peptide Triazole Inhibitors of HIV-1: Hijackers of Env Metastability.

作者信息

P Carter Erik, G Ang Charles, M Chaiken Irwin

机构信息

Department of Microbiology and Immunology, Drexel University College of Medicine, Philadelphia, PA, USA.

Department of Biochemistry and Molecular Biology, Drexel University College of Medicine, Philadelphia, PA, USA.

出版信息

Curr Protein Pept Sci. 2023;24(1):59-77. doi: 10.2174/1389203723666220610120927.

Abstract

With 1.5 million new infections and 690,000 AIDS-related deaths globally each year, HIV- 1 remains a pathogen of significant public health concern. Although a wide array of effective antiretroviral drugs have been discovered, these largely target intracellular stages of the viral infectious cycle, and inhibitors that act at or before the point of viral entry still require further advancement. A unique class of HIV-1 entry inhibitors, called peptide triazoles (PTs), has been developed, which irreversibly inactivates Env trimers by exploiting the protein structure's innate metastable nature. PTs, and a related group of inhibitors called peptide triazole thiols (PTTs), are peptide compounds that dually engage the CD4 receptor and coreceptor binding sites of Env's gp120 subunit. This triggers dramatic conformational rearrangements of Env, including the shedding of gp120 (PTs and PTTs) and lytic transformation of the gp41 subunit to a post-fusion-like arrangement (PTTs). Due to the nature of their dual receptor site engagement, PT/PTT-induced conformational changes may elucidate mechanisms behind the native fusion program of Env trimers following receptor and coreceptor engagement, including the role of thiols in fusion. In addition to inactivating Env, PTT-induced structural transformation enhances the exposure of important and conserved neutralizable regions of gp41, such as the membrane proximal external region (MPER). PTT-transformed Env could present an intriguing potential vaccine immunogen prototype. In this review, we discuss the origins of the PT class of peptide inhibitors, our current understanding of PT/PTT-induced structural perturbations and viral inhibition, and prospects for using these antagonists for investigating Env structural mechanisms and for vaccine development.

摘要

全球每年有150万新感染病例和69万例与艾滋病相关的死亡,HIV-1仍然是一个重大的公共卫生问题病原体。尽管已经发现了大量有效的抗逆转录病毒药物,但这些药物主要针对病毒感染周期的细胞内阶段,而作用于病毒进入点或之前的抑制剂仍需进一步改进。一类独特的HIV-1进入抑制剂,称为肽三唑(PTs),已经被开发出来,它通过利用蛋白质结构固有的亚稳性质来不可逆地使Env三聚体失活。PTs以及一组相关的抑制剂肽三唑硫醇(PTTs)是肽化合物,它们同时结合Env的gp120亚基的CD4受体和共受体结合位点。这会引发Env的显著构象重排,包括gp120的脱落(PTs和PTTs)以及gp41亚基向融合后样排列的裂解转化(PTTs)。由于它们对双受体位点的结合性质,PT/PTT诱导的构象变化可能阐明受体和共受体结合后Env三聚体天然融合程序背后的机制,包括硫醇在融合中的作用。除了使Env失活外,PTT诱导的结构转变还增强了gp41重要且保守的可中和区域的暴露,如膜近端外部区域(MPER)。PTT转化的Env可能是一种有趣的潜在疫苗免疫原原型。在这篇综述中,我们讨论了肽抑制剂PT类的起源,我们目前对PT/PTT诱导的结构扰动和病毒抑制的理解,以及使用这些拮抗剂研究Env结构机制和疫苗开发的前景。

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The Conformational States of the HIV-1 Envelope Glycoproteins.HIV-1 包膜糖蛋白的构象状态。
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