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哌啶类 CD4 模拟化合物暴露 HIV-1 感染细胞的易损Env 表位,使其对 ADCC 敏感。

Piperidine CD4-Mimetic Compounds Expose Vulnerable Env Epitopes Sensitizing HIV-1-Infected Cells to ADCC.

机构信息

Centre de Recherche du CHUM, Montreal, QC H2X 0A9, Canada.

Infectious Disease Division, Department of Medicine, Uniformed Services University of the Health Sciences, Bethesda, MD 20814, USA.

出版信息

Viruses. 2023 May 17;15(5):1185. doi: 10.3390/v15051185.

Abstract

The ability of the HIV-1 accessory proteins Nef and Vpu to decrease CD4 levels contributes to the protection of infected cells from antibody-dependent cellular cytotoxicity (ADCC) by preventing the exposure of Env vulnerable epitopes. Small-molecule CD4 mimetics (CD4mc) based on the indane and piperidine scaffolds such as (+)-BNM-III-170 and ()-MCG-IV-210 sensitize HIV-1-infected cells to ADCC by exposing CD4-induced (CD4i) epitopes recognized by non-neutralizing antibodies that are abundantly present in plasma from people living with HIV. Here, we characterize a new family of CD4mc, ()-MCG-IV-210 derivatives, based on the piperidine scaffold which engages the gp120 within the Phe43 cavity by targeting the highly conserved Asp Env residue. We utilized structure-based approaches and developed a series of piperidine analogs with improved activity to inhibit the infection of difficult-to-neutralize tier-2 viruses and sensitize infected cells to ADCC mediated by HIV+ plasma. Moreover, the new analogs formed an H-bond with the α-carboxylic acid group of Asp, opening a new avenue to enlarge the breadth of this family of anti-Env small molecules. Overall, the new structural and biological attributes of these molecules make them good candidates for strategies aimed at the elimination of HIV-1-infected cells.

摘要

HIV-1 辅助蛋白 Nef 和 Vpu 降低 CD4 水平的能力有助于保护感染细胞免受抗体依赖的细胞毒性 (ADCC),方法是防止暴露易受 Env 攻击的表位。基于茚烷和哌啶骨架的小分子 CD4 模拟物(CD4mc),如 (+)-BNM-III-170 和 ()-MCG-IV-210,通过暴露被 HIV 感染者血浆中大量存在的非中和抗体识别的 CD4 诱导 (CD4i) 表位,使 HIV-1 感染细胞对 ADCC 敏感。在这里,我们基于哌啶骨架描述了一组新的 CD4mc()-MCG-IV-210 衍生物,该骨架通过靶向高度保守的 Env 残基天冬氨酸来与 gp120 结合在 Phe43 腔内。我们利用基于结构的方法开发了一系列具有改进活性的哌啶类似物,以抑制难以中和的 2 级病毒的感染,并使受感染的细胞对 HIV+ 血浆介导的 ADCC 敏感。此外,新的类似物与 Asp 的 α-羧酸基团形成氢键,为扩大此类抗 Env 小分子的广度开辟了新途径。总的来说,这些分子的新结构和生物学特性使它们成为旨在消除 HIV-1 感染细胞的策略的良好候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23c9/10220648/497bbb2e428f/viruses-15-01185-g001.jpg

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