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设计、合成及表征 HIV-1 CA 靶向小分子:PF74 的构象限制。

Design, Synthesis and Characterization of HIV-1 CA-Targeting Small Molecules: Conformational Restriction of PF74.

机构信息

Center for Drug Design, College of Pharmacy, University of Minnesota, Minneapolis, MN 55455, USA.

Laboratory of Biochemical Pharmacology, Department of Pediatrics, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Viruses. 2021 Mar 15;13(3):479. doi: 10.3390/v13030479.

Abstract

Small molecules targeting the PF74 binding site of the HIV-1 capsid protein (CA) confer potent and mechanistically unique antiviral activities. Structural modifications of PF74 could further the understanding of ligand binding modes, diversify ligand chemical classes, and allow identification of new variants with balanced antiviral activity and metabolic stability. In the current work, we designed and synthesized three series of PF74-like analogs featuring conformational constraints at the aniline terminus or the phenylalanine carboxamide moiety, and characterized them using a biophysical thermal shift assay (TSA), cell-based antiviral and cytotoxicity assays, and in vitro metabolic stability assays in human and mouse liver microsomes. These studies showed that the two series with the phenylalanine carboxamide moiety replaced by a pyridine or imidazole ring can provide viable hits. Subsequent SAR identified an improved analog which effectively inhibited HIV-1 (EC = 0.31 μM), strongly stabilized CA hexamer (ΔTm = 8.7 °C), and exhibited substantially enhanced metabolic stability (t = 27 min for 15 vs. 0.7 min for PF74). Metabolic profiles from the microsomal stability assay also indicate that blocking the C5 position of the indole ring could lead to increased resistance to oxidative metabolism.

摘要

小分子靶向 HIV-1 衣壳蛋白 (CA) 的 PF74 结合位点,赋予了强大且具有独特机制的抗病毒活性。PF74 的结构修饰可以进一步了解配体结合模式,使配体的化学类别多样化,并允许识别具有平衡抗病毒活性和代谢稳定性的新变体。在当前的工作中,我们设计并合成了三个系列的 PF74 类似物,其特征在于苯胺末端或苯丙氨酸羧酰胺部分具有构象约束,并通过生物物理热转移测定 (TSA)、基于细胞的抗病毒和细胞毒性测定以及在人和小鼠肝微粒体中的体外代谢稳定性测定对它们进行了表征。这些研究表明,用吡啶或咪唑环取代苯丙氨酸羧酰胺部分的两个系列可以提供可行的命中。随后的 SAR 确定了一种改进的类似物 ,它有效地抑制了 HIV-1(EC = 0.31 μM),强烈稳定了 CA 六聚体(ΔTm = 8.7°C),并表现出显著增强的代谢稳定性(t = 27 min 对 15 对 0.7 min 对 PF74)。来自微粒体稳定性测定的代谢谱也表明,阻止吲哚环的 C5 位置可能会导致对氧化代谢的抵抗力增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14a3/8000227/9ff5b36e3c4d/viruses-13-00479-g001.jpg

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