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发现并鉴定多种人类 CatSper 阻断剂。

Discovery and Characterization of Multiple Classes of Human CatSper Blockers.

机构信息

Department of Medicinal Chemistry and, Institute for Therapeutics Discovery and Development, College of Pharmacy, University of Minnesota, 717 Delaware Street, SE, Minneapolis, MN 55414, USA.

Department of Obstetrics and Gynecology, Washington University School of Medicine, 425 S. Euclid Avenue, St. Louis, MO 63110, USA.

出版信息

ChemMedChem. 2022 Aug 3;17(15):e202000499. doi: 10.1002/cmdc.202000499. Epub 2022 Jun 14.

Abstract

The cation channel of sperm (CatSper) is a validated target for nonhormonal male contraception, but it lacks selective blockers, hindering studies to establish its role in both motility and capacitation. Via an innovative calcium uptake assay utilizing human sperm we discovered novel inhibitors of CatSper function from a high-throughput screening campaign of 72,000 compounds. Preliminary SAR was established for seven hit series. HTS hits or their more potent analogs blocked potassium-induced depolarization and noncompetitively inhibited progesterone-induced CatSper activation. CatSper channel blockade was confirmed by patch clamp electrophysiology and these compounds inhibited progesterone- and prostaglandin E1-induced hyperactivated sperm motility. One of the hit compounds is a potent CatSper inhibitor with high selectivity for CatSper over hCav1.2, hNav1.5, moderate selectivity over hSlo3 and hERG, and low cytotoxicity and is therefore the most promising inhibitor identified in this study. These new CatSper blockers serve as useful starting points for chemical probe development and drug discovery efforts.

摘要

精子阳离子通道(CatSper)是一种经过验证的非激素男性避孕靶点,但缺乏选择性阻断剂,这阻碍了其在运动和获能中作用的确立研究。通过利用人类精子的创新钙离子摄取测定法,我们从 72000 种化合物的高通量筛选中发现了 CatSper 功能的新型抑制剂。建立了七个命中系列的初步 SAR。HTS 命中化合物或其更有效的类似物可阻断钾诱导的去极化,并非竞争性抑制孕酮诱导的 CatSper 激活。通过膜片钳电生理学证实了 CatSper 通道阻断,这些化合物抑制了孕酮和前列腺素 E1 诱导的超激活精子运动。其中一个命中化合物是一种有效的 CatSper 抑制剂,对 CatSper 的选择性高于 hCav1.2、hNav1.5,对 hSlo3 和 hERG 的选择性适中,细胞毒性低,因此是本研究中发现的最有前途的抑制剂。这些新型 CatSper 阻断剂为化学探针开发和药物发现工作提供了有用的起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5319/9546358/3bae8a78c8b1/CMDC-17-0-g013.jpg

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