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男性避孕药靶蛋白 EPPIN 与精浆蛋白 1 和小分子有机配体的相互作用。

Interactions of the male contraceptive target EPPIN with semenogelin-1 and small organic ligands.

机构信息

Department of Biophysics and Pharmacology, Institute of Biosciences of Botucatu, São Paulo State University, Botucatu, SP, Brazil.

Laboratory of Biological Physics, Carlos Chagas Filho Institute of Biophysics, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

出版信息

Sci Rep. 2023 Sep 1;13(1):14382. doi: 10.1038/s41598-023-41365-1.

Abstract

Novel male contraceptives will promote gender equality in sharing contraceptive responsibility. The sperm-associated protein epididymal protease inhibitor (EPPIN) is a promising target for non-hormonal male contraception. EPPIN interacts with the semen coagulum protein semenogelin-1 (SEMG1) on the sperm surface, leading to transient inhibition of sperm motility after ejaculation. Small organic molecules targeting EPPIN's SEMG1-binding are under development as male contraceptives. Here, we combined computational approaches to uncover key aspects underlying EPPIN binding to SEMG1 and small organic ligands. We generated a human EPPIN model showing a typical arrangement of the WFDC (Whey-acid four disulfide core)-type and Kunitz-type domains, connected by a hinge region. Determining the EPPIN model's intrinsic motion by molecular dynamics simulations and normal mode analysis revealed a conformation, presenting a binding pocket that accommodates SEMG1, EP055, and EP012. EPPIN's residues Phe63 and Lys68 (WFDC domain), Asp71 (hinge region), and Asn113, Asn114, and Asn115 (Kunitz domain) were identified as hot spots for SEMG1, EP055, and EP012 binding. Moreover, hydrophobic and hydrophilic residues in the WFDC and Kunitz domains allow plasma membrane anchoring, orienting the EPPIN binding pocket to the solvent. Targeting EPPIN's essential residues for its biomolecular interactions may improve the rational design of EPPIN ligands as spermiostatic compounds.

摘要

新型男性避孕药将促进避孕责任在两性间的平等分担。附睾蛋白酶抑制剂(EPPIN)是一种有前途的非激素男性避孕药的靶点。EPPIN 与精子表面的精液凝固蛋白 semenogelin-1(SEMG1)相互作用,导致射精后精子运动的短暂抑制。针对 EPPIN 与 SEMG1 和小分子配体结合的小分子有机化合物正在被开发为男性避孕药。在这里,我们结合计算方法揭示了 EPPIN 与 SEMG1 结合的关键方面和小分子配体。我们生成了一个人类 EPPIN 模型,显示了典型的 WFDC(乳酸性四硫核心)型和 Kunitz 型结构域的排列方式,通过铰链区域连接。通过分子动力学模拟和正常模式分析确定 EPPIN 模型的固有运动,揭示了一种呈现 SEMG1、EP055 和 EP012 结合口袋的构象。EPPIN 的残基 Phe63 和 Lys68(WFDC 结构域)、Asp71(铰链区域)以及 Asn113、Asn114 和 Asn115(Kunitz 结构域)被确定为 SEMG1、EP055 和 EP012 结合的热点。此外,WFDC 和 Kunitz 结构域中的疏水和亲水残基允许与质膜锚定,使 EPPIN 结合口袋朝向溶剂。针对 EPPIN 生物分子相互作用的关键残基进行靶向,可能会改善 EPPIN 配体作为精子抑制剂化合物的合理设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07dd/10474283/31c838681c9f/41598_2023_41365_Fig1_HTML.jpg

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