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证明小鼠巯基氧化酶辅助主要精囊蛋白的交联。

Evidence for mouse sulfhydryl oxidase-assisted cross-linking of major seminal vesicle proteins.

机构信息

Department of Biotechnology, BIT-Campus, Anna University, Tiruchirappalli, Tamil Nadu, India.

出版信息

Mol Reprod Dev. 2019 Nov;86(11):1682-1693. doi: 10.1002/mrd.23258. Epub 2019 Aug 26.

Abstract

Copulatory plug formation in animals is a general phenomenon by which competition is reduced among rival males. In mouse, the copulatory plug formation results from the coagulation of highly viscous seminal vesicle secretion (SVS) that is rich in proteins, such as dimers of SVS I, SVS I + II + III, and SVS II. These high-molecular-weight complexes (HMWCs) are also reported to be the bulk of proteins in the copulatory plug of the female mouse following copulation. In addition, mouse SVS contributes to the existence of sulfhydryl oxidase (Sox), which mediates the disulfide bond formation between cysteine residues. In this study, flavin adenine dinucleotide (FAD)-dependent Sox was purified from mouse SVS using ion exchange and high-performance liquid chromatography. The purified enzyme was identified to be Sox, based on western blot analysis with Sox antiserum and its capability of oxidizing dithiothreitol as substrate. The pH optima and thermal stability of the enzyme were determined. Among the metal ions tested, zinc showed an inhibitory effect on Sox activity. A prosthetic group of the enzyme was identified as FAD. The K and V of the enzyme was also determined. In addition to purification and biochemical characterization of seminal vesicle Sox, the major breakthrough of this study was proving its cross-linking activity among SVS I-III monomers to form HMWCs in SVS.

摘要

动物的交配栓形成是一种普遍现象,通过这种现象,可以减少雄性之间的竞争。在小鼠中,交配栓的形成是由于高度粘稠的精囊分泌物(SVS)的凝固所致,SVS 富含蛋白质,如 SVS I、SVS I+II+III 和 SVS II 的二聚体。这些高分子量复合物(HMWCs)也被报道为雌性小鼠交配后交配栓中蛋白质的主要成分。此外,小鼠 SVS 有助于巯基氧化酶(Sox)的存在,Sox 介导半胱氨酸残基之间的二硫键形成。在这项研究中,使用离子交换和高效液相色谱从小鼠 SVS 中纯化黄素腺嘌呤二核苷酸(FAD)依赖性 Sox。通过 Sox 抗血清的 Western blot 分析和氧化二硫苏糖醇作为底物的能力,鉴定出纯化的酶为 Sox。测定了酶的 pH 最佳值和热稳定性。在所测试的金属离子中,锌对 Sox 活性表现出抑制作用。酶的辅基被鉴定为 FAD。还测定了酶的 K 和 V。除了精囊 Sox 的纯化和生化特性外,本研究的主要突破是证明了它在 SVS 中具有将 SVS I-III 单体交联形成 HMWCs 的交联活性。

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