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一种新型的热不稳定磷脂结合蛋白,SVS VII,存在于小鼠精囊中,是一种精子活力增强剂。

A novel heat-labile phospholipid-binding protein, SVS VII, in mouse seminal vesicle as a sperm motility enhancer.

作者信息

Luo C W, Lin H J, Chen Y H

机构信息

Institute of Biochemical Sciences, College of Science, National Taiwan University, Taipei 106, Taiwan.

出版信息

J Biol Chem. 2001 Mar 9;276(10):6913-21. doi: 10.1074/jbc.M006954200. Epub 2000 Dec 15.

Abstract

SVS VII, one of seven major proteins in mouse seminal vesicle secretion, was purified to homogeneity. Neither glycoconjugate nor free thiol group was detected in the protein. The primary structure deduced from the corresponding cDNA was confirmed using amino acid sequence determination, which supported the finding that SVS VII consists of 76 amino acid residues with five disulfide bridges. Accordingly, it has a theoretical molecular mass of 8538, which was proven using the mass spectrum of SVS VII. The CD spectrum of SVS VII in 50 mm phosphate buffer at pH 7.4 appeared as one negative band arising from the beta form at 217 nm and several fine structures due to nonpeptide chromophores including a prominent band for the disulfide bond at 250 nm. This, together with the predicted secondary structures, indicated no helices but a mixture of beta form, beta turn, and unordered form in SVS VII. A cytochemical study illustrated the presence of the SVS VII-binding region on the entire surface of mouse sperm. The SVS VII-sperm binding was inhibited by the dispersed sperm lipids. The results of TLC overlay assay for the binding of (125)I-SVS VII to phospholipids and the interaction between SVS VII and phospholipid liposomes demonstrated a specific binding of this protein to both phosphatidylethanolamine and phosphatidylserine. The SVS VII-sperm binding greatly enhanced sperm motility but did not induce sperm capacitation. Heating the protein solution for 10 min at 90 degrees C unfolded the protein molecule, and the unfolded SVS VII immobilized the sperm.

摘要

精囊分泌蛋白VII(SVS VII)是小鼠精囊分泌物中的七种主要蛋白质之一,已被纯化至同质。该蛋白质中未检测到糖缀合物或游离巯基。通过氨基酸序列测定证实了从相应cDNA推导的一级结构,这支持了SVS VII由76个氨基酸残基组成且含有五个二硫键的发现。因此,其理论分子量为8538,这通过SVS VII的质谱得到了证实。在pH 7.4的50 mM磷酸盐缓冲液中,SVS VII的圆二色光谱表现为在217 nm处由β形式产生的一个负峰,以及由于非肽发色团产生的几个精细结构,包括在250 nm处二硫键的一个突出峰。这与预测的二级结构一起表明,SVS VII中没有螺旋结构,而是β形式、β转角和无规形式的混合物。细胞化学研究表明,小鼠精子的整个表面都存在SVS VII结合区域。分散的精子脂质可抑制SVS VII与精子的结合。用(125)I-SVS VII与磷脂结合的薄层层析覆盖分析结果以及SVS VII与磷脂脂质体之间的相互作用表明,该蛋白质与磷脂酰乙醇胺和磷脂酰丝氨酸均有特异性结合。SVS VII与精子结合可大大增强精子活力,但不会诱导精子获能。将蛋白质溶液在90℃加热10分钟会使蛋白质分子展开,展开的SVS VII会使精子固定。

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