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通过细胞分级分离、荧光检测和质谱分析相结合的方法,对参与运动的鞭毛富含半胱氨酸的精子蛋白进行了表征。

Characterization of flagellar cysteine-rich sperm proteins involved in motility, by the combination of cellular fractionation, fluorescence detection, and mass spectrometry analysis.

机构信息

Department of Morphology and Physiology, Laboratorio de Investigaciones Andrológicas de Mendoza (LIAM) del Instituto de Histología y Embriología de Mendoza (IHEM), Histology and Embryology Area, School of Medicine, National University of Cuyo-CCT-Mendoza, CONICET, Mendoza, Argentina.

出版信息

Cytoskeleton (Hoboken). 2011 Sep;68(9):491-500. doi: 10.1002/cm.20525. Epub 2011 Aug 16.

Abstract

Mammalian sperm proteins undergo thiol group (SH) oxidation to form disulfides bonds (SS) as they travel through the epididymis during cell maturation. Disulfide bonds are involved in chromatin condensation and tail organelle stabilization. In this work, we used a fluorescent thiol-selective labeling agent, monobromobimane (mBBr), to study the protein thiol status of rat sperm during maturation. Fluorescence signal decrease along the epididymal trip, more evidently in the head, but also in the tail, indicates that both sub cellular regions participate in the thiol changes. The sources of the fluorescence signal are sulfhydryls sperm proteins labeled by mBBr (mBBr-spp). Initial attempts to identify the mBBr-spp labeled were detected in the initial-caput, but not in the distal cauda-segment of the epididymis in sodium dodecyl sulfate (SDS)-PAGE analysis. This phenomenon could be due to protein resistance to solubilization. For this reason, disulfide bond reduction was accomplished by sodium dodecyl sulfate plus dithiothreitol treatment to recover the mBBr signal in SDS-PAGE. Under this protocol, a major 27 kDa protein band displays a strong signal. Protein identification by mass spectrometry and sequence database searching correlated this protein with the outer dense fiber 1 (ODF1). The mBBr specifically bound to N-terminal domain cysteine of ODF1. The mBBr reduces rat sperm motility, quantitatively and qualitatively, and the effects are dose dependent, without significantly increasing the percentage of dead sperm. Thus, we found that ODF1 is highly responsible for mBBr fluorescence detection in the sperm tail, and the motility inhibition by the fluorescence marker indicates that ODF1 N-terminal domain are related to sperm motility. © 2011 Wiley-Liss, Inc.

摘要

哺乳动物精子蛋白在细胞成熟过程中通过附睾时经历巯基(SH)氧化形成二硫键(SS)。二硫键参与染色质浓缩和尾部细胞器稳定。在这项工作中,我们使用荧光硫醇选择性标记试剂单溴代乙内酰脲(mBBr)研究精子成熟过程中大鼠精子的蛋白巯基状态。荧光信号沿附睾行程减少,头部更为明显,但尾部也有减少,表明这两个亚细胞区域都参与了巯基变化。荧光信号的来源是 mBBr 标记的精子蛋白巯基(mBBr-spp)。在初始-头段检测到初始-caput 中 mBBr-spp 标记的最初尝试,但在尾部的远段没有检测到。这种现象可能是由于蛋白质对溶解的抵抗力。因此,通过十二烷基硫酸钠(SDS)加二硫苏糖醇处理还原二硫键以恢复 SDS-PAGE 中的 mBBr 信号。在该方案下,主要的 27 kDa 蛋白带显示出强烈的信号。通过质谱和序列数据库搜索鉴定的蛋白质与外致密纤维 1(ODF1)相关。mBBr 特异性结合 ODF1 的 N 端结构域半胱氨酸。mBBr 定量和定性地降低了精子的运动能力,并且效果呈剂量依赖性,而不会显著增加死精子的百分比。因此,我们发现 ODF1 高度负责精子尾部的 mBBr 荧光检测,荧光标记物的运动抑制表明 ODF1 N 端结构域与精子运动有关。2011 年 Wiley-Liss,Inc.

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