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一种新型附睾静止因子通过调节 NOS 活性和细胞内 NO-cGMP 途径抑制精子运动。

A novel epididymal quiescence factor inhibits sperm motility by modulating NOS activity and intracellular NO-cGMP pathway.

机构信息

Cell Biology and Physiology Division, Sperm Biology Laboratory, CSIR-Indian Institute of Chemical Biology, Kolkata, West Bengal, India.

出版信息

J Cell Physiol. 2018 May;233(5):4345-4359. doi: 10.1002/jcp.26275. Epub 2018 Jan 2.

Abstract

Mature and potentially motile spermatozoa stored in cauda epididymis in an inactive state for approximately 30 days; however, during ejaculation they regain motility. To understand the actual molecular mechanism of the sperm quiescence during caudal stay, a proteinaceous quiescence factor (QF) has been purified from caprine epididymal plasma to apparent homogeneity. In the present study complete purification, detailed characterization as well as mechanistic pathway of QF has been described. QF is purified to 215-fold with 45% activity recovery. It is a 59 kDa monomeric protein with isoelectric point 5.8 and optimally active at pH 7.5. Circular dichroism spectroscopy and atomic force microscopy study confirm its α-helical secondary structure and globular tertiary conformation. QF is a thermo-stable protein as higher temperature does not alter its helical structure. N-terminal amino acid sequencing and MALDI analysis of QF did not find 100% similarity with any available protein of the database, proved its novelty. QF at 2 μM dose inhibits sperm progressive forward motility within 10 min. This motility inhibitory activity of QF is mediated by reducing NOS enzyme activity and subsequently decreasing the intracellular NO and cGMP concentration. It does not modulate intracellular Ca and cAMP concentration. QF has no adverse effect on DNA integrity and morphology of spermatozoa. Motility inhibitory action of QF is reversible. Thus, the role of QF in maintaining energy saving quiescence state of mature cauda spermatozoa and its reactive nitrogen species reducing activity may lead to a new direction for storage of spermatozoa and idiopathic male infertility.

摘要

成熟且具有潜在运动能力的精子在附睾尾部以非活动状态储存约 30 天;然而,在射精时,它们恢复了运动能力。为了了解精子在尾部停留期间静止的实际分子机制,已经从山羊附睾血浆中纯化出一种蛋白质状的静止因子 (QF),达到了明显的均一性。在本研究中,描述了 QF 的完整纯化、详细表征以及机制途径。QF 经纯化 215 倍,活性回收率为 45%。它是一种 59kDa 的单体蛋白,等电点为 5.8,最佳 pH 值为 7.5。圆二色性光谱和原子力显微镜研究证实了其α-螺旋二级结构和球形三级构象。QF 是一种热稳定的蛋白质,因为较高的温度不会改变其螺旋结构。QF 的 N 端氨基酸测序和 MALDI 分析与数据库中任何可用蛋白质没有 100%的相似性,证明了其新颖性。QF 在 2μM 剂量下可在 10 分钟内抑制精子的向前运动。QF 的这种运动抑制活性是通过降低 NOS 酶活性,从而降低细胞内 NO 和 cGMP 浓度来介导的。它不会调节细胞内 Ca 和 cAMP 浓度。QF 对精子的 DNA 完整性和形态没有不良影响。QF 的运动抑制作用是可逆的。因此,QF 在维持成熟尾部精子的节能静止状态及其活性氮物种还原活性中的作用可能为精子储存和特发性男性不育症开辟新的方向。

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