The mode of reproductive-derived Spink (serine protease inhibitor Kazal-type) action in the modulation of mammalian sperm activity

C.-M. Ou, J.-B. Tang, M.-S. Huang, P. S. Sudhakar Gandhi, S. Geetha, S.-H. Li, Y.-H. Chen
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引用次数: 29

Abstract

The reproductive-derived serine protease inhibitor Kazal-type (Spink) has been identified in seminal plasma, and Spink–spermatozoa binding has been illustrated in many mammalian species including human. We used mice as experimental animal to study the mode of Spink action in the modulation of mammalian sperm activity. A Spink3-binding zone was cytochemically stained on the sperm head at apical hook separated from intact acrosome, whether the cells were capacitated or not. The Spink3–spermatozoa binding neither changed the population of cells in the uncapacitated, capacitated and acrosome-reacted status nor affected the capacitation-related protein phosphorylation and cell motility enhancement. Despite that, the Spink–spermatozoa interaction resulted in decreasing the intracellular calcium concentration ([Ca2+]i) of the cell head and suppressing both the acrosome reaction induced by Ca+2 ionophore A23187 and the cell fertility. Furthermore, Spink3 seen on the head of spermatozoa in the uterine cavity after coitus could be removed by the trypsin-like activity in the uterine fluid of oestrous females, and free Spink3 in the uterine cavity suppressed the protease activity. We integrated our data to shed light on the molecular mechanism of how Spink and its inhibiting protease are interplayed to modulate the activity of mammalian spermatozoa during their transit in the reproductive tract.

Abstract Image

生殖源性Spink(丝氨酸蛋白酶抑制剂kazal型)在哺乳动物精子活性调节中的作用模式
生殖来源的丝氨酸蛋白酶抑制剂Kazal-type (Spink)已在精浆中被鉴定出来,并在包括人类在内的许多哺乳动物中发现了Spink -精子结合。我们以小鼠为实验动物,研究了Spink在哺乳动物精子活性调节中的作用模式。无论细胞是否失能,在精子顶体分离的顶钩处,细胞化学染色发现spink3结合区。spink3 -精子结合既不改变失能、获能和顶体反应状态下的细胞群体,也不影响获能相关蛋白的磷酸化和细胞运动增强。尽管如此,spk -精子的相互作用降低了细胞头内钙离子浓度([Ca2+]i),抑制了Ca+2离子载体A23187诱导的顶体反应和细胞的生育能力。此外,性交后子宫腔内精子头部的Spink3可被发情雌性子宫液中胰蛋白酶样活性清除,子宫腔内游离的Spink3可抑制蛋白酶活性。我们整合了我们的数据,以阐明Spink及其抑制蛋白酶如何相互作用以调节哺乳动物精子在生殖道运输过程中的活性的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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