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精子获能的生物学:多条信号通路的证据

Biology of sperm capacitation: evidence for multiple signalling pathways.

作者信息

Tulsiani Daulat R P, Zeng Hai-Tao, Abou-Haila Aida

机构信息

Department of Obstetrics & Gynecology, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.

出版信息

Soc Reprod Fertil Suppl. 2007;63:257-72.

Abstract

The endpoint of in vitro/in vivo capacitation is the ability of sperm surface receptors to bind to their complementary ligands on zona pellucida, the extracellular glycocalyx that surrounds the egg, and undergo the Ca2+-dependent signal transduction. The net result is the fenestration and fusion of the sperm plasma membrane and the underlying outer acrosomal membrane at multiple sites and exocytosis of acrosomal contents. The hydrolytic action of glycohydrolases and proteinases, released at the site of sperm-zona binding, along with the enhanced thrust generated by the hyperactivated flagellar motility of the bound spermatozoon, are important factors that regulate the fertilization process. This report discusses the physiological significance of calmodulin, a 17 kDa Ca2+ sensor protein, in sperm function. The in vitro experimental approaches described in this article provide evidence strongly suggesting that calmodulin plays an important role in the priming (that is, capacitation) of mouse spermatozoa as well as in the agonist-induced acrosome reaction. In addition, we have used several calmodulin antagonists in an attempt to characterize further the morphological and biochemical changes associated with sperm capacitation. Data presented in this report suggest that calmodulin antagonists prevent capacitation by interfering with multiple regulatory pathways and do so either with or without adverse effects on sperm motility and protein tyrosine phosphorylation of sperm components.

摘要

体外/体内获能的终点是精子表面受体能够与卵透明带上的互补配体结合的能力,卵透明带是围绕卵子的细胞外糖萼,并经历钙离子依赖的信号转导。最终结果是精子质膜和下方的顶体外膜在多个位点出现窗孔形成和融合,以及顶体内容物的胞吐作用。在精子-透明带结合位点释放的糖水解酶和蛋白酶的水解作用,以及结合的精子超活化鞭毛运动产生的增强推力,是调节受精过程的重要因素。本报告讨论了钙调蛋白(一种17 kDa的钙离子传感蛋白)在精子功能中的生理意义。本文所述的体外实验方法提供了有力证据,表明钙调蛋白在小鼠精子的启动(即获能)以及激动剂诱导的顶体反应中起重要作用。此外,我们使用了几种钙调蛋白拮抗剂,试图进一步表征与精子获能相关的形态和生化变化。本报告中的数据表明,钙调蛋白拮抗剂通过干扰多种调节途径来阻止获能,并且这样做对精子活力和精子成分的蛋白质酪氨酸磷酸化有或没有不利影响。

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