哺乳动物精子获能和顶体反应中的蛋白激酶。

H Breitbart, Z Naor
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引用次数: 119

摘要

与卵子的透明带结合刺激精子进行顶体反应,这一过程使精子能够穿透卵子。在这种结合之前,精子在雌性生殖道中经历了一系列生化转化,统称为获能。只有有能力的精子才能与透明带结合并进行顶体反应。蛋白激酶可能参与细胞内Ca2+在获能和顶体反应过程中的调控。获能的第一个事件是细胞内钙、碳酸氢盐和过氧化氢的增加,它们共同激活腺苷酸环化酶产生环AMP,从而激活蛋白激酶A使某些蛋白质磷酸化。在获能过程中,膜结合的磷脂酶C增加,这种结合被表皮生长因子的加入高度刺激。获能精子通过特定受体与卵细胞的透明带结合,这表明透明带至少与精子头部质膜上的两种不同受体结合。一种是gi偶联受体,它可以激活磷脂酶Cbeta1,并可能调节腺苷酸环化酶,进一步增加环AMP的浓度。环AMP激活蛋白激酶A打开顶体外膜的钙通道,导致细胞质钙的相对少量增加。Ca2+的增加导致磷脂酶cγ的激活,它与第二酪氨酸激酶受体偶联。磷脂酶C、二酰基甘油和肌醇三磷酸水解磷脂酰肌醇二磷酸的产物分别诱导蛋白激酶C和顶体外膜钙通道的激活。蛋白激酶C在质膜上打开钙通道,并与肌醇-三磷酸激活的钙通道一起,导致细胞质钙的第二次和更高的增加。此外,顶体中钙的消耗激活了质膜中钙的容性进入机制,导致胞质钙迅速增加(300-500 nmol l(-1))。细胞内钙浓度(和pH)的增加导致膜融合和顶体反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protein kinases in mammalian sperm capacitation and the acrosome reaction.

Binding to the zona pellucida of an egg stimulates the spermatozoon to undergo the acrosome reaction, a process that enables it to penetrate the egg. Before this binding, the spermatozoon undergoes a series of biochemical transformations in the female reproductive tract, collectively called capacitation. Only capacitated spermatozoa can bind to the zona pellucida and undergo the acrosome reaction. Protein kinases may be involved in the regulation of intracellular Ca2+ during capacitation and the acrosome reaction. The first event in capacitation is the increase in intracellular calcium, bicarbonate and hydrogen peroxide, which collectively activate adenylyl cyclase to produce cyclic AMP, which activates protein kinase A to phosphorylate certain proteins. During capacitation, there is an increase in membrane-bound phospholipase C, and this binding is highly stimulated by the addition of epidermal growth factor to the cells. The capacitated spermatozoon binds to the zona pellucida of the egg via specific receptors and it is suggested that the zona pellucida binds to at least two different receptors in the sperm head plasma membrane. One is a Gi-coupled receptor that can activate phospholipase Cbeta1 and may regulate adenylyl cyclase to further increase cyclic AMP concentrations. The cyclic AMP activates protein kinase A to open a calcium channel in the outer acrosomal membrane, resulting in a relatively small increase in cytosolic calcium. This increase in Ca2+ leads to activation of phospholipase Cgamma, which is coupled to the second tyrosine kinase receptor. The products of phosphatidyl-inositol bisphosphate hydrolysis by phospholipase C, diacylglycerol and inositol-trisphosphate, induce the activation of protein kinase C and a calcium channel in the outer acrosomal membrane, respectively. Protein kinase C opens a calcium channel in the plasma membrane and, together with the inositol-trisphosphate-activated calcium channel, leads to a second and higher increase in cytosolic calcium. In addition, the depletion of calcium in the acrosome activates a capacitative calcium entry mechanism in the plasma membrane, leading to a rapid increase in cytosolic calcium (300-500 nmol l(-1)). This increase in intracellular calcium concentration (and pH) leads to membrane fusion and the acrosome reaction.

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