Protein kinase C action at fertilization: overstated or undervalued?

K T Jones
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引用次数: 47

Abstract

At fertilization, the spermatozoon is generally held to generate two important second messengers, inositol trisphosphate and diacylglycerol. A similar situation arises when these signalling molecules are generated after a hormone binds to its plasma membrane receptor. This signalling mechanism releases intracellular Ca2+ which causes cortical granule release and initiates meiotic resumption. This review will examine the role played at fertilization by protein kinase C which is a primary target of diacylglycerol. The pharmacological agents phorbol esters, which mimic the action of diacylglycerol, when added to mammalian oocytes induce cortical granule release and may cause meiotic resumption. However, the originally accepted mechanism of fertilization is now questioned with the recent finding of a soluble sperm Ca2+-releasing factor expelled directly into the oocyte cytoplasm, bypassing any membrane receptor. Therefore, it is timely to re-evaluate the role played by protein kinase C at fertilization in light of a mechanism that may produce Ca2+ without producing diacylglycerol concomitantly. This article will examine the evidence implicating activation of protein kinase C in Ca2+ oscillations, cortical granule release and meiotic resumption. It will contend that pharmacological studies relying on the specificity of phorbol esters and other agonists, as well as inhibitors of protein kinase C, have produced conflicting interpretations of the role of this kinase at fertilization.

蛋白激酶C在受精中的作用:被高估还是被低估?
受精时,精子通常产生两个重要的第二信使,肌醇三磷酸和二酰基甘油。当激素与其质膜受体结合后产生这些信号分子时,也会出现类似的情况。这种信号机制释放细胞内Ca2+,导致皮质颗粒释放并启动减数分裂恢复。本文将探讨二酰基甘油的主要靶点蛋白激酶C在受精过程中所起的作用。类似二酰基甘油作用的药理学制剂佛博尔酯添加到哺乳动物卵母细胞中,可诱导皮质颗粒释放,并可能导致减数分裂恢复。然而,最初接受的受精机制现在受到质疑,因为最近发现一种可溶性精子Ca2+释放因子直接排出到卵母细胞细胞质中,绕过任何膜受体。因此,重新评估蛋白激酶C在受精过程中的作用是及时的,因为它可能产生Ca2+而不同时产生二酰基甘油。本文将研究Ca2+振荡、皮质颗粒释放和减数分裂恢复中蛋白激酶C激活的证据。它将争辩说,依赖于佛博尔酯和其他激动剂以及蛋白激酶C抑制剂的特异性的药理学研究已经产生了对该激酶在受精中的作用的相互矛盾的解释。
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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