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Analysis of CAPZA3 localization reveals temporally discrete events during the acrosome reaction

机译:CAPZA3定位分析揭示了顶体反应过程中的时间离散事件

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摘要

In mammals, the starting point of development is the fusion between sperm and egg. It is well established that sperm fuse with the egg through the equatorial/post-acrosomal region. Apart from this observation and the requirement of two proteins (CD9 in the egg and IZUMO1 in the sperm) very little is known about this fundamental process. Actin polymerization correlates with sperm capacitation in different mammalian species and it has been proposed that F-actin breakdown is needed during the acrosome reaction. Recently, we have presented evidence that actin polymerization inhibitors block the movement of IZUMO1 that accompany the acrosome reaction. These results suggest that actin dynamics play a role in the observed changes in IZUMO1 localization. This finding is significant because IZUMO1 localization in acrosome-intact sperm is not compatible with the known location of the initiation of the fusion between the sperm and the egg. To further understand the actin-mediated changes in protein localization during the acrosome reaction, the distribution of the sperm- specific plus-end actin capping protein CAPZA3 was analyzed. Like IZUMO1, CAPZA3 shows a dynamic pattern of localization; however, these movements follow a different temporal pattern than the changes observed with IZUMO1. In addition, the actin polymerization inhibitor latrunculin A was unable to alter CAPZA3 movement.
机译:在哺乳动物中,发育的起点是精子和卵之间的融合。众所周知,精子会通过赤道/后峰区域与卵融合。除了这一观察结果以及对两种蛋白质(卵中的CD9和精子中的IZUMO1)的需求外,对这一基本过程了解甚少。肌动蛋白的聚合反应与不同哺乳动物物种的精子获能相关,并且有人提出在顶体反应期间需要F-肌动蛋白分解。最近,我们提供了肌动蛋白聚合抑制剂阻止伴随着顶体反应的IZUMO1运动的证据。这些结果表明肌动蛋白动力学在观察到的IZUMO1本地化变化中起作用。这一发现意义重大,因为IZUMO1在顶体完整精子中的定位与精子和卵之间融合起始位置的已知位置不兼容。为了进一步了解顶体反应过程中肌动蛋白介导的蛋白质定位变化,分析了精子特异性正端肌动蛋白加帽蛋白CAPZA3的分布。与IZUMO1一样,CAPZA3也显示了动态的本地化模式。但是,这些运动遵循与IZUMO1观察到的变化不同的时间模式。另外,肌动蛋白聚合抑制剂latrunculin A不能改变CAPZA3的运动。

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