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首页> 外文期刊>Mechanisms of Development >A Rho-signaling pathway mediates cortical granule translocation in the sea urchin oocyte
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A Rho-signaling pathway mediates cortical granule translocation in the sea urchin oocyte

机译:Rho信号通路介导海胆卵母细胞中的皮质颗粒易位

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Cortical granules are secretory vesicles of the egg that play a fundamental role in preventing polyspermy at fertilization. In the sea urchin egg, they localize directly beneath the plasma membrane forming a compact monolayer and, upon fertilization, undergo a Ca2+-dependent exocytosis. Cortical granules form during early oogenesis and, during maturation, translocate from the cytosol to the oocyte cortex in a inicrofilament-mediated process. We tested the hypothesis that these cortical granule dynamics were regulated by Rho, a GTPase of the Ras superfamily. We observed that Rho is synthesized early in oogenesis, mainly in a soluble form. At the end of maturation, however, Rho associates with cortical granules. Inhibition of Rho with the C3 transferase from C. bottilinum blocks cortical granule translocation and microfilaments undergo a significant disorganization. A similar effect is observed by GGTI-286, a geranylgeranyl transferase inhibitor, suggesting that the association of Rho with the cortical granules is indispensable for its function. In contrast, the anchorage of the cortical granules in the cortex, as well as their fusion at fertilization, are Rho-independent processes. We conclude that Rho association with the cortical granules is a critical regulatory step in their translocation to the egg cortex
机译:皮质颗粒是卵的分泌性囊泡,在阻止受精过程中的多精子中起基本作用。在海胆卵中,它们直接定位在质膜下,形成一个紧凑的单层,受精后会发生Ca2 +依赖的胞吐作用。皮质颗粒形成在早期卵子形成过程中,并且在成熟过程中,在纤丝介导的过程中从胞质溶胶转移到卵母细胞皮层。我们测试了以下假设:这些皮质颗粒动力学受Ras超家族的GTPase Rho调控。我们观察到,Rho在卵子发生早期合成,主要以可溶形式合成。然而,在成熟结束时,Rho会与皮质颗粒结合。来自肉毒梭菌的C3转移酶对Rho的抑制作用会阻断皮层颗粒的移位,微丝会发生明显的混乱。 GGTI-286(一种香叶基香叶基转移酶抑制剂)观察到了类似的效果,这表明Rho与皮质颗粒的结合对其功能是必不可少的。相反,皮质颗粒在皮质中的锚固以及它们在受精时的融合是不依赖Rho的过程。我们得出结论,Rho与皮层颗粒的结合是其向蛋皮层移位的关键调控步骤

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