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Compensatory endocytosis occurs after cortical granule exocytosis in mouse eggs

机译:皮质后补偿内吞作用发生颗粒胞外分泌的鼠标鸡蛋

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Compensatory endocytosis (CE) is one of the primary mechanisms through which cells maintain their surface area after exocytosis. Considering that in eggs massive exocytosis of cortical granules (CG) takes place after fertilization, the aim of this study was to evaluate the occurrence of CE following cortical exocytosis in mouse eggs. For this purpose, we developed a pulse-chase assay to detect CG membrane internalization. Results showed internalized labeling in SrCI_2-activated and fertilized eggs when chasing at 37℃, but not at a nonpermissive temperature (4℃). The use of kinase and calcineurin inhibitors led us to conclude that this internal labeling corresponded to CE. Further experiments showed that CE in mouse eggs is dependent on actin dynamics and dynamin activity, and could be associated with a transient exposure of phosphatidylserine. Finally, CE was impaired in A23187 ionophore-activated eggs, highlighting once again the mechanistic differences between the activation methods. Altogether, these results demonstrate for the first time that egg activation triggers CE in mouse eggs after exocytosis of CG, probably as a plasma membrane homeostasis mechanism.
机译:补偿内吞作用(CE)是其中一个主要通过细胞维持机制胞外分泌后其表面积。在鸡蛋大量胞外分泌皮质颗粒(CG)发生受精后,本研究的目的是评估后发生的CE皮质胞外分泌鼠标鸡蛋。脉冲追踪试验检测CG膜内化。标签在SrCI_2-activated和受精卵当追逐在37℃,但不是在一个非许可的温度(4℃)。钙调磷酸酶抑制剂使我们得出结论这个内部标签与CE。进一步的实验显示,鼠标CE鸡蛋依赖于肌动蛋白动力学和dynamin吗活动,可以关联到一个磷脂酰丝氨酸的瞬态接触。最后,CE在A23187受损ionophore-activated鸡蛋,再次强调机械的差异激活的方法。第一次证明,鸡蛋激活触发器CE在鼠标鸡蛋胞外分泌的CG,可能作为等离子体膜体内平衡机制。

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