Kon Shunsuke, Funaki Tomo, Satake Masanobu
Institute of Development, Aging and Cancer; Tohoku University; Sendai, Japan.
Cell Logist. 2011 May;1(3):86-89. doi: 10.4161/cl.1.3.16192.
The role of ArfGAP1 as a terminator or effector in COPi-vesicle formation has been the subject of ongoing discussions. Here, the discussion on the putative terminator/effector functions has been enlarged to include Arf GAP members involved in the formation of clathrin-coated vesicles. ACAP1, whose role has been studied extensively, enhances the recycling of endocytosed proteins to the plasma membrane. Importantly, this positive role appears to be an overall reflection of both the terminator and effector activities attributed to ACAP1. Other Arf GAP subtypes have also been suggested to possess both terminator and effector activities. Interestingly, while most Arf GAP proteins regulate membrane trafficking by acting as facilitators, a few Arf GAP subtypes act as inhibitors.
ArfGAP1作为COPⅠ小泡形成的终止因子或效应因子的作用一直是持续讨论的主题。在此,关于假定的终止因子/效应因子功能的讨论范围已扩大,纳入了参与网格蛋白包被小泡形成的Arf GAP成员。ACAP1的作用已得到广泛研究,它能增强内吞蛋白向质膜的循环利用。重要的是,这一积极作用似乎是归因于ACAP1的终止因子和效应因子活性的总体体现。其他Arf GAP亚型也被认为同时具有终止因子和效应因子活性。有趣的是,虽然大多数Arf GAP蛋白作为促进因子来调节膜运输,但少数Arf GAP亚型却起到抑制作用。