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Identification of the Switch in Early-to-Late Endosome Transition

机译:早期到晚期的内体转换中的转换的识别。

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Sequential transport from early to late endosomes requires the coordinated activities of the small GTPases Rab5 and Rab7. The transition between early and late endosomes could be mediated either through transport carriers or by Rab conversion, a process in which the loss of Rab5 from an endosome occurs concomitantly to the acquisition of Rab7. We demonstrate that Rab conversion is the mechanism by which proteins pass from early to late endosomes in Caenorhabditis elegans coelomocytes. Moreover, we identified SAND-1/Mont as the critical switch forRab conversion in metazoa. SAND-1 serves a dualrole in this process. First, it interrupts the positive feedback loop of RAB-5 activation by displacing RABX-5 from endosomal membranes; second, it times the recruitment of RAB-7, probably through interaction with the HOPS complex to the same membranes. SAND-1/Mont thus acts as a switch by controlling the localization of RAB-5 and RAB-7 GEFs.
机译:从早期内体到晚期内体的顺序运输需要小GTPases Rab5和Rab7的协调活动。早期和晚期内体之间的过渡可以通过转运载体或通过Rab转化来介导,在此过程中,Rab5从内体的损失与Rab7的获得同时发生。我们证明Rab转换是蛋白质从秀丽隐杆线虫腔细胞中的早期到晚期内体传递的机制。此外,我们确定SAND-1 / Mont是后生动物中Rab转化的关键开关。 SAND-1在此过程中扮演双重角色。首先,它通过从内体膜置换RABX-5来中断RAB-5激活的正反馈回路。其次,它可能是通过与HOPS复合物相互作用到同一膜上来增加RAB-7的募集时间。因此,SAND-1 / Mont通过控制RAB-5和RAB-7 GEF的定位而充当交换机。

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