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GRASP: A Multitasking Tether

机译:GRASP:多任务系绳

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摘要

Originally identified as Golgi stacking factors in vitro, the Golgi reassembly stacking protein (GRASP) family has been shown to act as membrane tethers with multiple cellular roles. As an update to previous comprehensive reviews of the GRASP family (Vinke et al., 2011) (Giuliani et al., 2011;Jarvela and Linstedt, 2012), we outline here the latest findings concerning their diverse roles. New insights into the mechanics of GRASP-mediated tethering come from recent crystal structures. The models of how GRASP65 and GRASP55 tether membranes relate directly to their role in Golgi ribbon formation in mammalian cells and the unlinking of the ribbon at the onset of mitosis. However, it is also clear that GRASPs act outside the Golgi with roles at the ER and ER exit sites (ERES). Furthermore, the proteins of this family display other roles upon cellular stress, especially in mediating unconventional secretion of both transmembrane proteins (Golgi bypass) and cytoplasmic proteins (through secretory autophagosomes).
机译:高尔基体重组堆叠蛋白(GRASP)家族最初被鉴定为体外高尔基体堆积因子,已被证明可充当具有多种细胞作用的膜系链。作为对GRASP家族以前的全面综述的更新(Vinke等,2011)(Giuliani等,2011; Jarvela和Linstedt,2012),我们在此概述有关其多种作用的最新发现。最近的晶体结构对GRASP介导的系链机制产生了新的见解。 GRASP65和GRASP55系链膜如何与它们在哺乳动物细胞中高尔基体带形成中的作用以及有丝分裂开始时带的解开直接相关的模型。但是,很明显,GRASP在高尔基体外部起作用,在ER和ER出口站点(ERES)发挥作用。此外,该家族的蛋白质在细胞应激时表现出其他作用,尤其是在介导跨膜蛋白质(高尔基旁路)和细胞质蛋白质(通过分泌性自噬体)的非常规分泌中。

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