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Isoform-specific tethering links the Golgi ribbon to maintain compartmentalization.

机译:特定于异构体的系链将高尔基体带连接起来以保持区分开。

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摘要

Homotypic membrane tethering by the Golgi reassembly and stacking proteins (GRASPs) is required for the lateral linkage of mammalian Golgi ministacks into a ribbon-like membrane network. Although GRASP65 and GRASP55 are specifically localized to cis and medial/trans cisternae, respectively, it is unknown whether each GRASP mediates cisternae-specific tethering and whether such specificity is necessary for Golgi compartmentalization. Here each GRASP was tagged with KillerRed (KR), expressed in HeLa cells, and inhibited by 1-min exposure to light. Significantly, inactivation of either GRASP unlinked the Golgi ribbon, and the immediate effect of GRASP65-KR inactivation was a loss of cis- rather than trans-Golgi integrity, whereas inactivation of GRASP55-KR first affected the trans- and not the cis-Golgi. Thus each GRASP appears to play a direct and cisternae-specific role in linking ministacks into a continuous membrane network. To test the consequence of loss of cisternae-specific tethering, we generated Golgi membranes with a single GRASP on all cisternae. Remarkably, the membranes exhibited the full connectivity of wild-type Golgi ribbons but were decompartmentalized and defective in glycan processing. Thus the GRASP isoforms specifically link analogous cisternae to ensure Golgi compartmentalization and proper processing.
机译:高尔基体重组和堆叠蛋白(GRASPs)的同型膜束缚是哺乳动物高尔基体微堆叠向带状膜网络横向连接所必需的。虽然GRASP65和GRASP55分别专门定位于顺式和反式/反式水箱,但尚不清楚每个GRASP是否介导水箱特有的系链,以及这种高尔基区室化是否必要。在这里,每个GRASP都标记有KillerRed(KR),在HeLa细胞中表达,并受到1分钟的光照抑制。值得注意的是,GRASP55-KR的失活首先使反式-而不是反式-高尔基体失去作用,而GRASP65-KR失活的直接作用是失去顺式-而不是反式-高尔基体完整性,而GRASP55-KR的失活首先影响了反式-而不是顺式-高尔基体。 。因此,每个GRASP在将微型烟囱连接成连续的膜网络中似乎起着直接的,池特定的作用。为了测试水箱特定系链丢失的后果,我们在所有水箱上用单个GRASP生成了高尔基膜。值得注意的是,这些膜表现出野生型高尔基体带的完全连通性,但在葡萄糖加工过程中被分解并存在缺陷。因此,GRASP亚型特异性地连接了类似的水箱,以确保高尔基体区室化和适当的加工。

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