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The Caenorhabditis elegans GARP complex contains the conserved Vps51 subunit and is required to maintain lysosomal morphology

机译:CaenorhabditiseDegrans Garp Complex包含保守的VPS51亚基,并且需要维持溶酶体形态

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In yeast the Golgi-associated retrograde protein (GARP) complex is required for tethering of endosome-derived transport vesicles to the late Golgi. It consists of four subunits—Vps51p, Vps52p, Vps53p, and Vps54p—and shares similarities with other multimeric tethering complexes, such as the conserved oligomeric Golgi (COG) and the exocyst complex. Here we report the functional characterization of the GARP complex in the nematode Caenorhabditis elegans . Furthermore, we identified the C. elegans Vps51 subunit, which is conserved in all eukaryotes. GARP mutants are viable but show lysosomal defects. We show that GARP subunits bind specific sets of Golgi SNAREs within the yeast two-hybrid system. This suggests that the C. elegans GARP complex also facilitates tethering as well as SNARE complex assembly at the Golgi. The GARP and COG tethering complexes may have overlapping functions for retrograde endosome-to-Golgi retrieval, since loss of both complexes leads to a synthetic lethal phenotype.
机译:在酵母中,高压生物相关的逆行蛋白(Garp)复合物需要在晚期Golgi到晚期衍生的转运囊泡。它由四个亚基-VPS51P,VPS52P,VPS53P和VPS54P - 以及与其他多聚体系络合物共享相似性,例如保守的低聚GOLGI(COG)和外胚层复合物。在这里,我们报告了线虫塞米诺菌杆菌的Garp综合体的功能表征。此外,我们鉴定了C.秀丽隐杆线虫VPS51亚基,该亚单位在所有真核生物中保存。 Garp突变体是可行的,但显示溶酶体缺陷。我们展示了Garp亚基在酵母双混合系统内结合了特定的Golgi粪便。这表明C. Elegans Garp Complex也促进了Golgi的系列以及圈套复杂组装。 Garp和Cog Tethering复合物可以具有重叠的逆行内体 - GOLGI检索的重叠功能,因为两个复合物的丧失导致合成致命的表型。

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