首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Functional Separation of Endosomal Fusion Factors and the Class C Core Vacuole/Endosome Tethering (CORVET) Complex in Endosome Biogenesis
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Functional Separation of Endosomal Fusion Factors and the Class C Core Vacuole/Endosome Tethering (CORVET) Complex in Endosome Biogenesis

机译:内体生物发生中的内体融合因子和C类核心液泡/内体束缚(CORVET)复合体的功能分离

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摘要

Transport along the endolysosomal system requires multiple fusion events at early and late endosomes. Deletion of several endosomal fusion factors, including the Vac1 tether and the Class C core vacuole/endosome tethering (CORVET) complex-specific subunits Vps3 and Vps8, results in a class D vps phenotype. As these mutants have an apparently similar defect in endosomal transport, we asked whether CORVET and Vac1 could still act in distinct tethering reactions. Our data reveal that CORVET mutants can be rescued by Vac1 overexpression in the endocytic pathway but not in CPY or Cps1 sorting to the vacuole. Moreover, when we compared the ultrastructure, CORVET mutants were most similar to deletions of the Rab Vps21 and its guanine nucleotide exchange factor Vps9 and different from vac1 deletion, indicating separate functions. Likewise, CORVET still localized to endosomes even in the absence of Vac1, whereas Vac1 localization became diffuse in CORVET mutants. Importantly, CORVET localization requires the Rab5 homologs Vps21 and Ypt52, whereas Vac1 localization is strictly Vps21-dependent. In this context, we also uncover that Muk1 can compensate for loss of Vps9 in CORVET localization, indicating that two Rab5 guanine nucleotide exchange factors operate in the endocytic pathway. Overall, our study reveals a unique role of CORVET in the sorting of biosynthetic cargo to the vacuole/lysosome.
机译:沿溶酶体系统的运输需要在早期和晚期内体中发生多次融合事件。删除多个内体融合因子,包括Vac1系链和C类核心液泡/内体系链(CORVET)复合物特异性亚基Vps3和Vps8,将导致D类vps表型。由于这些突变体在内体运输中具有明显相似的缺陷,因此我们询问CORVET和Vac1是否仍可以在不同的束缚反应中起作用。我们的数据表明,CORVET突变体可以通过内吞途径中的Vac1过表达来挽救,但不能通过CPY或Cps1分类到液泡。此外,当我们比较超微结构时,CORVET突变体与Rab Vps21及其鸟嘌呤核苷酸交换因子Vps9的缺失最相似,而与vac1缺失不同,表明它们的功能不同。同样,即使在没有Vac1的情况下,CORVET仍会定位于内体,而Vac1的定位会在CORVET突变体中扩散。重要的是,CORVET本地化需要Rab5同源物Vps21和Ypt52,而Vac1本地化严格取决于Vps21。在这种情况下,我们还发现Muk1可以补偿CORVET定位中Vps9的丢失,表明两个Rab5鸟嘌呤核苷酸交换因子在胞吞途径中起作用。总体而言,我们的研究揭示了CORVET在将生物合成货物分拣到液泡/溶酶体中的独特作用。

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