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The small G protein Arl5 contributes to endosome-to-Golgi traffic by aiding the recruitment of the GARP complex to the Golgi

机译:小G蛋白Arl5通过帮助将GARP复合物募集到高尔基体中来促进内体向高尔基体的运输

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The small G proteins of the Arf family play critical roles in membrane trafficking and cytoskeleton organization. However, the function of some members of the family remains poorly understood including Arl5 which is widely conserved in eukaryotes. Humans have two closely related Arl5 paralogues (Arl5a and Arl5b), and both Arl5a and Arl5b localize to the trans-Golgi with Arl5b being involved in retrograde traffic from endosomes to the Golgi apparatus. To investigate the function of Arl5, we have used Drosophila melanogaster as a model system. We find that the single Arl5 orthologue in Drosophila also localizes to the trans-Golgi, but flies lacking the Arl5 gene are viable and fertile. By using both liposome and column based affinity chromatography methods we find that Arl5 interacts with the Golgi-associated retrograde protein (GARP) complex that acts in the tethering of vesicles moving from endosomes to the trans-Golgi network (TGN). In Drosophila tissues the GARP complex is partially displaced from the Golgi when Arl5 is absent, and the late endosomal compartment is enlarged. In addition, in HeLa cells GARP also becomes cytosolic upon depletion of Arl5b. These phenotypes are consistent with a role in endosome-to-Golgi traffic, but are less severe than loss of GARP itself. Thus it appears that Arl5 is one of the factors that directs the recruitment of the GARP complex to the trans-Golgi, and this function is conserved in both flies and humans.
机译:Arf家族的小G蛋白在膜运输和细胞骨架组织中起关键作用。但是,该家族的某些成员的功能仍然知之甚少,包括在真核生物中广泛保守的Arl5。人类有两个密切相关的Arl5旁系同源物(Arl5a和Arl5b),而Arl5a和Arl5b都位于反式高尔基体,而Arl5b参与了从内体到高尔基体的逆行运输。为了研究Arl5的功能,我们使用了果蝇果蝇作为模型系统。我们发现,果蝇中的单个Arl5直系同源物也定位于反式高尔基体,但是缺少Arl5基因的果蝇是可行的和可育的。通过使用脂质体和基于柱的亲和色谱方法,我们发现Arl5与高尔基体相关的逆行蛋白质(GARP)复合物相互作用,该复合物在从内体向反高尔基体网络(TGN)移动的囊泡束缚中起作用。在果蝇组织中,当缺少Arl5时,GARP复合物会部分地从高尔基体中置换出来,并且晚期的内体区室会扩大。此外,在HeLa细胞中,GARP在耗尽Arl5b后也会变成胞质。这些表型与从内体到高尔基体的运输中的作用是一致的,但是没有GARP本身的丧失严重。因此,似乎Arl5是将GARP复合物募集到反式高尔基体的因素之一,并且该功能在果蝇和人类中均被保守。

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