A Commander-independent function of COMMD3 in endosomal trafficking.

Galen T Squiers, Chun Wan, James Gorder, Harrison Puscher, Jingshi Shen
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Abstract

Endosomal recycling is a branch of intracellular membrane trafficking that retrieves endocytosed cargo proteins from early and late endosomes to prevent their degradation in lysosomes. A key player in endosomal recycling is the Commander complex, a 16-subunit protein assembly that cooperates with other endosomal factors to recruit cargo proteins and facilitate the formation of tubulo-vesicular carriers. While the crucial role of Commander in endosomal recycling is well established, its molecular mechanism remains poorly understood. Here, we genetically dissected the Commander complex using unbiased genetic screens and comparative targeted mutations. Unexpectedly, our findings revealed a Commander-independent function for COMMD3, a subunit of the Commander complex, in endosomal recycling. COMMD3 regulates a subset of cargo proteins independently of the other Commander subunits. The Commander-independent function of COMMD3 is mediated by its N-terminal domain (NTD), which binds and stabilizes ADP-ribosylation factor 1 (ARF1), a small GTPase regulating endosomal recycling. Mutations disrupting the COMMD3-ARF1 interaction diminish ARF1 expression and impair COMMD3-dependent cargo recycling. These data provide direct evidence that Commander subunits can function outside the holo-complex and raise the intriguing possibility that components of other membrane trafficking complexes may also possess functions beyond their respective complexes.

comm3在内体运输中的独立功能。
内核体再循环是细胞膜内运输的一个分支,它从早期和晚期的内核体中回收内吞的货物蛋白,以防止它们在溶酶体中降解。在内体循环中起关键作用的是Commander复合体,这是一种16个亚基的蛋白质组合,与其他内体因子合作,招募货物蛋白并促进小管囊泡载体的形成。虽然Commander在内体再循环中的关键作用已被确定,但其分子机制仍知之甚少。在这里,我们使用无偏遗传筛选和比较靶向突变对指挥官复合体进行遗传解剖。出乎意料的是,我们的研究结果揭示了Commander复合体的亚基COMMD3在内体循环中具有与Commander无关的功能。COMMD3独立于其他Commander亚基调节货物蛋白的一个亚基。COMMD3的Commander-independent功能由其n端结构域(NTD)介导,该结构域结合并稳定adp -核糖基化因子1 (ARF1), ARF1是一种调节内体循环的小GTPase。破坏COMMD3-ARF1相互作用的突变减少了ARF1的表达,损害了commd3依赖性的货物循环。这些数据提供了直接证据,证明Commander亚基可以在全息复合物之外发挥作用,并提出了其他膜运输复合物的成分也可能具有各自复合物之外的功能的有趣可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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