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A CDC25 family protein phosphatase gates cargo recognition by the Vps26 retromer subunit

机译:CDC25家族蛋白磷酸酶通过Vps26逆转录子亚基对货物进行识别

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摘要

We describe a regulatory mechanism that controls the activity of retromer, an evolutionarily conserved sorting device that orchestrates cargo export from the endosome. A spontaneously arising mutation that activates the yeast (Saccharomyces cerevisiae) CDC25 family phosphatase, Mih1, results in accelerated turnover of a subset of endocytosed plasma membrane proteins due to deficient sorting into a retromer-mediated recycling pathway. Mih1 directly modulates the phosphorylation state of the Vps26 retromer subunit; mutations engineered to mimic these states modulate the binding affinities of Vps26 for a retromer cargo, resulting in corresponding changes in cargo sorting at the endosome. The results suggest that a phosphorylation-based gating mechanism controls cargo selection by yeast retromer, and they establish a functional precedent for CDC25 protein phosphatases that lies outside of their canonical role in regulating cell cycle progression.>DOI:
机译:我们描述了一种控制逆转录酶活性的调控机制,逆转录酶是一种进化保守的分类装置,可以协调从内体输出的货物。自发产生的突变激活了酵母(Saccharomyces cerevisiae)CDC25家族的磷酸酶Mih1,由于缺乏分类进入介导的回收途径,导致内吞的细胞膜蛋白亚群的代谢加速。 Mih1直接调节Vps26异构体亚基的磷酸化状态;工程模拟这些状态的突变可调节Vps26对后继货物的结合亲和力,从而导致在内体处货物分类的相应变化。结果表明,基于磷酸化的门控机制通过酵母逆转录酶控制货物的选择,它们为CDC25蛋白磷酸酶建立了功能先例,而CDC25蛋白磷酸酶在调节细胞周期进程中起着典型作用。> DOI:

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