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首页> 外文期刊>Cell Regulation >A Highlights from MBoC Selection: An Amish founder mutation disrupts a PI(3)P-WHAMM-Arp2/3 complex–driven autophagosomal remodeling pathway
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A Highlights from MBoC Selection: An Amish founder mutation disrupts a PI(3)P-WHAMM-Arp2/3 complex–driven autophagosomal remodeling pathway

机译:MBoC选择的亮点:阿米什人创始人突变破坏了PI(3)P-WHAMM-Arp2 / 3复合物驱动的自噬体重塑途径

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Actin nucleation factors function to organize, shape, and move membrane-bound organelles, yet they remain poorly defined in relation to disease. Galloway-Mowat syndrome (GMS) is an inherited disorder characterized by microcephaly and nephrosis resulting from mutations in the WDR73 gene. This core clinical phenotype appears frequently in the Amish, where virtually all affected individuals harbor homozygous founder mutations in WDR73 as well as the closely linked WHAMM gene, which encodes a nucleation factor. Here we show that patient cells with both mutations exhibit cytoskeletal irregularities and severe defects in autophagy. Reintroduction of wild-type WHAMM restored autophagosomal biogenesis to patient cells, while inactivation of WHAMM in healthy cell lines inhibited lipidation of the autophagosomal protein LC3 and clearance of ubiquitinated protein aggregates. Normal WHAMM function involved binding to the phospholipid PI(3)P and promoting actin nucleation at nascent autophagosomes. These results reveal a cytoskeletal pathway controlling autophagosomal remodeling and illustrate several molecular processes that are perturbed in Amish GMS patients.
机译:肌动蛋白成核因子的功能是组织,塑造和移动与膜结合的细胞器,但与疾病的关系仍然不明确。 Galloway-Mowat综合征(GMS)是一种遗传性疾病,其特征是WDR73基因突变导致小头畸形和肾病。这种核心的临床表型经常出现在阿米什人中,实际上所有受影响的人都在WDR73以及编码成核因子的紧密联系的WHAMM基因中携带纯合创始人突变。在这里,我们显示具有两种突变的患者细胞在自噬中均表现出细胞骨架异常和严重缺陷。野生型WHAMM的重新引入恢复了患者细胞的自噬体生物发生,而健康细胞系中WHAMM的失活抑制了自噬体蛋白LC3的脂化和泛素化蛋白聚集体的清除。正常的WHAMM功能涉及与磷脂PI(3)P的结合,并在新生自噬体上促进肌动蛋白成核。这些结果揭示了控制自噬体重塑的细胞骨架途径,并说明了在Amish GMS患者中受到干扰的几种分子过程。

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