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Understanding phosphatidylinositol-3-phosphate dynamics during autophagosome biogenesis

机译:了解自噬小体生物发生过程中磷脂酰肌醇-3-磷酸酯的动力学

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摘要

Autophagosomes, the hallmark of autophagy, are double-membrane vesicles sequestering cytoplasmic components. They are generated at the phagophore assembly site (PAS), the phagophore being the precursor structure of these carriers. According to the current model, autophagosomes result from the elongation and reorganization of membranes at the PAS/phagophore driven by the concerted action of the autophagy-related (Atg) proteins. Once an autophagosome is completed, the Atg proteins that were associated with the expanding phagophore are released in the cytoplasm and reused for the biogenesis of new vesicles. One molecular event required for autophagosome formation is the generation of phosphatidylinositol 3-phosphate (PtdIns3P) at the PAS. Our data indicate that in addition to the synthesis of this lipid, the dephosphorylation of PtdIns3P is also crucial for autophagy progression. In the absence of Ymr1, a specific PtdIns3P phosphatase and the only yeast member of the myotubularin protein family, Atg proteins remain associated with complete autophagosomes, which are thus unable to fuse with the vacuole.
机译:自噬的标志是自噬体,是隔离细胞质成分的双膜囊泡。它们在荧光团组装位点(PAS)产生,荧光团是这些载体的前体结构。根据当前模型,自噬体是由自噬相关(Atg)蛋白的协同作用驱动的PAS /噬菌体膜的伸长和重组产生的。一旦自噬体完成,与扩大的噬菌体相关的Atg蛋白就会在细胞质中释放出来,并重新用于新囊泡的生物发生。自噬体形成所需的一种分子事件是在PAS生成磷脂酰肌醇3-磷酸(PtdIns3P)。我们的数据表明,除了合成这种脂质外,PtdIns3P的去磷酸化对于自噬进程也至关重要。在没有Ymr1,一种特定的PtdIns3P磷酸酶和肌管蛋白家族的唯一酵母成员的情况下,Atg蛋白仍然与完整的自噬体相关,因此无法与液泡融合。

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