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Early Steps in Autophagy Depend on Direct Phosphorylation of Atg9 by the Atg1 Kinase

机译:自噬的早期步骤取决于Atg1激酶直接将Atg9磷酸化。

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摘要

Bulk degradation of cytoplasmic material is mediated by a highly conserved intracellular trafficking pathway termed autophagy. This pathway is characterized by the formation of double-membrane vesicles termed autophagosomes engulfing the substrate and transporting it to the vacuole/lysosome for breakdown and recycling. The Atg1/ULK1 kinase is essential for this process; however, little is known about its targets and the means by which it controls autophagy. Here we have screened for Atg1 kinase substrates using consensus peptide arrays and identified three components of the autophagy machinery. The multimembrane-spanning protein Atg9 is a direct target of this kinase essential for autophagy. Phosphorylated Atg9 is then required for the efficient recruitment of Atg8 and Atg18 to the site of autophagosome formation and subsequent expansion of the isolation membrane, a prerequisite for a functioning autophagy pathway. These findings show that the Atg1 kinase acts early in autophagy by regulating the outgrowth of autophagosomal membranes.
机译:细胞质物质的大量降解是由高度保守的称为自噬的细胞内运输途径介导的。该途径的特征是形成了称为自噬体的双膜囊泡,吞噬了基质并将其运输至液泡/溶酶体进行分解和回收。 Atg1 / ULK1激酶对该过程至关重要。但是,对其靶标和控制自噬的方法知之甚少。在这里,我们已经使用共有肽阵列筛选了Atg1激酶底物,并确定了自噬机制的三个组成部分。跨膜蛋白Atg9是自噬必不可少的该激酶的直接靶标。然后需要磷酸化的Atg9,才能将Atg8和Atg18有效地募集到自噬小体形成的位点,并随后扩展分离膜,这是功能自噬途径的前提。这些发现表明,Atg1激酶通过调节自噬体膜的生长而在自噬早期起作用。

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