首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Membrane Recruitment of Aut7p in the Autophagy and Cytoplasm to Vacuole Targeting Pathways Requires Aut1p Aut2p and the Autophagy Conjugation Complex
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Membrane Recruitment of Aut7p in the Autophagy and Cytoplasm to Vacuole Targeting Pathways Requires Aut1p Aut2p and the Autophagy Conjugation Complex

机译:自噬和细胞质中Aut7p的膜招募以液泡靶向途径需要Aut1pAut2p和自噬缀合物。

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摘要

Autophagy is a degradative pathway by which cells sequester nonessential, bulk cytosol into double-membrane vesicles (autophagosomes) and deliver them to the vacuole for recycling. Using this strategy, eukaryotic cells survive periods of nutritional starvation. Under nutrient-rich conditions, autophagy machinery is required for the delivery of a resident vacuolar hydrolase, aminopeptidase I, by the cytoplasm to vacuole targeting (Cvt) pathway. In both pathways, the vesicle formation process requires the function of the starvation-induced Aut7 protein, which is recruited from the cytosol to the forming Cvt vesicles and autophagosomes. The membrane binding of Aut7p represents an early step in vesicle formation. In this study, we identify several requirements for Aut7p membrane association. After synthesis in the cytosol, Aut7p is proteolytically cleaved in an Aut2p-dependent manner. While this novel processing event is essential for Aut7p membrane binding, Aut7p must undergo additional physical interactions with Aut1p and the autophagy (Apg) conjugation complex before recruitment to the membrane. Lack of these interactions results in a cytosolic distribution of Aut7p rather than localization to forming Cvt vesicles and autophagosomes. This study assigns a functional role for the Apg conjugation system as a mediator of Aut7p membrane recruitment. Further, we demonstrate that Aut1p, which physically interacts with components of the Apg conjugation complex and Aut7p, constitutes an additional factor required for Aut7p membrane recruitment. These findings define a series of steps that results in the modification of Aut7p and its subsequent binding to the sequestering transport vesicles of the autophagy and cytoplasm to vacuole targeting pathways.
机译:自噬是一种降解途径,细胞通过该途径将非必需的大量胞质隔离到双膜囊泡(自噬体)中,并将其运送到液泡中进行回收。使用这种策略,真核细胞可以在营养不足的情况下生存。在营养丰富的条件下,通过细胞质到液泡靶向(Cvt)途径递送常驻液泡水解酶,氨基肽酶I,需要自噬机制。在这两种途径中,囊泡形成过程都需要饥饿诱导的Aut7蛋白的功能,该蛋白从细胞质中募集到形成的Cvt囊泡和自噬体中。 Aut7p的膜结合代表了囊泡形成的早期步骤。在这项研究中,我们确定了Aut7p膜结合的几个要求。在细胞质中合成后,Aut7p以Aut2p依赖性方式被蛋白水解切割。虽然此新颖的加工过程对于Aut7p膜结合至关重要,但在募集到膜之前,Aut7p必须与Aut1p和自噬(Apg)偶联复合物进行其他物理相互作用。缺乏这些相互作用会导致Aut7p呈胞质分布,而不是形成Cvt囊泡和自噬小体。这项研究赋予Apg偶联系统作为Aut7p膜募集介质的功能性作用。此外,我们证明与Apg共轭复合物和Aut7p的成分发生物理相互作用的Aut1p构成了Aut7p膜募集所需的其他因素。这些发现定义了一系列步骤,这些步骤导致Aut7p的修饰及其随后与自噬和细胞质的隔离运输小泡结合的空泡靶向途径。

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