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选择性自噬所需的一种循环蛋白复合物。

A cycling protein complex required for selective autophagy.

作者信息

Legakis Julie E, Yen Wei-Lien, Klionsky Daniel J

机构信息

University of Michigan, Life Sciences Institute, Department of Molecular, Cellular and Developmental Biology, Ann Arbor, Michigan 48109-2216, USA.

出版信息

Autophagy. 2007 Sep-Oct;3(5):422-32. doi: 10.4161/auto.4129. Epub 2007 Mar 9.

Abstract

Survival of environmental stress conditions requires the maintenance of cellular homeostasis. To preserve this balance, cells utilize a degradative mechanism known as autophagy. During this process, in response to starvation or other stresses, bulk cytoplasm is non-specifically sequestered within double-membrane vesicles and delivered to the lysosome/vacuole for subsequent degradation and recycling. The cytoplasm to vacuole targeting (Cvt) pathway is a type of specific autophagy, which occurs constitutively during growing conditions. Here, we examine three autophagy-related (Atg) proteins, Atg9, Atg23 and Atg27, which exhibit a unique localization pattern, residing both at the pre-autophagosomal structure (PAS) and other peripheral sites. These proteins colocalize, interact with one another in vivo, and form a functional complex. Furthermore, all three proteins cycle between the PAS and the other sites, and depend upon one another for this movement. Our data suggest that Atg9, Atg23 and Atg27 play a role in Atg protein retrieval from the PAS. In addition, Atg9 and Atg27 are the only known integral membrane Atg proteins involved in vesicle formation; a better understanding of their function may offer insight into the mechanism of membrane delivery to the PAS, the site of double-membrane vesicle assembly.

摘要

在环境应激条件下存活需要维持细胞内稳态。为了保持这种平衡,细胞利用一种称为自噬的降解机制。在此过程中,响应饥饿或其他应激,大量细胞质被非特异性地隔离在双膜囊泡中,并被运送到溶酶体/液泡进行后续降解和再循环。细胞质到液泡靶向(Cvt)途径是一种特异性自噬,在生长条件下持续发生。在这里,我们研究了三种自噬相关(Atg)蛋白,Atg9、Atg23和Atg27,它们表现出独特的定位模式,存在于自噬前体结构(PAS)和其他周边位点。这些蛋白共定位,在体内相互作用,并形成一个功能复合物。此外,这三种蛋白都在PAS和其他位点之间循环,并且这种移动相互依赖。我们的数据表明,Atg9、Atg23和Atg27在从PAS回收Atg蛋白中发挥作用。此外,Atg9和Atg27是已知的仅有的参与囊泡形成的整合膜Atg蛋白;对它们功能的更好理解可能有助于深入了解向PAS(双膜囊泡组装位点)输送膜的机制。

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