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Atg1 EAT 结构域的动态无 Atg13 构象对于吞噬泡扩展是必需的。

The dynamic Atg13-free conformation of the Atg1 EAT domain is required for phagophore expansion.

机构信息

Department of Molecular and Cell Biology and California Institute for Quantitative Biosciences, University of California, Berkeley, Berkeley, CA 94720.

Molecular Biophysics and Integrated Bioimaging Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720.

出版信息

Mol Biol Cell. 2018 May 15;29(10):1228-1237. doi: 10.1091/mbc.E17-04-0258. Epub 2018 Mar 22.

Abstract

Yeast macroautophagy begins with the de novo formation of a double-membrane phagophore at the preautophagosomal structure/phagophore assembly site (PAS), followed by its expansion into the autophagosome responsible for cargo engulfment. The kinase Atg1 is recruited to the PAS by Atg13 through interactions between the EAT domain of the former and the tMIM motif of the latter. Mass-spectrometry data have shown that, in the absence of Atg13, the EAT domain structure is strikingly dynamic, but the function of this Atg13-free dynamic state has been unclear. We used structure-based mutational analysis and quantitative and superresolution microscopy to show that Atg1 is present on autophagic puncta at, on average, twice the stoichiometry of Atg13. Moreover, Atg1 colocalizes with the expanding autophagosome in a manner dependent on Atg8 but not Atg13. We used isothermal titration calorimetry and crystal structure information to design an EAT domain mutant allele ATG1 that selectively perturbs the function of the Atg13-free state. Atg1 shows reduced PAS formation and does not support phagophore expansion, showing that the EAT domain has an essential function that is separate from its Atg13-dependent role in autophagy initiation.

摘要

酵母巨自噬始于前自噬体结构/自噬体组装位点(PAS)处新形成的双层吞噬泡,随后其扩展为负责包裹货物的自噬体。激酶 Atg1 通过前者的 EAT 结构域和后者的 tMIM 基序之间的相互作用被募集到 PAS。质谱数据表明,在没有 Atg13 的情况下,EAT 结构域的结构具有惊人的动态性,但这种无 Atg13 的动态状态的功能尚不清楚。我们使用基于结构的突变分析和定量和超分辨率显微镜表明,Atg1 平均以 Atg13 的两倍化学计量存在于自噬小点上。此外,Atg1 与正在扩张的自噬体共定位,这种共定位方式依赖于 Atg8 但不依赖于 Atg13。我们使用等温热滴定法和晶体结构信息设计了 EAT 结构域突变等位基因 ATG1,该基因选择性地干扰无 Atg13 状态的功能。Atg1 显示 PAS 形成减少,并且不支持吞噬泡的扩展,表明 EAT 结构域具有与其在自噬起始中依赖 Atg13 的作用分离的基本功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd70/5935072/13d6cb77d295/mbc-29-1228-g001.jpg

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