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Higher‐order assemblies of oligomeric cargo receptor complexes form the membrane scaffold of the Cvt vesicle

机译:低聚货物受体复合物的高阶组装形成Cvt囊泡的膜支架

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摘要

Selective autophagy is the mechanism by which large cargos are specifically sequestered for degradation. The structural details of cargo and receptor assembly giving rise to autophagic vesicles remain to be elucidated. We utilize the yeast cytoplasm‐to‐vacuole targeting (Cvt) pathway, a prototype of selective autophagy, together with a multi‐scale analysis approach to study the molecular structure of Cvt vesicles. We report the oligomeric nature of the major Cvt cargo Ape1 with a combined 2.8 Å X‐ray and negative stain EM structure, as well as the secondary cargo Ams1 with a 6.3 Å cryo‐EM structure. We show that the major dodecameric cargo prApe1 exhibits a tendency to form higher‐order chain structures that are broken upon interaction with the receptor Atg19 in vitro. The stoichiometry of these cargo–receptor complexes is key to maintaining the size of the Cvt aggregate in vivo. Using correlative light and electron microscopy, we further visualize key stages of Cvt vesicle biogenesis. Our findings suggest that Atg19 interaction limits Ape1 aggregate size while serving as a vehicle for vacuolar delivery of tetrameric Ams1.
机译:选择性自噬是专门隔离大量货物以进行降解的机制。货物和受体组装产生自噬囊泡的结构细节仍有待阐明。我们利用选择性自噬的原型酵母细胞质-真空定向(Cvt)途径,以及多尺度分析方法来研究Cvt囊泡的分子结构。我们报告了具有2.8ÅX射线和负污染EM结构的主要Cvt货物Ape1的低聚性质,以及具有6.3Åcryo-EM结构的次要货物Ams1。我们表明,主要的十二聚体货物prApe1表现出形成与受体Atg19体外相互作用时断裂的高阶链结构的趋势。这些货物-受体复合物的化学计量是维持体内Cvt聚集体大小的关键。使用相关的光和电子显微镜,我们进一步可视化Cvt囊泡生物发生的关键阶段。我们的发现表明,Atg19相互作用限制了Ape1聚集体的大小,同时又作为空泡递送四聚体Ams1的媒介。

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