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Recent Advances in Single-Particle Electron Microscopic Analysis of Autophagy Degradation Machinery

机译:自噬降解机械单粒子电子显微镜分析的最新进展

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摘要

Macroautophagy (also known as autophagy) is a major pathway for selective degradation of misfolded/aggregated proteins and damaged organelles and non-selective degradation of cytoplasmic constituents for the generation of power during nutrient deprivation. The multi-step degradation process, from sequestering cytoplasmic cargo into the double-membrane vesicle termed autophagosome to the delivery of the autophagosome to the lysosome or lytic vacuole for breakdown, is mediated by the core autophagy machinery composed of multiple Atg proteins, as well as the divergent sequence family of selective autophagy receptors. Single-particle electron microscopy (EM) is a molecular imaging approach that has become an increasingly important tool in the structural characterization of proteins and macromolecular complexes. This article summarizes the contributions single-particle EM have made in advancing our understanding of the core autophagy machinery and selective autophagy receptors. We also discuss current technical challenges and roadblocks, as well as look into the future of single-particle EM in autophagy research.
机译:显微育药(也称为自噬)是用于选择性地降解错误折叠/聚集的蛋白质和受损的细胞器和营养剥夺期间产生功率的细胞质成分的非选择性降解的主要途径。从血管组合到溶酶体或裂解液体的双膜囊泡中的复合细胞质货物转移到双膜囊泡中的多步劣化过程将自噬体或裂解液体递送到裂片中,由多个ATG蛋白组成的核心自噬机械介导,以及不同的序列系列选择性自噬受体。单粒子电子显微镜(EM)是一种分子成像方法,其已成为蛋白质和大分子复合物的结构表征的越来越重要的工具。本文总结了单粒子EM在推进我们对核心自噬机械和选择性自噬受体的理解方面进行的贡献。我们还讨论了当前的技术挑战和障碍,以及在自噬研究中调查单粒粒子的未来。

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