4.6 Review

Membrane Curvature: The Inseparable Companion of Autophagy

期刊

CELLS
卷 12, 期 8, 页码 -

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MDPI
DOI: 10.3390/cells12081132

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autophagy; membrane curvature; Atg proteins; ER-phagy; nucleophagy; xenophagy

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Autophagy is a recycling process of eukaryotic cells that degrades protein aggregates or damaged organelles with the help of autophagy-related proteins. Membrane bending is a crucial step in autophagosome formation, and various autophagy-related proteins are involved in changing the membrane curvature. Different mechanisms, such as protein tethering and lipid transport, contribute to the alteration of membrane curvature.
Autophagy is a highly conserved recycling process of eukaryotic cells that degrades protein aggregates or damaged organelles with the participation of autophagy-related proteins. Membrane bending is a key step in autophagosome membrane formation and nucleation. A variety of autophagy-related proteins (ATGs) are needed to sense and generate membrane curvature, which then complete the membrane remodeling process. The Atg1 complex, Atg2-Atg18 complex, Vps34 complex, Atg12-Atg5 conjugation system, Atg8-phosphatidylethanolamine conjugation system, and transmembrane protein Atg9 promote the production of autophagosomal membranes directly or indirectly through their specific structures to alter membrane curvature. There are three common mechanisms to explain the change in membrane curvature. For example, the BAR domain of Bif-1 senses and tethers Atg9 vesicles to change the membrane curvature of the isolation membrane (IM), and the Atg9 vesicles are reported as a source of the IM in the autophagy process. The amphiphilic helix of Bif-1 inserts directly into the phospholipid bilayer, causing membrane asymmetry, and thus changing the membrane curvature of the IM. Atg2 forms a pathway for lipid transport from the endoplasmic reticulum to the IM, and this pathway also contributes to the formation of the IM. In this review, we introduce the phenomena and causes of membrane curvature changes in the process of macroautophagy, and the mechanisms of ATGs in membrane curvature and autophagosome membrane formation.

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