4.5 Review

Microautophagy - distinct molecular mechanisms handle cargoes of many sizes

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Translocon component Sec62 acts in endoplasmic reticulum turnover during stress recovery

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ESCRTs Cooperate with a Selective Autophagy Receptor to Mediate Vacuolar Targeting of Soluble Cargos

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A sterol-enriched vacuolar microdomain mediates stationary phase lipophagy in budding yeast

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Phosphorylation of mitophagy and pexophagy receptors coordinates their interaction with Atg8 and Atg11

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Delivery of endosomes to lysosomes via microautophagy in the visceral endoderm of mouse embryos

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The Role of Atg Proteins in Autophagosome Formation

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Microautophagy of Cytosolic Proteins by Late Endosomes

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Membrane Fusion: Five Lipids, Four SNAREs, Three Chaperones, Two Nucleotides, and a Rab, All Dancing in a Ring on Yeast Vacuoles

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PpAtg30 tags peroxisomes for turnover by selective autophagy

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Atg8 controls phagophore expansion during autophagosome formation

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Piecemeal Microautophagy of the Nucleus Requires the Core Macroautophagy Genes

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The TOR and EGO protein complexes orchestrate microautophagy in yeast

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Determination of four sequential stages during microautophagy in vitro

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Microautophagy and macropexophagy may occur simultaneously in Hansenula polymorpha

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Piecemeal microautophagy of nucleus in Saccharomyces cerevisiae

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GSA11 encodes a unique 208-kDa protein required for pexophagy and autophagy in Pichia pastoris

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Fusion of docked membranes requires the armadillo repeat protein Vac8p

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