RRC ID 89814
Author Wang R, Fortier TM, Sun X, Chai F, Velentzas PD, Baehrecke EH.
Title Cholesterol transfer proteins promote Atg-independent ER clearance by lysosomes.
Journal Cell Rep
Abstract Selective removal of endoplasmic reticulum (ER) is important for cell health. Macroautophagy is the primary mechanism for the removal of the ER, but the ER can be cleared in a macroautophagy-independent manner. However, the physiological relevance and mechanisms underlying macroautophagy-independent ER clearance remain largely unknown. Here we show that ER is cleared by lysosomes in a macroautophagy Atg gene-independent manner during development. This developmentally programmed Atg-independent ER clearance by lysosomes requires the ER protein Vap33 that promotes ER and lysosome contact. Oxysterol-binding protein (Osbp) is known to associate with Vap33, and Osbp lysosomal localization is required for ER clearance in cells lacking macroautophagy. Significantly, the cholesterol transport-associated protein Start1 regulates ER and lysosome contact, macroautophagy-independent ER clearance, and cholesterol transport from ER to the lysosome. These studies reveal that Vap33, Osbp, and Start1 promote ER clearance by lysosomes that is associated with cholesterol trafficking.
Volume 45(6)
Pages 117537
Published 2026-6-23
DOI 10.1016/j.celrep.2026.117537
PII S2211-1247(26)00615-7
PMID 42258351
PMC PMC13358760
MeSH Animals Carrier Proteins* / metabolism Cholesterol* / metabolism Drosophila Proteins* / metabolism Drosophila melanogaster / metabolism Endoplasmic Reticulum* / metabolism Humans Lysosomes* / metabolism Macroautophagy Oxysterol Binding Proteins Receptors, Steroid / metabolism Vesicular Transport Proteins / metabolism
Resource
Drosophila 5722R-2 5722R-3