RRC ID 89862
Author Takahashi K, Tomishige N, Abe M, Šolinc G, Rae J, Yamaji T, Przybilla F, Richert L, Humbert N, Uemura T, Wollert T, Waguri S, Hanada K, Sako Y, Anderluh G, Parton RG, Mély Y, Tomasetto C, Alpy F, Kobayashi T.
Title Sorting of lysosomal enzyme and autophagy are regulated by the GGA1-induced TGN lipid scrambling.
Journal Sci Adv
Abstract The physiological role of lipid asymmetry in intracellular membranes remains poorly understood. Here, we show that sphingomyelin (SM), typically confined to the lumen of the trans-Golgi network (TGN), is exposed on its cytoplasmic surface by the action of the Golgi-associated protein, Golgi-associated gamma-adaptin ear-containing adenosine 5'-diphosphate-ribosylation factor-binding protein 1 (GGA1). This exposure is driven by the GGA1 GAT domain, which induces lipid scrambling in a manner dependent on membrane curvature and cholesterol. SM exposure coincides with the exit of mannose 6-phosphate receptors from the TGN, a process essential for lysosomal enzyme trafficking. Furthermore, SM is transferred to autophagic membranes, where it facilitates autophagosome-lysosome fusion. These findings reveal a previously unrecognized role for lipid remodeling in membrane trafficking and autophagy.
Volume 12(35)
Pages eaec4519
Published 2026-8-28
DOI 10.1126/sciadv.aec4519
PMID 42664358
PMC PMC13524056
MeSH Adaptor Proteins, Vesicular Transport* / chemistry Adaptor Proteins, Vesicular Transport* / genetics Adaptor Proteins, Vesicular Transport* / metabolism Animals Autophagosomes / metabolism Autophagy* Cholesterol / metabolism Humans Lysosomes* / enzymology Lysosomes* / metabolism Protein Transport Receptor, IGF Type 2 / metabolism Sphingomyelins / metabolism trans-Golgi Network* / metabolism
Resource
Human and Animal Cells HeLa GGA1 KO(RCB5659)