Cargo crowding contributes to sorting stringency in COPII vesicles
Author(s) -
Natalia GómezNavarro,
Alejandro Melero,
Xiaohan Li,
Jérôme Boulanger,
Wanda Kukulski,
Elizabeth A. Miller
Publication year - 2020
Publication title -
the journal of cell biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.414
H-Index - 380
eISSN - 1540-8140
pISSN - 0021-9525
DOI - 10.1083/jcb.201806038
Subject(s) - copii , vesicle , endoplasmic reticulum , microbiology and biotechnology , organelle , er retention , biogenesis , secretory protein , secretory pathway , biophysics , biology , vesicular transport proteins , secretion , chemistry , membrane , biochemistry , golgi apparatus , gene , cytoplasm , vacuole , vacuolar protein sorting , mutant
Accurate maintenance of organelle identity in the secretory pathway relies on retention and retrieval of resident proteins. In the endoplasmic reticulum (ER), secretory proteins are packaged into COPII vesicles that largely exclude ER residents and misfolded proteins by mechanisms that remain unresolved. Here we combined biochemistry and genetics with correlative light and electron microscopy (CLEM) to explore how selectivity is achieved. Our data suggest that vesicle occupancy contributes to ER retention: in the absence of abundant cargo, nonspecific bulk flow increases. We demonstrate that ER leakage is influenced by vesicle size and cargo occupancy: overexpressing an inert cargo protein or reducing vesicle size restores sorting stringency. We propose that cargo recruitment into vesicles creates a crowded lumen that drives selectivity. Retention of ER residents thus derives in part from the biophysical process of cargo enrichment into a constrained spherical membrane-bound carrier.
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