Authors
Huong Huynh, Nunzio Bottini, Scott Williams, Vera Cherepanov, Lucia Musumeci, Kan Saito, Shane Bruckner, Eric Vachon, Xiaodong Wang, Joshua Kruger, Chung-Wai Chow, Maurizio Pellecchia, Edvard Monosov, Peter A Greer, William Trimble, Gregory P Downey, Tomas Mustelin
Publication date
2004/9/1
Journal
Nature cell biology
Volume
6
Issue
9
Pages
831-839
Publisher
Nature Publishing Group UK
Description
The tyrosine phosphatase PTP-MEG2 is targeted by its amino-terminal Sec14p homology domain to the membrane of secretory vesicles. There it regulates vesicle size by promoting homotypic vesicle fusion by a mechanism that requires its catalytic activity. Here, we identify N-ethylmaleimide-sensitive factor (NSF), a key regulator of vesicle fusion, as a substrate for PTP-MEG2. PTP-MEG2 reduced the phosphotyrosine content of NSF and co-localized with NSF and syntaxin 6 in intact cells. Furthermore, endogenous PTP-MEG2 co-immunoprecipitated with endogenous NSF. Phosphorylation of NSF at Tyr 83, as well as an acidic substitution at the same site, increased its ATPase activity and prevented αSNAP binding. Conversely, expression of a Y83F mutant of NSF caused spontaneous fusion events. Our results suggest that the molecular mechanism by which PTP-MEG2 promotes secretory vesicle fusion involves …
Total citations
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Scholar articles
H Huynh, N Bottini, S Williams, V Cherepanov… - Nature cell biology, 2004