ARFGAP1 promotes the formation of COPI vesicles, suggesting function as a component of the coat
نویسندگان
چکیده
The role of GTPase-activating protein (GAP) that deactivates ADP-ribosylation factor 1 (ARF1) during the formation of coat protein I (COPI) vesicles has been unclear. GAP is originally thought to antagonize vesicle formation by triggering uncoating, but later studies suggest that GAP promotes cargo sorting, a process that occurs during vesicle formation. Recent models have attempted to reconcile these seemingly contradictory roles by suggesting that cargo proteins suppress GAP activity during vesicle formation, but whether GAP truly antagonizes coat recruitment in this process has not been assessed directly. We have reconstituted the formation of COPI vesicles by incubating Golgi membrane with purified soluble components, and find that ARFGAP1 in the presence of GTP promotes vesicle formation and cargo sorting. Moreover, the presence of GTPgammaS not only blocks vesicle uncoating but also vesicle formation by preventing the proper recruitment of GAP to nascent vesicles. Elucidating how GAP functions in vesicle formation, we find that the level of GAP on the reconstituted vesicles is at least as abundant as COPI and that GAP binds directly to the dilysine motif of cargo proteins. Collectively, these findings suggest that ARFGAP1 promotes vesicle formation by functioning as a component of the COPI coat.
منابع مشابه
A GAP in COPI vesicle formation is filled
A GAP in COPI vesicle formation is filled he effect of ARF1 GTPase-activating protein (ARFGAP1) on vesicle formation is making a turnaround. Contrary T Without ARFGAP1 or GTP, vesicles cannot load their cargo. to previous theories, GAP does not antagonize COPI coat recruitment. As shown by Yang et al. on page 69, its newly discovered function reveals conservation among GAPs in anterograde and r...
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Assembly of the coat protein I (COPI) vesicle coat is controlled by the small GTPase ADP ribosylation factor 1 (ARF1) and its GTPase-activating protein, ARFGAP1. Here, we investigate the diffusional behaviours of coatomer, the main component of the coat, and also those of ARF1 and ARFGAP1. Using fluorescence-correlation spectroscopy, we found that most ARF1 and ARFGAP1 molecules are highly mobi...
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A GAP in COPI vesicle formation is filled he effect of ARF1 GTPase-activating protein (ARFGAP1) on vesicle formation is making a turnaround. Contrary T Without ARFGAP1 or GTP, vesicles cannot load their cargo. to previous theories, GAP does not antagonize COPI coat recruitment. As shown by Yang et al. on page 69, its newly discovered function reveals conservation among GAPs in anterograde and r...
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A GAP in COPI vesicle formation is filled he effect of ARF1 GTPase-activating protein (ARFGAP1) on vesicle formation is making a turnaround. Contrary T Without ARFGAP1 or GTP, vesicles cannot load their cargo. to previous theories, GAP does not antagonize COPI coat recruitment. As shown by Yang et al. on page 69, its newly discovered function reveals conservation among GAPs in anterograde and r...
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The formation of coat protein complex I (COPI)-coated vesicles is regulated by the small guanosine triphosphatase (GTPase) adenosine diphosphate ribosylation factor 1 (Arf1), which in its GTP-bound form recruits coatomer to the Golgi membrane. Arf GTPase-activating protein (GAP) catalyzed GTP hydrolysis in Arf1 triggers uncoating and is required for uptake of cargo molecules into vesicles. Thre...
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ورودعنوان ژورنال:
- The Journal of Cell Biology
دوره 159 شماره
صفحات -
تاریخ انتشار 2002