TFG clusters COPII-coated transport carriers and promotes early secretory pathway organization.
نویسندگان
چکیده
In mammalian cells, cargo-laden secretory vesicles leave the endoplasmic reticulum (ER) en route to ER-Golgi intermediate compartments (ERGIC) in a manner dependent on the COPII coat complex. We report here that COPII-coated transport carriers traverse a submicron, TFG (Trk-fused gene)-enriched zone at the ER/ERGIC interface. The architecture of TFG complexes as determined by three-dimensional electron microscopy reveals the formation of flexible, octameric cup-like structures, which are able to self-associate to generate larger polymers in vitro. In cells, loss of TFG function dramatically slows protein export from the ER and results in the accumulation of COPII-coated carriers throughout the cytoplasm. Additionally, the tight association between ER and ERGIC membranes is lost in the absence of TFG. We propose that TFG functions at the ER/ERGIC interface to locally concentrate COPII-coated transport carriers and link exit sites on the ER to ERGIC membranes. Our findings provide a new mechanism by which COPII-coated carriers are retained near their site of formation to facilitate rapid fusion with neighboring ERGIC membranes upon uncoating, thereby promoting interorganellar cargo transport.
منابع مشابه
TGF clusters COPII-coated transport carriers and promotes early secretory pathway organization
As you will see, the referees find your study interesting. However, they think that the current dataset does not sufficiently support your claims. They point out that additional data and information are needed and that alternative models on TFG functioning should be considered. Furthermore, technical concerns need to be addressed. Given the very constructive comments provided, I would like to i...
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ورودعنوان ژورنال:
- The EMBO journal
دوره 34 6 شماره
صفحات -
تاریخ انتشار 2015