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Publication : EARP is a multisubunit tethering complex involved in endocytic recycling.

First Author  Schindler C Year  2015
Journal  Nat Cell Biol Volume  17
Issue  5 Pages  639-50
PubMed ID  25799061 Mgi Jnum  J:225569
Mgi Id  MGI:5693572 Doi  10.1038/ncb3129
Citation  Schindler C, et al. (2015) EARP is a multisubunit tethering complex involved in endocytic recycling. Nat Cell Biol 17(5):639-50
abstractText  Recycling of endocytic receptors to the cell surface involves passage through a series of membrane-bound compartments by mechanisms that are poorly understood. In particular, it is unknown if endocytic recycling requires the function of multisubunit tethering complexes, as is the case for other intracellular trafficking pathways. Herein we describe a tethering complex named endosome-associated recycling protein (EARP) that is structurally related to the previously described Golgi-associated retrograde protein (GARP) complex. The two complexes share the Ang2, Vps52 and Vps53 subunits, but EARP contains an uncharacterized protein, syndetin, in place of the Vps54 subunit of GARP. This change determines differential localization of EARP to recycling endosomes and GARP to the Golgi complex. EARP interacts with the target SNARE syntaxin 6 and various cognate SNAREs. Depletion of syndetin or syntaxin 6 delays recycling of internalized transferrin to the cell surface. These findings implicate EARP in canonical membrane-fusion events in the process of endocytic recycling.
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