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Yip CK, et al.  (2010) Molecular architecture of the TRAPPII complex and implications for vesicle tethering. Nat Struct Mol Biol 17(11):1298-1304

Abstract: Multisubunit tethering complexes participate in the process of vesicle tethering-the initial interaction between transport vesicles and their acceptor compartments. TRAPPII (named for transport protein particle II) is a highly conserved tethering complex that functions in the late Golgi apparatus and consists of all of the subunits of TRAPPI and three additional, specific subunits. We have purified native yeast TRAPPII and characterized its structure and subunit organization by single-particle EM. Our data show that the nine TRAPPII components form a core complex that dimerizes into a three-layered, diamond-shaped structure. The TRAPPI subunits assemble into TRAPPI complexes that form the outer layers. The three TRAPPII-specific subunits cap the ends of TRAPPI and form the middle layer, which is responsible for dimerization. TRAPPII binds the Ypt1 GTPase and probably uses the TRAPPI catalytic core to promote guanine nucleotide exchange. We discuss the implications of the structure of TRAPPII for coat interaction and TRAPPII-associated human pathologies.

Status: Published Type: Journal Article PubMed ID: 20972447

Topics addressed in this paper

Number of different genes curated to this paper: 13

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Topics Genes linked to topics (#1 - 10 )
BET3 BET5 SEC4 TRS120 TRS130 TRS20 TRS23 TRS31 TRS33 TRS65
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Topics Genes linked to topics (#11 - 13 )
YPT1 YPT31 YPT32
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