[No authors listed]
It has recently been proposed that the TBC (Tre2/Bub2/Cdc16) domain functions as a GAP (GTPase-activating protein) domain for small GTPase Rab. Because of the large number of Rab proteins in mammals, however, most TBC domains have never been investigated for Rab-GAP activity. In this study we established panels of the GTP-fixed form of 60 different Rabs constructed in pGAD-C1, a yeast two-hybrid bait vector. We also constructed a yeast two-hybrid prey vector (pGBDU-C1) that harbors the cDNA of 40 distinct TBC proteins. Systematic investigation of 2400 combinations of 60 GTP-fixed Rabs and 40 TBC proteins by yeast two-hybrid screening revealed that seven TBC proteins specifically and differentially interact with specific Rabs (e.g. OATL1 interacts with Rab2A; FLJ12085 with Rab5A/B/C; and Evi5-like with Rab10). Measurement of in vitro Rab-GAP activity revealed that OATL1 and Evi5-like actually possess significant Rab2A- and Rab10-GAP activity, respectively, but that FLJ12085 do not display Rab5A-GAP activity at all. These results indicate that specific interaction between TBC protein and Rab would be a useful indicator for screening for the target Rabs of some TBC/Rab-GAP domains, but that there is little correlation between the Rab-binding activity and Rab-GAP activity of other TBC proteins.
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Rab28, Rab15, Sgsm3, Rab31, Rab27a, Rab8a, Rab1a, Rab10, Rab11b, Rab12, Rab17, Rab18, Rab19, Rab20, Rab22a, Rab23, Rab24, Rab33a, Rab33b, Rab3a, Rab3d, Rab4a, Rab4b, Rab5b, Rab5c, Rab6a, Rab7, Rab34, Tbc1d25, Evi5l, Eea1, Rab21, Rab40b, Rab40c, Rab3gap1, Rab7b, Rab29, Rab8b, Rab42, Rab39, Rab6b, Rab5a, Rabgap1l, Rab9b, Rab26, Rab25, Rab11a, Rab9, Rab37, Rab2a, Rab3c, Rab39b, Rab32, Rab13, Rab14, Rab43, Rab3b, Rab38, Rab30, Rab1b, Rab2b, Rab36, Rab35, Rab27b, RAB10, EVI5L, RAB39B, RAB40A, WTH3DI, TBC1D21, RAB3GAP1, SGSM3, TBC1D25, RAB39A, RAB22A, RAB2A, RAB5A, RAB5B, RAB13, RAB5C, TBC1D15, TBC1D17, RAB33B, RAB34, USP6, RAB36, RABGAP1L
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