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TRAPPC6A | trafficking protein particle complex 6A; May play a role in vesicular transport during the biogenesis of melanosomes (By similarity) (173 aa) | |||
RAB3D | RAB3D, member RAS oncogene family; Protein transport. Probably involved in regulated exocytosis (By similarity) (219 aa) | |||
RAB3A | RAB3A, member RAS oncogene family; Involved in exocytosis by regulating a late step in synaptic vesicle fusion. Could play a role in neurotransmitter release by regulating membrane flow in the nerve terminal (220 aa) | |||
EXOC2 | exocyst complex component 2; Component of the exocyst complex involved in the docking of exocytic vesicles with fusion sites on the plasma membrane (924 aa) | |||
EXOC4 | exocyst complex component 4; Component of the exocyst complex involved in the docking of exocytic vesicles with fusion sites on the plasma membrane (By similarity) (974 aa) | |||
ELP3 | elongator acetyltransferase complex subunit 3; Catalytic histone acetyltransferase subunit of the RNA polymerase II elongator complex, which is a component of the RNA polymerase II (Pol II) holoenzyme and is involved in transcriptional elongation. Elongator may play a role in chromatin remodeling and is involved in acetylation of histones H3 and probably H4. May also have a methyltransferase activity. Involved in cell migration (547 aa) | |||
EXOC6 | exocyst complex component 6; Component of the exocyst complex involved in the docking of exocytic vesicles with fusion sites on the plasma membrane. Together with RAB11A, RAB3IP, RAB8A, PARD3, PRKCI, ANXA2, CDC42 and DNMBP promotes transcytosis of PODXL to the apical membrane initiation sites (AMIS), apical surface formation and lumenogenesis (By similarity) (804 aa) | |||
RAB11A | RAB11A, member RAS oncogene family; The small GTPases Rab are key regulators of intracellular membrane trafficking, from the formation of transport vesicles to their fusion with membranes. Rabs cycle between an inactive GDP-bound form and an active GTP-bound form that is able to recruit to membranes different set of downstream effectors directly responsible for vesicle formation, movement, tethering and fusion. That Rab regulates endocytic recycling. Acts as a major regulator of membrane delivery during cytokinesis. Together with MYO5B and RAB8A participates in epithelial cell polariza [...] (216 aa) | |||
RAB36 | RAB36, member RAS oncogene family; Protein transport. Probably involved in vesicular traffic (By similarity) (333 aa) | |||
REM2 | RAS (RAD and GEM)-like GTP binding 2; Binds GTP saturably and exhibits a low intrinsic rate of GTP hydrolysis (By similarity) (340 aa) | |||
PI4KB | phosphatidylinositol 4-kinase, catalytic, beta; Phosphorylates phosphatidylinositol (PI) in the first committed step in the production of the second messenger inositol- 1,4,5,-trisphosphate (PIP). May regulate Golgi disintegration/reorganization during mitosis, possibly via its phosphorylation. Involved in Golgi-to-plasma membrane trafficking (By similarity) (828 aa) | |||
EXOC6B | exocyst complex component 6B; Component of the exocyst complex involved in the docking of exocytic vesicles with fusion sites on the plasma membrane (811 aa) | |||
RAB8A | RAB8A, member RAS oncogene family; May be involved in vesicular trafficking and neurotransmitter release. Together with RAB11A, RAB3IP, the exocyst complex, PARD3, PRKCI, ANXA2, CDC42 and DNMBP promotes transcytosis of PODXL to the apical membrane initiation sites (AMIS), apical surface formation and lumenogenesis. Together with MYO5B and RAB11A participates in epithelial cell polarization (207 aa) | |||
KCTD5 | potassium channel tetramerisation domain containing 5; Its interaction with CUL3 suggests that it may act as a substrate adapter in some E3 ligase complex. Does not affect the function of Kv channel Kv2.1/KCNB1, Kv1.2/KCNA2, Kv4.2/KCND2 and Kv3.4/KCNC4 (234 aa) | |||
RAB8B | RAB8B, member RAS oncogene family; May be involved in vesicular trafficking and neurotransmitter release (By similarity). May participate in cell junction dynamics in Sertoli cells (By similarity) (207 aa) | |||
KCTD2 | potassium channel tetramerisation domain containing 2 (263 aa) | |||
BBS1 | Bardet-Biedl syndrome 1; The BBSome complex is required for ciliogenesis but is dispensable for centriolar satellite function. This ciliogenic function is mediated in part by the Rab8 GDP/GTP exchange factor, which localizes to the basal body and contacts the BBSome. Rab8(GTP) enters the primary cilium and promotes extension of the ciliary membrane. Firstly the BBSome associates with the ciliary membrane and binds to RAB3IP/Rabin8, the guanosyl exchange factor (GEF) for Rab8 and then the Rab8-GTP localizes to the cilium and promotes docking and fusion of carrier vesicles to the base of [...] (593 aa) | |||
TRAPPC6B | trafficking protein particle complex 6B; May play a role in vesicular transport from endoplasmic reticulum to Golgi (By similarity) (158 aa) | |||
RAB11B | RAB11B, member RAS oncogene family; GTPase that modulates endosomal trafficking. Acts as a major regulator of membrane delivery during cytokinesis (By similarity) (218 aa) | |||
TRAPPC3 | trafficking protein particle complex 3; May play a role in vesicular transport from endoplasmic reticulum to Golgi (180 aa) | |||
IKBKAP | inhibitor of kappa light polypeptide gene enhancer in B-cells, kinase complex-associated protein; May act as a scaffold protein that may assemble active IKK-MAP3K14 complexes (IKKA, IKKB and MAP3K14/NIK) (1332 aa) | |||
SSX2B | synovial sarcoma, X breakpoint 2B; Could act as a modulator of transcription (188 aa) | |||
RAB3IL1 | RAB3A interacting protein (rabin3)-like 1; Guanine nucleotide exchange factor (GEF) which may activate RAB3A, a GTPase that regulates synaptic vesicle exocytosis. Promotes the exchange of GDP to GTP, converting inactive GDP-bound Rab proteins into their active GTP-bound form. May also activate RAB8A and RAB8B (382 aa) | |||
KCTD17 | potassium channel tetramerisation domain containing 17 (297 aa) | |||
ELP2 | elongator acetyltransferase complex subunit 2 (891 aa) | |||
RAB3IP | RAB3A interacting protein (rabin3) (476 aa) |