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ARHGAP33 | Rho GTPase activating protein 33; May be involved in several stages of intracellular trafficking. Could play an important role in the regulation of glucose transport by insulin. May act as a downstream effector of RHOQ/TC10 in the regulation of insulin-stimulated glucose transport (By similarity) (1126 aa) | |||
TRIP10 | thyroid hormone receptor interactor 10 (545 aa) | |||
RHOT2 | ras homolog family member T2; Mitochondrial GTPase involved in mitochondrial trafficking. Probably involved in control of anterograde transport of mitochondria and their subcellular distribution (By similarity) (618 aa) | |||
A2M | alpha-2-macroglobulin; Is able to inhibit all four classes of proteinases by a unique ’trapping’ mechanism. This protein has a peptide stretch, called the ’bait region’ which contains specific cleavage sites for different proteinases. When a proteinase cleaves the bait region, a conformational change is induced in the protein which traps the proteinase. The entrapped enzyme remains active against low molecular weight substrates (activity against high molecular weight substrates is greatly reduced). Following cleavage in the bait region a thioester bond is hydrolyzed and mediates the co [...] (1474 aa) | |||
ARHGAP10 | Rho GTPase activating protein 10; GTPase activator for the small GTPases RhoA and Cdc42 by converting them to an inactive GDP-bound state. Essential for PTKB2 regulation of cytoskeletal organization via Rho family GTPases. Inhibits PAK2 proteolytic fragment PAK-2p34 kinase activity and changes its localization from the nucleus to the perinuclear region. Stabilizes PAK-2p34 thereby increasing stimulation of cell death (By similarity) (786 aa) | |||
ARHGEF1 | Rho guanine nucleotide exchange factor (GEF) 1; Seems to play a role in the regulation of RhoA GTPase by guanine nucleotide-binding alpha-12 (GNA12) and alpha-13 (GNA13) subunits. Acts as GTPase-activating protein (GAP) for GNA12 and GNA13, and as guanine nucleotide exchange factor (GEF) for RhoA GTPase. Activated G alpha 13/GNA13 stimulates the RhoGEF activity through interaction with the RGS-like domain. This GEF activity is inhibited by binding to activated GNA12. Mediates angiotensin-2- induced RhoA activation (927 aa) | |||
STARD13 | StAR-related lipid transfer (START) domain containing 13 (1113 aa) | |||
ARHGAP6 | Rho GTPase activating protein 6; GTPase activator for the Rho-type GTPases by converting them to an inactive GDP-bound state. Could regulate the interactions of signaling molecules with the actin cytoskeleton. Promotes continuous elongation of cytoplasmic processes during cell motility and simultaneous retraction of the cell body changing the cell morphology (974 aa) | |||
SYDE2 | synapse defective 1, Rho GTPase, homolog 2 (C. elegans); GTPase activator for the Rho-type GTPases by converting them to an inactive GDP-bound state (By similarity) (1194 aa) | |||
SYDE1 | synapse defective 1, Rho GTPase, homolog 1 (C. elegans); GTPase activator for the Rho-type GTPases by converting them to an inactive GDP-bound state (By similarity) (735 aa) | |||
ARHGAP12 | Rho GTPase activating protein 12; GTPase activator for the Rho-type GTPases by converting them to an inactive GDP-bound state (By similarity) (846 aa) | |||
SRGAP1 | SLIT-ROBO Rho GTPase activating protein 1; GTPase-activating protein for RhoA and Cdc42 small GTPases. Together with CDC42 seems to be involved in the pathway mediating the repulsive signaling of Robo and Slit proteins in neuronal migration. SLIT2, probably through interaction with ROBO1, increases the interaction of SRGAP1 with ROBO1 and inactivates CDC42 (1085 aa) | |||
OPHN1 | oligophrenin 1; Stimulates GTP hydrolysis of members of the Rho family. Its action on RHOA activity and signaling is implicated in growth and stabilization of dendritic spines, and therefore in synaptic function (By similarity). Critical for the stabilization of AMPA receptors at postsynaptic sites (By similarity). Critical for the regulation of synaptic vesicle endocytosis at presynaptic terminals (By similarity) (802 aa) | |||
MYO9A | myosin IXA (2548 aa) | |||
RHOT1 | ras homolog family member T1; Mitochondrial GTPase involved in mitochondrial trafficking (By similarity) (691 aa) | |||
ARHGAP19 | Rho GTPase activating protein 19 (494 aa) | |||
ARHGAP11A | Rho GTPase activating protein 11A (1023 aa) | |||
TAGAP | T-cell activation RhoGTPase activating protein; May function as a GTPase-activating protein and may play important roles during T-cell activation (731 aa) | |||
ARHGAP30 | Rho GTPase activating protein 30; GTPase-activating protein (GAP) for RAC1 and RHOA, but not for CDC42 (1101 aa) | |||
OCRL | oculocerebrorenal syndrome of Lowe (901 aa) | |||
INPP5B | inositol polyphosphate-5-phosphatase, 75kDa (913 aa) | |||
ARHGAP40 | Rho GTPase activating protein 40; GTPase activator for the Rho-type GTPases by converting them to an inactive GDP-bound state (By similarity) (622 aa) | |||
STARD8 | StAR-related lipid transfer (START) domain containing 8; Accelerates GTPase activity of RHOA and CDC42, but not RAC1. Stimulates the hydrolysis of phosphatidylinositol 4,5- bisphosphate by PLCD1 (1103 aa) | |||
ARHGAP39 | Rho GTPase activating protein 39 (1114 aa) | |||
PLEKHG5 | pleckstrin homology domain containing, family G (with RhoGef domain) member 5 (1083 aa) | |||
ARHGAP44 | Rho GTPase activating protein 44; GTPase activator for the Rho-type GTPases by converting them to an inactive GDP-bound state. Acts as a GTPase activitor in vitro for CDC42 and RAC1 (818 aa) |