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Entries
RHOA GAPs stimulate RHOA GTPase activity
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authored
[InstanceEdit:9695572] Orlic-Milacic, Marija, 2020-07-14
catalystActivity
[CatalystActivity:8981638] GTPase activator activity of RHOA GAPs [cytosol]
category
transition
compartment
[Compartment:70101] cytosol
[Compartment:876] plasma membrane
created
[InstanceEdit:8981639] Orlic-Milacic, Marija, 2017-03-13
dbId
8981637
deleted
[Deleted:9768323] Deletion of instance: 194922
displayName
RHOA GAPs stimulate RHOA GTPase activity
edited
[InstanceEdit:9716798] Orlic-Milacic, Marija, 2021-02-25
eventOf
[Pathway:R-HSA-8980692] RHOA GTPase cycle - Homo sapiens
input
[SimpleEntity:R-ALL-29356] H2O [cytosol]
[Complex:R-HSA-5665993] RHOA:GTP [plasma membrane]
isInDisease
false
isInferred
false
literatureReference
[LiteratureReference:9679623] ARAP1: a point of convergence for Arf and Rho signaling
[LiteratureReference:9679615] PKNbeta interacts with the SH3 domains of Graf and a novel Graf related protein, Graf2, which are GTPase activating proteins for Rho family
[LiteratureReference:9679597] Rho GTPase Transcriptome Analysis Reveals Oncogenic Roles for Rho GTPase-Activating Proteins in Basal-like Breast Cancers
[LiteratureReference:9679588] ARHGAP18, a GTPase-activating protein for RhoA, controls cell shape, spreading, and motility
[LiteratureReference:9679603] The RhoGAP ARHGAP19 controls cytokinesis and chromosome segregation in T lymphocytes
[LiteratureReference:9679624] ARHGAP10 is necessary for alpha-catenin recruitment at adherens junctions and for Listeria invasion
[LiteratureReference:9679344] Mapping the proximity interaction network of the Rho-family GTPases reveals signalling pathways and regulatory mechanisms
[LiteratureReference:9679626] An SH3 domain-containing GTPase-activating protein for Rho and Cdc42 associates with focal adhesion kinase
[LiteratureReference:9679627] Expression, purification and crystallization of a BH domain from the GTPase regulatory protein associated with focal adhesion kinase
[LiteratureReference:9679631] Deciphering the Molecular and Functional Basis of RHOGAP Family Proteins: A SYSTEMATIC APPROACH TOWARD SELECTIVE INACTIVATION OF RHO FAMILY PROTEINS
[LiteratureReference:9679653] Arhgap28 is a RhoGAP that inactivates RhoA and downregulates stress fibers
[LiteratureReference:9679669] A novel GTPase-activating protein for Rho interacts with a PDZ domain of the protein-tyrosine phosphatase PTPL1
[LiteratureReference:9679659] ARHGAP30 is a Wrch-1-interacting protein involved in actin dynamics and cell adhesion
[LiteratureReference:9679648] p250GAP, a novel brain-enriched GTPase-activating protein for Rho family GTPases, is involved in the N-methyl-d-aspartate receptor signaling
[LiteratureReference:9679660] ARHGAP4 is a novel RhoGAP that mediates inhibition of cell motility and axon outgrowth
[LiteratureReference:9679662] Rho-GTPase-activating protein interacting with Cdc-42-interacting protein 4 homolog 2 (Rich2): a new Ras-related C3 botulinum toxin substrate 1 (Rac1) GTPase-activating protein that controls dendritic spine morphogenesis
[LiteratureReference:9679678] p190-B, a new member of the Rho GAP family, and Rho are induced to cluster after integrin cross-linking
[LiteratureReference:9679680] Inactivation of Rho GTPases by p190 RhoGAP reduces human pancreatic cancer cell invasion and metastasis
[LiteratureReference:9679713] Functional analysis of ARHGAP6, a novel GTPase-activating protein for RhoA
[LiteratureReference:9679707] BPGAP1 interacts with cortactin and facilitates its translocation to cell periphery for enhanced cell migration
[LiteratureReference:9679717] Isolation of a novel human gene, ARHGAP9, encoding a rho-GTPase activating protein
[LiteratureReference:9679693] DLC-1 suppresses non-small cell lung cancer growth and invasion by RhoGAP-dependent and independent mechanisms
[LiteratureReference:9679698] Annexin A2 Regulates Autophagy in Pseudomonas aeruginosa Infection through the Akt1-mTOR-ULK1/2 Signaling Pathway
[LiteratureReference:9679694] A novel Rho GTPase-activating-protein interacts with Gem, a member of the Ras superfamily of GTPases
[LiteratureReference:9679699] The human minor histocompatibility antigen 1 is a RhoGAP
[LiteratureReference:9679723] Vaccinia virus F11 promotes viral spread by acting as a PDZ-containing scaffolding protein to bind myosin-9A and inhibit RhoA signaling
[LiteratureReference:9679733] Myosin-IXA regulates collective epithelial cell migration by targeting RhoGAP activity to cell-cell junctions
[LiteratureReference:8985683] Human myosin-IXb is a mechanochemically active motor and a GAP for rho
[LiteratureReference:8985695] Functional role for the class IX myosin myr5 in epithelial cell infection by Shigella flexneri
[LiteratureReference:8985599] Myo9b is a key player in SLIT/ROBO-mediated lung tumor suppression
[LiteratureReference:375968] Signal transduction in neuronal migration: roles of GTPase activating proteins and the small GTPase Cdc42 in the Slit-Robo pathway
[LiteratureReference:9679728] The t complex-encoded GTPase-activating protein Tagap1 acts as a transmission ratio distorter in mice
[LiteratureReference:8980785] Abr and Bcr are multifunctional regulators of the Rho GTP-binding protein family
[LiteratureReference:196684] Identification of ARAP3, a novel PI3K effector regulating both Arf and Rho GTPases, by selective capture on phosphoinositide affinity matrices
[LiteratureReference:9681330] Regulation of RhoA GTP hydrolysis by the GTPase-activating proteins p190, p50RhoGAP, Bcr, and 3BP-1
[LiteratureReference:9681318] Cdc42GAP, reactive oxygen species, and the vimentin network
[LiteratureReference:9681328] Gene targeting of Cdc42 and Cdc42GAP affirms the critical involvement of Cdc42 in filopodia induction, directed migration, and proliferation in primary mouse embryonic fibroblasts
[LiteratureReference:9681326] A vascular cell-restricted RhoGAP, p73RhoGAP, is a key regulator of angiogenesis
[LiteratureReference:9681320] Characterization of a novel GTPase-activating protein associated with focal adhesions and the actin cytoskeleton
[LiteratureReference:9681319] FilGAP, a Rho- and ROCK-regulated GAP for Rac binds filamin A to control actin remodelling
[LiteratureReference:9681348] Regulation of the substrate preference of p190RhoGAP by protein kinase C-mediated phosphorylation of a phospholipid binding site
[LiteratureReference:428411] Vilse, a conserved Rac/Cdc42 GAP mediating Robo repulsion in tracheal cells and axons
[LiteratureReference:9681345] The smooth muscle-selective RhoGAP GRAF3 is a critical regulator of vascular tone and hypertension
[LiteratureReference:9681341] ARHGAP42 is activated by Src-mediated tyrosine phosphorylation to promote cell motility
[LiteratureReference:9681359] Blood pressure-associated polymorphism controls ARHGAP42 expression via serum response factor DNA binding
[LiteratureReference:9681403] Identification of the GTPase-activating protein DEP domain containing 1B (DEPDC1B) as a transcriptional target of Pitx2
[LiteratureReference:9681396] The GRAF family member oligophrenin1 is a RhoGAP with BAR domain and regulates Rho GTPases in platelets
[LiteratureReference:9681428] MgcRacGAP, a new human GTPase-activating protein for Rac and Cdc42 similar to Drosophila rotundRacGAP gene product, is expressed in male germ cells
[LiteratureReference:9681430] Deleted in liver cancer 2 (DLC2) suppresses cell transformation by means of inhibition of RhoA activity
[LiteratureReference:9681420] Deleted in liver cancer (DLC) 2 encodes a RhoGAP protein with growth suppressor function and is underexpressed in hepatocellular carcinoma
[LiteratureReference:9681421] START-GAP3/DLC3 is a GAP for RhoA and Cdc42 and is localized in focal adhesions regulating cell morphology
[LiteratureReference:9681442] ARAP2 effects on the actin cytoskeleton are dependent on Arf6-specific GTPase-activating-protein activity and binding to RhoA-GTP
[LiteratureReference:9681439] ArhGAP15, a novel human RacGAP protein with GTPase binding property
[LiteratureReference:196680] Rich, a rho GTPase-activating protein domain-containing protein involved in signaling by Cdc42 and Rac1
[LiteratureReference:9681450] ARHGAP22 localizes at endosomes and regulates actin cytoskeleton
[LiteratureReference:9681454] ARHGAP25, a novel Rac GTPase-activating protein, regulates phagocytosis in human neutrophilic granulocytes
[LiteratureReference:9681452] The human orthologue of CdGAP is a phosphoprotein and a GTPase-activating protein for Cdc42 and Rac1 but not RhoA
[LiteratureReference:9681458] Physical and functional interaction of Fyn tyrosine kinase with a brain-enriched Rho GTPase-activating protein TCGAP
[LiteratureReference:9681471] Breakpoint cluster region gene product-related domain of n-chimaerin. Discrimination between Rac-binding and GTPase-activating residues by mutational analysis
[LiteratureReference:9681480] Bridging Ral GTPase to Rho pathways. RLIP76, a Ral effector with CDC42/Rac GTPase-activating protein activity
[LiteratureReference:8871052] A role of the Lowe syndrome protein OCRL in early steps of the endocytic pathway
[LiteratureReference:9681473] Characterization of the Rac-GAP (Rac-GTPase-activating protein) activity of beta2-chimaerin, a 'non-protein kinase C' phorbol ester receptor
[LiteratureReference:9681483] The effect of missense mutations in the RhoGAP-homology domain on ocrl1 function
[LiteratureReference:5665805] Bi-modal regulation of a formin by srGAP2
[LiteratureReference:9681495] The novel Rho-GTPase activating gene MEGAP/ srGAP3 has a putative role in severe mental retardation
[LiteratureReference:9679620] ARHGAP21 is a RhoGAP for RhoA and RhoC with a role in proliferation and migration of prostate adenocarcinoma cells
[LiteratureReference:9714239] Systems analysis of RhoGEF and RhoGAP regulatory proteins reveals spatially organized RAC1 signalling from integrin adhesions
maxDepth
1
modified
[InstanceEdit:11080360] Weiser, Joel, 2026-03-16
name
RHOA GAPs stimulate RHOA GTPase activity
orthologousEvent
[Reaction:R-SCE-8981637] RHOA GAPs stimulate RHOA GTPase activity - Saccharomyces cerevisiae
[Reaction:R-SPO-8981637] RHOA GAPs stimulate RHOA GTPase activity - Schizosaccharomyces pombe
[Reaction:R-CEL-8981637] RHOA GAPs stimulate RHOA GTPase activity - Caenorhabditis elegans
[Reaction:R-DME-8981637] RHOA GAPs stimulate RHOA GTPase activity - Drosophila melanogaster
[Reaction:R-GGA-8981637] RHOA GAPs stimulate RHOA GTPase activity - Gallus gallus
[Reaction:R-XTR-8981637] RHOA GAPs stimulate RHOA GTPase activity - Xenopus tropicalis
[Reaction:R-DRE-8981637] RHOA GAPs stimulate RHOA GTPase activity - Danio rerio
[Reaction:R-SSC-8981637] RHOA GAPs stimulate RHOA GTPase activity - Sus scrofa
[Reaction:R-BTA-8981637] RHOA GAPs stimulate RHOA GTPase activity - Bos taurus
[Reaction:R-CFA-8981637] RHOA GAPs stimulate RHOA GTPase activity - Canis familiaris
[Reaction:R-RNO-8981637] RHOA GAPs stimulate RHOA GTPase activity - Rattus norvegicus
[Reaction:R-MMU-8981637] RHOA GAPs stimulate RHOA GTPase activity - Mus musculus
output
[SimpleEntity:R-ALL-29372] Pi [cytosol]
[Complex:R-HSA-8964174] RHOA:GDP [plasma membrane]
precedingEvent
[Reaction:R-HSA-8980691] RHOA GEFs activate RHOA - Homo sapiens
releaseDate
2021-03-23
reviewStatus
[ReviewStatus:9821382] five stars
reviewed
[InstanceEdit:9714226] Fort, Philippe, 2021-02-05
schemaClass
Reaction
species
[Species:48887] Homo sapiens
stId
R-HSA-8981637
summation
[Summation:9677559] The following GTPase activating proteins (GAPs) were shown t...
Referrals
(hasEvent)
[Pathway:R-HSA-8980692] RHOA GTPase cycle
(replacementInstances)
[Deleted:9768323] Deletion of instance: 194922
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