Field Data
UniProt Accession: Q9NRY4
Gene Name: ARHGAP35
Gene Synonim: GRF1, GRLF1, KIAA1722, P190A, p190ARHOGAP
GAP/GEF: GAP
Description: Rho GTPase-activating protein 35 (Glucocorticoid receptor DNA-binding factor 1) (Glucocorticoid receptor repression factor 1) (GRF-1) (Rho GAP p190A) (p190-A)
Keywords: 3D-structure;Cell membrane;Cell projection;Complete proteome;Cytoplasm;Cytoskeleton;DNA-binding;GTP-binding;GTPase activation;Lipid-binding;Membrane;Nucleotide-binding;Nucleus;Phosphoprotein;Reference proteome;Repeat;Repressor;Transcription;Transcription regulation
Entrez ID: 2909
Ensembl Gene ID: ENSG00000160007
Ensembl Protein ID: ENSP00000483730
Our Specificity RhoA, Rac1
Literature Specificity RhoA
Literature reference
Domain Composition:

Cellular Component


GO ID Description
GO:0005737cytoplasm
GO:0005856cytoskeleton
GO:0015629actin cytoskeleton
GO:0036064ciliary basal body
GO:0005634nucleus
GO:0016020membrane
GO:0005886plasma membrane
GO:0042995cell projection
GO:0005829cytosol

Molecular Function


GO ID Description
GO:0001227transcriptional repressor activity, RNA polymerase II transcription regulatory region sequence-specific binding
GO:0005543phospholipid binding
GO:0003924GTPase activity
GO:0003714transcription corepressor activity
GO:0005096GTPase activator activity
GO:0000977RNA polymerase II regulatory region sequence-specific DNA binding
GO:0003677DNA binding
GO:0005525GTP binding

Biological Process


GO ID Description
GO:0035024negative regulation of Rho protein signal transduction
GO:0007165signal transduction
GO:0007411axon guidance
GO:0007413axonal fasciculation
GO:0043547positive regulation of GTPase activity
GO:0000122negative regulation of transcription from RNA polymerase II promoter
GO:0021955central nervous system neuron axonogenesis
GO:0001843neural tube closure
GO:0016477cell migration
GO:0030879mammary gland development
GO:0051056regulation of small GTPase mediated signal transduction
GO:0045724positive regulation of cilium assembly
GO:0008360regulation of cell shape
GO:0045892negative regulation of transcription, DNA-templated
GO:0010976positive regulation of neuron projection development
GO:0032956regulation of actin cytoskeleton organization
GO:0097485neuron projection guidance
GO:0008064regulation of actin polymerization or depolymerization
GO:0031668cellular response to extracellular stimulus
GO:0050770regulation of axonogenesis
GO:0030950establishment or maintenance of actin cytoskeleton polarity
GO:0044319wound healing, spreading of cells
GO:0006355regulation of transcription, DNA-templated
GO:0030900forebrain development
GO:0006351transcription, DNA-templated
GO:0043010camera-type eye development
GO:0043116negative regulation of vascular permeability

Reactome


Reactome ID Description
R-HSA-8849471PTK6 Regulates RHO GTPases, RAS GTPase and MAP kinases
R-HSA-416550Sema4D mediated inhibition of cell attachment and migration
R-HSA-194840Rho GTPase cycle

KEGG


Kegg ID Description
hsa04670Leukocyte transendothelial migration
hsa04611Platelet activation
hsa04510Focal adhesion
hsa04810Regulation of actin cytoskeleton

Field Data
Localization in this study: actin, focal_adhesions
Localization in the literature: focal adhesions cytosolic invadopodia

Confocal Images


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TIRF


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organism orgs
Organism: Homo sapiens

Nucleotide Sequence

>ARHGAP35
atgatgatggcaagaaagcaagatgtccgaattcccacctacaacatcagtgtggtggga
ttatctgggaccgagaaggaaaagggccagtgtgggattggaaagtcttgtttgtgcaac
cgcttcgtgcgcccgagtgctgacgagtttcacttggaccatacctccgtcctcagcacc
agtgactttggagggcgagtggtcaataatgaccactttctctactggggagaagttagc
cgctccctggaggattgtgtggaatgtaagatgcacattgtggagcagactgaatttatt
gatgatcagacttttcaacctcatcgaagcacggccctgcagccctatatcaagagagct
gctgcgaccaagcttgcatcagctgaaaaactcatgtacttttgcactgaccagctgggg
ctggagcaggactttgagcagaaacaaatgccagacggaaagctgctggttgatggtttt
cttcttggtattgatgttagcaggggcatgaataggaactttgatgaccagctcaagttt
gtctccaatctctacaatcagcttgcaaaaacaaaaaagcccatagtggtggtcctgact
aagtgtgacgaaggtgttgagcggtacattagagatgcacatacttttgccttaagcaaa
aagaacctccaggttgtggagacctcagcgagatccaatgtaaacgtggacttggctttc
agcaccttagtgcaactcattgataaaagtcggggaaagacaaaaatcattccttatttt
gaagctctcaagcagcagagtcagcagatagctacagcaaaagacaagtatgagtggctg
gtgagtcgcattgtgaaaaaccacaatgagaactggctgagtgtcagccgaaagatgcag
gcctctccagaataccaggactatgtctacctggaagggactcagaaagccaagaagctg
tttctacagcacatccaccgcctcaagcatgagcatatcgagcgtaggagaaagctgtac
ctggcagccctgccattagcttttgaagctcttatacctaatctagatgaaatagaccac
ctaagctgcataaaagccaaaaagctcttagaaaccaagccagaattcttgaagtggttt
gttgtgcttgaagagaccccatgggatgccaccagtcacattgacaacatggaaaacgaa
cggattccctttgatttaatggataccgtccctgcagagcagctatacgaggcccactta
gagaagctgaggaacgaaaggaaaagagttgagatgcgaagggcgtttaaagaaaacctg
gagacttctcctttcataactcccggaaagccttgggaagaggcccgtagttttattatg
aatgaggatttctaccagtggctggaggaatctgtatacatggatatttatggcaaacac
caaaagcaaattatagataaagcaaaggaagaatttcaggagttgcttttggaatattca
gaattgttttatgaactggagctggatgctaagcccagcaaggagaagatgggtgttatt
caggatgttctgggagaggaacagcgatttaaagcattacaaaagctccaagcagagcgt
gatgcccttattctgaaacacattcattttgtgtaccacccaacaaaggagacatgcccc
agctgcccagcttgtgtggacgctaagattgagcacttgattagttctcggtttatccgg
ccgtctgaccggaatcagaaaaattcactctctgaccctaacattgatagaatcaacttg
gttatattgggcaaagacggccttgcccgagagttggccaatgagattcgagctctttgt
acaaatgatgacaagtatgtgatagatggtaaaatgtatgagctttccctgaggccaata
gaggggaatgtcaggcttcctgtgaactctttccagacgccaacatttcagccccacggc
tgtctctgcctttacaattcaaaggaatcgctatcctatgtagtggaaagtatagagaag
agtagagagtccacgctgggccggcgggataatcatttagtccatctcccccttacatta
attttggttaacaagagaggagacaccagtggagagactctgcatagcttaatacagcaa
ggtcaacaaattgctagcaaacttcagtgtgtctttctcgaccctgcttctgctggcatt
ggttacggacgcaacattaatgaaaagcaaatcagtcaagttttgaagggactcctggac
tctaagcgtaacttaaacctggtcagttctactgctagcatcaaagatttggctgatgtt
gatctgcgaattgttatgtgtctgatgtgtggagatccttttagtgcagatgacatactt
tttcctgtccttcagtcccaaacctgtaaatcttcccattgtggaagcaacaactctgtt
ttacttgaactaccaatcggactgcacaagaagcggattgaactgtctgttctttcatac
cattcctcctttagcatcagaaagagccggttggttcatgggtacattgttttttattca
gccaaacgtaaggcctctttggctatgttacgtgcctttctttgtgaagtgcaggatatt
atccctattcagcttgtagcactcactgatggcgctgtagatgtcctggacaatgactta
agtagggaacagctaactgagggggaggagattgctcaagaaattgacggaaggttcaca
agcatcccctgtagccaaccccagcataaacttgagatctttcacccattttttaaagat
gtggtggaaaaaaagaacataatcgaggctactcatatgtacgataatgctgccgaggcc
tgtagcaccaccgaagaggtgtttaactccccccgggcaggatcaccgctctgcaactca
aacctgcaggattcagaagaagatatcgagccatcttacagcctgtttcgagaagacaca
tcactgccttctctgtccaaagaccattctaagctctctatggaactggagggaaatgat
gggctgtctttcattatgagcaattttgagagtaaactgaacaacaaagtacctccgcca
gtcaaaccaaagcctcctgtccattttgaaattacaaagggggatctatcttatttagac
caaggccatagggatggacagaggaagtctgtgtcttctagcccctggctgcctcaggat
gggtttgatccttctgactatgctgaacccatggatgctgtggtgaagccaaggaatgaa
gaagaaaacatatactccgtgccccatgacagcacccaaggcaaaatcatcaccattcgg
aatatcaacaaagcccagtccaacggcagcgggaatggttctgacagtgaaatggacacc
agctctctagagcgagggcgcaaggtttccatcgtgagcaagccagtgctgtacaggacg
agatgcacccggctggggcggtttgctagttaccggaccagcttcagcgtggggagtgat
gatgagctggggcccatccggaagaaagaggaggatcaggcatcccagggttataaaggg
gacaatgctgtcattccatacgaaacagacgaagacccgcggaggaggaatattcttcgc
agcctaaggaggaacactaagaaaccaaagcccaaaccccggccatccatcacaaaggca
acctgggagagtaactattttggggtgcccttaacaactgtcgtgactccagagaagccg
atccccatttttattgaaagatgtattgagtacattgaagccacaggactgagcacggaa
ggcatctaccgggtcagcgggaacaagtctgagatggagagtctgcagagacagtttgat
caagaccacaacctggacctggcagagaaagactttacggtgaataccgtggctggtgcc
atgaagagctttttctcagaactgcctgaccccctggtcccgtataacatgcagatcgac
ttggtggaagcacacaaaatcaacgaccgggagcagaagttgcatgcccttaaggaggta
ttaaagaaatttccaaaggaaaaccacgaagtcttcaagtatgtcatctctcacctaaac
aaggtcagccacaacaacaaggtgaatctcatgaccagcgagaacctctccatctgcttc
tggcccaccttgatgagacctgatttcagcactatggacgccctcacagccacgcgcacc
taccagacaatcattgaactctttatccagcagtgccccttcttcttctacaatcggccc
atcaccgagccccccggcgccaggcccagctccccctctgccgtggcttccaccgtcccc
ttcctcacttccacgcctgtcacaagtcagccgtcgcccccacagtcgcctccacccacc
ccccagtccccaatgcagccactgcttccctcccagcttcaagccgaacacacgctgtta
atta

Protein Sequence

>ARHGAP35
MMMARKQDVRIPTYNISVVGLSGTEKEKGQCGIGKSCLCNRFVRPSADEFHLDHTSVLST
SDFGGRVVNNDHFLYWGEVSRSLEDCVECKMHIVEQTEFIDDQTFQPHRSTALQPYIKRA
AATKLASAEKLMYFCTDQLGLEQDFEQKQMPDGKLLVDGFLLGIDVSRGMNRNFDDQLKF
VSNLYNQLAKTKKPIVVVLTKCDEGVERYIRDAHTFALSKKNLQVVETSARSNVNVDLAF
STLVQLIDKSRGKTKIIPYFEALKQQSQQIATAKDKYEWLVSRIVKNHNENWLSVSRKMQ
ASPEYQDYVYLEGTQKAKKLFLQHIHRLKHEHIERRRKLYLAALPLAFEALIPNLDEIDH
LSCIKAKKLLETKPEFLKWFVVLEETPWDATSHIDNMENERIPFDLMDTVPAEQLYEAHL
EKLRNERKRVEMRRAFKENLETSPFITPGKPWEEARSFIMNEDFYQWLEESVYMDIYGKH
QKQIIDKAKEEFQELLLEYSELFYELELDAKPSKEKMGVIQDVLGEEQRFKALQKLQAER
DALILKHIHFVYHPTKETCPSCPACVDAKIEHLISSRFIRPSDRNQKNSLSDPNIDRINL
VILGKDGLARELANEIRALCTNDDKYVIDGKMYELSLRPIEGNVRLPVNSFQTPTFQPHG
CLCLYNSKESLSYVVESIEKSRESTLGRRDNHLVHLPLTLILVNKRGDTSGETLHSLIQQ
GQQIASKLQCVFLDPASAGIGYGRNINEKQISQVLKGLLDSKRNLNLVSSTASIKDLADV
DLRIVMCLMCGDPFSADDILFPVLQSQTCKSSHCGSNNSVLLELPIGLHKKRIELSVLSY
HSSFSIRKSRLVHGYIVFYSAKRKASLAMLRAFLCEVQDIIPIQLVALTDGAVDVLDNDL
SREQLTEGEEIAQEIDGRFTSIPCSQPQHKLEIFHPFFKDVVEKKNIIEATHMYDNAAEA
CSTTEEVFNSPRAGSPLCNSNLQDSEEDIEPSYSLFREDTSLPSLSKDHSKLSMELEGND
GLSFIMSNFESKLNNKVPPPVKPKPPVHFEITKGDLSYLDQGHRDGQRKSVSSSPWLPQD
GFDPSDYAEPMDAVVKPRNEEENIYSVPHDSTQGKIITIRNINKAQSNGSGNGSDSEMDT
SSLERGRKVSIVSKPVLYRTRCTRLGRFASYRTSFSVGSDDELGPIRKKEEDQASQGYKG
DNAVIPYETDEDPRRRNILRSLRRNTKKPKPKPRPSITKATWESNYFGVPLTTVVTPEKP
IPIFIERCIEYIEATGLSTEGIYRVSGNKSEMESLQRQFDQDHNLDLAEKDFTVNTVAGA
MKSFFSELPDPLVPYNMQIDLVEAHKINDREQKLHALKEVLKKFPKENHEVFKYVISHLN
KVSHNNKVNLMTSENLSICFWPTLMRPDFSTMDALTATRTYQTIIELFIQQCPFFFYNRP
ITEPPGARPSSPSAVASTVPFLTSTPVTSQPSPPQSPPPTPQSPMQPLLPSQLQAEHTLL
I

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