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ARHGAP28
Rho GTPase activating protein 28

Gene
Official SymbolARHGAP28
Official Full NameRho GTPase activating protein 28
CGNC ID10945
also known asrho GTPase-activating protein 28
gene typeprotein-coding
Genomic Map
 Ensembl
NCBI
UCSC
Gallus-Browse
Sequence Information
Genomic
RNAXM_419140
PolypeptideXP_419140
Sequence Clusters/ESTsUnigene
Gene Expression
In Situ HybridizationGEISHA
EST ProfileGga.49221
Orthology
Entrez GeneEnsembl GeneGenetic PhenotypesMOD
Fruit Fly
Human79822ENSG00000088756MIM:610592
Mouse268970ENSMUSG00000024043All phenotypic alleles (4):Targeted, other(4) MGI:2147003
Xenopus1004881651013084
Zebrafish492794ENSDARG00000005872ZDB-GENE-041114-147ZFIN:ZDB-GENE-041114-147
Gene Ontology
Molecular Function
Biological Process
Cellular Component
Links to other databases
Entrez Gene421053
Ensembl GeneENSGALG00000014758
KEGGgga:421053

Entry 1

GEISHA IdARHGAP28.UApcrData SourceGEISHA ISH Analysis
Forward cDNA Template PrimerGTTCCTGAAGAAGGTGGTTG
Reverse cDNA Template PrimerATTAACCCTCACTAAAGGGCATAACTGATGTGCGGTATTCcDNA Template Length841
Forward cDNA Template Probeshow
AAAATGGTCAGAACTGGATGATAATTCTTAATGCCAAAAGTAGCACATGATGAACATCTGTTGGACAGTATGGTAGAAA
GGAATGATATCCTGTAGGTAGCTACCATTTTGTTTTCATCAGTGGCAAGAGGCGAGAGCTTCTTCAAATGTCAGGCATC
ACAGTTGTTCATTTGGCCTTTGTCCAGTATGCTGCCGCCTTGTGCTTCAGCTTGCTTTTGGTTTTATCACCCATTCTGC
CTGAGGATTTGCACGGTAAACATCTAACATGTATGCATCTGGATCCAAACAGTGCTGACCTATATTTCCTCCAACTTCA
TGTAAACTTTGGATCTGGCTTCTCACATTCTGTGACAATCCACGGCTGTTTTCACAGTGGAATCGAGCCAGGATGTCTT
TGGCTTTTGTTTGGCTGTTGAGTTGAATTGCCATAGAGACTTTTGAATGCAGTGGTGCATAAACTCTTATCACCCCCTC
GGGTATGTCAGACTGCAGGTATGGGGGAAAAGTGACAGCTCCCTCTGGTCTTTCAGGTCTCTCTCTCTCCATGGTCTTT
CTCCTTAGAAGTTTTCTCACTCCTTTGTCAAACATCAGCTGCCTCTTGCTGTTGTTTATTGCTGCCTCATTCATTTTCC
TCACCTGGGAAATCAGGAAGGATGGAACTGTCCACAGGATATCCTGGTACCGAATTAAAAGCCGTACAATGTGTGCAGT
GGTGGCAGCTGCTTGCATTTCTTGTTGGTTTGCACGTTTCCCTTTGTAGATGAAGAGGTTTGGTGCAACAATCATAGAA
ACATTCCACAAATTCATTTTATTTTTCCCTTCATTAGCAACCACCTCTTTT
StageImage (click image to view full size)Location (click to highlight)Comments (click to highlight)
4-6
stage 5
stage 6
Head Process
Lateral Plate Mesoderm
Paraxial Mesoderm
Low level of expression
7-12
stage 7
stage 8
stage 12
stage 12
Extraembryonic Mesoderm
Head Process
Lateral Plate Mesoderm
Paraxial Mesoderm
Primitive Streak
Somites
 
13-18
stage 13
stage 15
stage 15
stage 16
stage 16
stage 16
Anterior Intestinal Portal
Blood Vessels
Endocardium
Forebrain
Foregut
Head Mesenchyme
Hindbrain
Lateral Plate Mesoderm
Midbrain
Myotome
Neural Crest
Paraxial Mesoderm
Pharyngeal Arches and Clefts
Somites
 
19-24
stage 21
stage 21
Endocardium
Eye
Gut
Head Mesenchyme
Mesonephros
Myotome
Pharyngeal Arches and Clefts
Somites
Trunk Mesenchyme
 
25-27
stage 27
Allantois
Endocardium
Eye
Forebrain
Hindbrain
Midbrain
Pharyngeal Arches and Clefts
Somites
 

Entry 2

GEISHA IdARHGAP28.Roy.2013Data SourcePublication
Complete cDNA Template Probeshow
CTTTGTGATCATAGGCTGAGAAAGAACTTACTGCCGCTAGGAGCATGAAGAAGTTGAGTTTCAGAAGGACTCTGCCCTG
CTCCCTTAAGGATAGCACCAAGGATTTGTTCTGCTGCGAGAAAATCTCTTCCTCGCTGCCGAAGAATTAATAGGATGCT
TTCCAATGAGTCAATGCCAACAAGTCCTCCAGCATTCACTCGCTCCAACTCTCAGGCCTCCGTGGACAGCACCTCCATG
GAGGACTTCTGGTGCGAAGTGGAGAGCATCAAGGAGAGCAGTGAAGATGGGCCTGAAGAAGCAACACTCTTGGAGTTCA
AACCTGCTGACGAAGGGGAACTGGAGGCTGAGTGGCTGCAGGATGTAGGCTTATCTACCCTGATCTCAGGAGCTGAGGA
GGAGGATGGCCAAGCCCTGCTGTCCACTTTGACCCGAACACAAGCTGCTGCTGTACAGAAGAGGTACAACACATACACT
CAGACCCTGAGGAAGAAGAACAAGCACACGGTCCGGGATGTGCGAGATATCTTTGGCACCAGTGACTCTTCTCCCACAT
TTGAGACAGTTCCAGTGTCACCAGTTCCTTCTAATGGTATCCAGCTTCCTGGGCAGAAGCCAGTTTGGAAATCAGTTAG
CTCTAATAGCTGTCTAGACTGTGGACTAGATAAAGGCAGTTCGTCTATAACAGAAGAGCTCTCCTATGAGGTCTCTTTC
TCAGAATCCATTACAGTCCTCCCAAAAACCCGAGAGTGGACAAAGAGCCAGAGGTTCAAAAAGGAAGACTCTGCTTTGC
CAAAATTCATTGTTCGGAAAAGCCGATTTGGACTGACAGAGGTTGGAGATCTCTCTCCTGAAGACATGAAGAAGATCCG
CTACCTCTCCCTGATTGAGCTAACAGCCTTCTACGATGCCCTGGGTGTGGAGCTGAAGAGGAACCGTGCGGAGAGAGTG
CGGAGACGAGAAAACGGTCTTTTTGGAGTCCCCCTCACAGTGCTTCTGGAGAATGATCAGAAGAAGGTTCCTGGAATAA
AAGTTCCTCTCATCTTCCAAAAGTTGCTGCTCAAGCTTGAGGAAACTGGTTTAGAAACTGAAGGAATTCTTCGAGTGCC
CGGATCTGCCTCCAGGGTTAAGAATCTCCATCAAGAACTTGAGGCAAAATTTTATGAAGACACATTTGACTGGAATCAA
GTACGAAACAACGATGCAGCAGGACTGCTTAAAATGTTTATAAGAGAACTCCCAAGTCCACTATTCACAGTGGAATATC
TGCCTGCTTTCATCACCTTAGTGGAAAAAATCCCCAAGATCAAGTTACAGCTTCAAGCTTTGCATCTGTTGATCATGCT
GCTGCCTGAAGCCAACAGGGACACAGCTAAGGCCTTCCTTCAGTTCCTGAAGAAGGTGGTTGCTAATGAAGGGAAAAAT
AAAATGAATTTGTGGAATGTTTCTATGATTGTTGCACCAAACCTCTTCATCTACAAAGGGAAACGTGCAAACCAACAAG
AAATGCAAGCAGCTGCCACCACTGCACACATTGTACGGCTTTTAATTCGGTACCAGGATATCCTGTGGACAGTTCCATC
CTTCCTGATTTCCCAGGTGAGGAAAATGAATGAGGCAGCAATAAACAACAGCAAGAGGCAGCTGATGTTTGACAAAGGA
GTGAGAAAACTTCTAAGGAGAAAGACCATGGAGAGAGAGAGACCTGAAAGACCAGAGGGAGCTGTCACTTTTCCCCCAT
ACCTGCAGTCTGACATACCCGAGGGGGTGATAAGAGTTTATGCACCATTGCATTCAAAAGTCTCTATGGCAATTCAACT
CAACAGCCAAACAAAAGCCAAAGACATCCTGGCTCGATTCCACTGTGAAAACAGCCGTGGATTGTCACAGAATGTGAGA
AGCCAGATCCAAAGTTTACATGAAGTTGGAGGAAATATAGGTCAGCACTGTTTGGATCCAGATGCATACATGTTAGATG
TTTACCGTGCAAATCCTCAGGCAGAATGGGTGATAAAACCAAAAGCAAGCTGAAGCACAAGGCGGCAGCATACTGGACA
AAGGCCAAATGAACAACTGTGATGCCTGACATTTGAAGAAGCTCTCGCCTCTTGCCACTGATGAAAACAAAATGGTAGC
TACCTACAGGATATCATTCCTTTCTACCATACTGTCCAACAGATGTTCATCATGTGCTACTTTTGGCATTAAGAATTAT
CACTCCAGTTTCTGGACCATTTGAATACCGCACATCAGTTATGCTTTCCTATGGATTGTGCTTGTGCTAGAGTTGGCCC
AGGAGTTGAGGAGGACAGACCAAGGTACGGAGGCACAGAAAATAGCCCATCATATATGGAGTTCTTTGTTTCCTGACCT
GGCATTGGAACATGGATTCTGCAGGAGGAAATAATCCAGTGGCATCCAAGGATGCATGAAACACTACCGACCACAACGT
AACACAGAGGCATCACAGAGACATTCAAGGAGAAGGTATCTGTCAAGCACAAAACAGAGGATCTCAACCAGCAGCAGTG
CCAAGAAGGAGCCATGTGACAAAATCAAACATTTCTGCCAAAAGTAAACCTGTGCAGAGTGTGTTACTGCAATATTTAT
ATCTCTCAGTCACTCCTCATGAGTATTTGGTGCTGGGGAAGGGAGGGAGGGAGGCAAGGGGAAGAACTACTGTGTAGAC
AGCTACACTGCTTTATGTATGTACCACTGTATATATTACTATCAGTCTTCTGAAACCGTCTGTCTGGATCTCGTTACTG
TGTGCATTTGTAGCACCACAAACCATTTCCTCCGTCCTTCCCTGTCTCACACACAAGCTTCATGACATGAATGGTAGGT
GAGAAGACATATTTTCTGGCTCCATCTTTTACTTTATATTCTCAGATTTAAGTCTGTGTAATGCCACACTATGAGTTAT
GTGTTAATGGTGCCACTTACGGACATCATGTTTTTCATTAAATGTTATAGTTTCTTAATTTGTAAACTAATTATTTTTC
TTTTATTTTAGCTTCAGTATGTAGGCAGTTTTTATACTATTCACCTGCATTGAGAAGAAATATCTTCACCCAGATCTTG
TATGGCATGGCACAGAGAAAAAGCTTCCAATGAGAAGAGGGGTTTAATACTCTTATTTAGCTTTTTCACAACGGGGACC
TTAAGACCACAGCCAAACCAGGCCCAGTTGTGCTAGGTTTTCTACAAATACATAGTAAACTGCAGCTACTTTTGCTGGT
TGCGTGCAGTCTGTGAAAACATGTAGGGTGACAAGAGAACAGTGGGTTCTAACTGCATTGACAGTATAGAGTAGGAAAT
ATAAGGCAGGATGTCTAGTTGGCAGCCAATCACTAGGGTGAGCACCATTCTTCACCCAACCATCTGGTTCTGGGCTATT
CTTTATGTAAATAAATAATGTGAAGTAAATAATGTTTGTTGAGTAAGGAATACACAGGTCTCTGTAAAACAGCAAATAT
TTTTTCATCTTTGTCTTATCAAAAGAATGGGAACACCTTCAAACACACTGCAGTGTTACCATCATCACACAGGTGTGTT
GCACAGTGAATTCACCCACTGTGGTCAGCTAGTACTGTTCATTATCTGGACACACAGATGAGCCTGAAGCCGATGCTTC
AGGTACCAACTAGCAATGTAAAAGCCTTCTGAACCAAGTCTTCTAGGTAAACATAGAGTATACTGTACTATAGAGAAAC
CCTGTAGGTTGTGACAAGCTTCTGAAGCTTCATGATGATGATGATTTTCACATTTGAGAAACCCTAGTTCCGGTTCAAA
GCAAATTGGGATCTGCACTCGTTAATTTTCTTTGTTCGTGTTCAGTGAAAGAAATCACCTTCTCATCTGCACTCTTACC
AGCAACAACATCTACAAAGGGCAGATCCTGCCTTTCTGTTTTTCCTTCTTTAGATAAAATACAAACTTTAGCAGTGTTG
TTGGGTTTTTTGTCTACTTTAAAATGTGTATAATTTTTAACTTCCTGTTGTTTTCTTTTTCTTTATCATAACACTAATG
GGTGCATAGTTGCAGCCAGGCTAAGTCTAGGACAGTTTTGTTATAAAATGCACTACTTATTTTGACAACTATTTATTTT
ACGTGTAAGAGGGAGAGAGAGTAAAACTGTGGTTTGCTCATAGGCCTAGTTATTAATGTTTTGTCATGTGCTTTTTTCC
TGATTCCAGTTAGTTCCCTCTGTGACCGTGGACAATCCTTTCTGCCATGCTGCCCTCCTTATAAAGGTAATATGAGAAT
TAGTTGGAGTCAAATTCTGCTCTCAGACACAGCCAAACAGCTTCACTAACAGAGCAAGAATTATAAATATCCATCTAGG
AAGGACAAACTAAGTAAAGGGATTTTATATGGAAAGTGCTTTGAAAACAAAGAGCATAACATAAATGCTAAGCACCATT
GTATTTATAACCAACAAAAAAGCTTTTATGACTATATGGAAAGTCTGAAGATTAGCTAAAGAATTTGAAATATCATGGC
AAATAAGGCAACTCTTTCTATAGTACCACCTTCAGACAAACACACTGACTTTCATCATCTTCTCACTCAGACTGTGTTC
TCAGGTCTGTACACAGGAAGGAAAAGTAGAGTACTTGTGCATTCAGGACCCTGAAATGAGGACTTCATCAAAAAATGTA
TCTTAAATATCATTGTTCTCTGCACTGAATACAAGGGGTTATTAGAAGACTTTCACCTTTTACCACTTCGCCACTTAGA
AAAGAAAAATCTGAGGGAATGAAATCTGTTCTGTGAACCCTTATTTCATACTAAGGTTGCCCATAACTTTCTAAGACGT
GCGCATTAGTAAATGACCTCGACTTTCCAAACAGTACCCCAAGTACTATAGTATGGCCAAACACCTGCTGTCACTGAAA
CAGAATGGCACAATACTTTTTTGATATGAATGAACCTAATGATCCATGTGTACTGCAGTTAATATTGTTAAACATTAAG
TTGTGTCGTGTTGGTGTGGTACACTAACTTGAACTCATATGCAGCAAAGCAAACAATCTCACCAGTATTTTTTAATGCA
AAGTTTCAACTTTAGGCCTTAGAATTCAAGATGCTGACGGGGAGCCTGGAATTTTGCTCCTCCTAGCAGTAATTCAATT
AAAAACAAAGATGTGGTAATATTGTCACCTAAAAAAGAGCAATGTATGTGAAAGCTATTAGCCAGAATGTGGCAGCAAG
CAGGAAGAAACTTGTTCAACAAATTCCAAAGATGCCTCAAACATCGATATTCTCCAACTAATATATTCCATGGTTCTAG
AAAGACAGCATTTCACTTGTCCACACATACAGAATGCTGCAAGAAATAGGTATTGGAAGCAAACTGGAATGCTCTCACC
TGTTCATACAGCTAAGGTCATTATAACGTGTGCATGTGTGCAAATGTGTCTGCATCTGCATCTAATAAAAACTACCTCA
CTTCCCATTTTCCAGGAACAATATTTTGGCTTAGAGGTTTAATATTCCAAAGCTTTCTATTAGTAATTATACCTCTGTA
TTAGTCTTTTACATAGATAAAATATTTCTTGCTGTAGGGGACAGGACTTGGAAATAACCTCTATATATTAAAAAGCATA
TTCGAGGGTAGGGACAAAACTATCCAAACCCTGCTGCCTCACTGACTGCTTGTAATGTGAACCTTATCAGACCACATCT
TGGGGTTAAAAGACAACAAACACAAACAGTGTTTCAGTTTTTATTTTTCAATGGCTTTCCATTAATGTCTGTCTTCTCT
GGAAAATAATACAATGCCACTAAGCAAAGCAAAATGTCTGCATGTACATTTTCCTTACGCTCCTTTTTATAATGTTAAG
TGTTTTGTTGATGTAAGCCCACATATTAGTGTATTCTGTACAGCAGAATGTGTCCATTGTATTTGTATTCATGTCAAAA
ATAAAAACAGTACCAACAAAAAAATCTC
CitationRoy P, Kumar B, Shende A, Singh A, Meena A, Ghosal R, Ranganathan M, Bandyopadhyay A. A Genome-Wide Screen Indicates Correlation between Differentiation and Expression of Metabolism Related Genes. PLoS One. 2013 May 22;8(5):e63670
CopyrightThis is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
CommentsAs insufficient information is provided in publication to verify exact sequence used to synthesize probe, the sequence below was obtained from NCBI XM_004939751.1
StageImage (click image to view full size)Location (click to highlight)Comments (click to highlight)
25-28
stage 28
stage 28
stage 28
stage 28
Leg Mesenchyme
Unlabeled
 
 Data from NCBI Unigene EST Profile
Unigene ID: Gga.49221

Mouse

Emage
EurexpressMGI:2147003
MGI GXDMGI:2147003

Frog

Xenbase1013084

Fruit Fly

BDGP

Zebra Finch

ZEBrA

Zebrafish

ZFINZDB-GENE-041114-147
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