GEISHA - A Chicken Embryo Gene Expression Database
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MAFB
MAF bZIP transcription factor B

Gene
Official SymbolMAFB
Official Full NameMAF bZIP transcription factor B
CGNC ID50934
also known astranscription factor MafB|maf-B|v-maf avian musculoaponeurotic fibrosarcoma oncogene homolog B, transcription factor MAFB, MAFB, v-maf musculoaponeurotic fibrosarcoma oncogene homolog B
gene typeprotein-coding
Genomic Map
 Ensembl ID not known
NCBI
UCSC
Gallus-Browse
Sequence Information
Genomic
RNANM_001030852
PolypeptideNP_001026023
Sequence Clusters/ESTsUnigene
Gene Expression
In Situ HybridizationGEISHA
EST ProfileGga.46475
Orthology
Entrez GeneEnsembl GeneGenetic PhenotypesMOD
Fruit Fly
Human9935ENSG00000204103MIM:608968
Mouse16658ENSMUSG00000074622All phenotypic alleles (4):Chemically induced(1) Radiation induced(1) Targeted, knock-out(1) Targeted, other(1) MGI:104555
Xenopus595086, 3991566085858
Zebrafish30210, 114463ENSDARG00000017121, ENSDARG00000070542ZDB-GENE-980526-515, ZDB-GENE-010605-4ZFIN:ZDB-GENE-980526-515, ZFIN:ZDB-GENE-010605-4
Gene Ontology
Molecular Functionsequence-specific DNA binding, sequence-specific DNA binding transcription factor activity
Biological Processtranscription, DNA-templated
Cellular Componentnucleus
Links to other databases
Entrez Gene419173
Ensembl Gene
KEGGgga:419173

Entry 1

GEISHA IdMAFB.Lecoin.2004Data SourcePublication
Complete cDNA Template Probeshow
GGAGGCGGCAGCTACATCGGAGACCTGGGTTTTCTCGTCCCCCCTCTCCTTTTTTTTTTTTTTTTTTTTTTTTTCTTCC
CTCCCTTCCTCCTTCCCCTCCTTCCTCCCCCTCTTCCCTCCCCTTCCCTTTGCGCGGCGAGAGCCAGAGAAAACTCCCG
TGCAAAGCCCGGTCGCCGCCGCACAGCCGGTGCGCTCCCGGAGCGGAAAGTTGCGGCACGCTCCGGCGCTCCGCTACCG
CGGGGAGAAGGCTCAGGACTTACAAAACCCACCCGGAGGCGCGGGCTTAGACCTTCTGCACCGTTCTTCTCGCTTCCCG
CACGGCCCCGAAGGCAGCATCTTTGTTTTGTTTTGCTTTTGCCCTCCTGCCGCTGCTCCTTTCTCCTCTCCGTGGGCGT
CTGAGTGCCCGGAGCCGCCGGCGGTGCGCTGCCAGCGCTGATACCCAAAGCCGGGAGGCGTCGGGCGGCCCCGGGAGCC
GGCTCGTCCCTGGCTTTGTTGCTGCGGTCCGAAGAAGCCCCAGAAGCCGGGAGAAGGAGGAGGCGGCGGTGGTGGAGGG
GGGAGCAGAGGAAAGGAAGCGAGAGGCGAAGCGGAGGCAAAGTTTCTTTGGAATAGGGAGCGCGGCCAGCCCTCTGCCA
GGCTGCGCGCTGGGGCCAGGTCTCCAGCCCCCTCCGCCCGGAGAGGAGCCCGCAAGACAGCGATGGCCGGAGAGCTGAG
CATCGGAGCCGAGCTGCCCACCAGCCCCCTGGCCATGGAGTACGTCAACGACTTCGACCTGATGAAGTTCGACGTGAAG
AAGGAGCCTCTGGGCAGGAACGACCGCTCGGGCAGGCACTGCACCCGCCTGCAGCCCGCCGGCTCCGTGTCCTCCACCC
CCATCAGCACCCCCTGCAGCTCCGTGCCCTCCTCGCCCAGCTTCAGCCCCACCGAACAGAAGACCCACTTGGAGGACCT
GTACTGGATGGCCAACAGCTACCAGCAGATGAACCCCGAGGCGCTGAACCTCACCCCTGAGGATGCCGTCGAAGCCCTC
ATCGGCTCCCACCAAGTGTCCCAGCAGCTGCAAGGCTTCGAGAGCTTCCGGGCCCATCACCACCACCATCACCACCACC
ACCAGCACCACCACCAGTACCCCGCCGTCACCCACGAAGACCTGGCAGGCAGCGGGCACCCTCACCACCACCACCACCA
CCACCATCAGGCCTCTCCCACCCCTTCCACCTCGTCCAGCTCCTCGCAGCAGCTCCAGACCTCGCACCAGCAGCATCCC
CCCTCCAGCAGCGTGGAGGACCGGTTCTCGGATGACCAGCTGGTCTCCATGTCTGTGAGGGAGCTCAACAGGCACCTCC
GAGGCTTCACCAAAGATGAGGTGATCCGCCTCAAGCAGAAGAGGAGGACCTTGAAGAACAGGGGCTACGCTCAGTCCTG
CAGGTATAAACGCGTCCAGCAGAAGCACCACCTGGAGAACGAAAAGACCCAGCTCATTCAGCAGGTGGAACAGCTCAAG
CAAGAAGTGACCCGGCTGGCCAGAGAGCGAGACGCCTACAAGCTCAAGTGTGAGAAACTTGCCAGCAATGGCTTCAGAG
AGGCCGGCTCCACCAGTGACAACCCGTCTTCCCCCGAGTTCTTCATGTGAGTGCTTAATAAAAGTAATTAAAAAAAAAA
AAACCCAACAAAAAAAAAAGAACCCAAGAAAAAGAACCCCACCCGACCCCTGACCCCCATCACCTCCCCCCCCCCCACC
CCACTCCCATCCTCCTCTGACATCTTCATCCATCTGTCTGCTTGACTAGAGGGAAAGAAGGAGAGAAACATAGAGACTT
GATTTTCTTTTTTGCAGCATCCAGTCTTCTAGATTAGCTGTGGGAAAAGTAGGCTGGGGGTGGGGACGGGAGAGGTAAA
GTGCAACTTTTCGACTTTGGTTTGCGAGTTAGAGAGAGGGACGGAGGCGCGGGAGAAAAGGACAAGTGAAGCGTTTTAT
AGATCGCTTGCTTGCAGAACGAGATGGACTTTAAGAGAATAATGACAGAAAAGGACAATGAACGAGCCATCTATAACAC
ACTGCCTGCTTGGGAGGAGAGAGGACACAGACAGCACCATCTCATGCACAATTTACCCACTTGGAGGAAAAAAAAAAGA
GAGAATAATAAAAAAAAGGACAATATATGCAAACTCTTCATATATTGCCTGCTTTGAGAAAAAAGTTACAGGACTCAGA
CGGGACATTCAATCTAAGAAAGGAAAGAAAGAAAGGAGGAAAAAAAAAAAACTCATCAGTTTTATTGCCTGCTTGATTA
TATAGAAAAATACGAAAATCTGCATTAAAAATATTAATCCTGCATGCTGGACATGTATGGTAATAATTTCTATTTTGTA
CCATTTTCTTGTTTAACTTTAGCATGTTGATCATCGATCATAGATTTCTGTTGTTTTGTTTCATCGGTAAGGAAAGCAT
CACGAGTTATCCCAAGTTTTTACTGCTTGTGCAGTTTTGTTCGTTGGTTTTTGCTCTCTTATTTTCTTTTATGGTCGTC
GGCTTGTAAATATCTGCTACTTCAAACCGCACAGGAAAAGAAAACAGAACATAAAGCAAAGTAACATTTCAGCAGGCTG
GTTGTACGGTTTGGTTGGTATTAAAGAGATACTTAAGGAAAAAAAAAAAGAAGTTA
CitationLecoin L, Sii-Felice K, Pouponnot C, Eychène A, Felder-Schmittbuhl MP. Comparison of maf gene expression patterns during chick embryo development. Gene Expr Patterns. 2004 Jan;4(1):35-46.
CopyrightReprinted with permission from Elsevier. Copyright © 2003 Elsevier B.V. All rights reserved.
CommentsInsufficient information provided in publication to verify exact sequence used to synthesize probe. Sequence below was obtained from NCBI (NM_001030852).
StageImage (click image to view full size)Location (click to highlight)Comments (click to highlight)
4-6
stage 5
stage 5
Area Opaca
Area Pellucida
Early Endoderm
Area Pellucida/Area Opaca Junction
Figure 1 compares maf genes during gastrulation.
7-12
stage 11
stage 11
stage 12
stage 12
Hindbrain
Nephric Ducts
Neural Crest
Rhombomeres
Figure 3 compares the differential expression of maf genes in the head at HH11-12.
Roof Plate
Wolffian duct
also labeled with MafA
r5
r6
13-18
stage 15
stage 15
stage 17
Ear/Otic Placcode
Forebrain
Hindbrain
Lens
Rhombomeres
Figure 7 compares expression of maf genes in the trunk of E2 embryos.
Roof Plate
r5
r6
19-24
stage 19
stage 22
stage 22
stage 24
stage 24
stage 24
Forebrain
Hindbrain
Leg
Leg AER
Leg Mesenchyme
Lens
Spinal Cord
Wing AER
Wing Mesenchyme
Anterior and Posterior Necrotic Zones
Figure 5 compares expression of maf genes in the trunk of E4 embryos.
Figure 6 compares maf genes during early steps of eye development from HH11 to HH24.
Roof Plate
Ventral Horns
25-30
stage 26
stage 26
stage 26
stage 26
stage 28
stage 30
Leg AER
Leg Mesenchyme
Midgut
Anterior and Posterior Necrotic Zones
Figure 4 compares maf genes in the head of HH15 to HH26 embryos.
Figure 9 compares expression of maf genes along the digestive tract in HH17 to HH26 chicken embryos.
Ileo-caecal region
Interdigital Plates
31-34
stage 32
stage 34
Leg AER
Leg Mesenchyme
Figure 8 compares maf genes in the developing limb bud in HH22 to HH34 chicken embryos.
Interdigital Plates

Entry 2

GEISHA IdMAFB.Chambers.2006Data SourcePublication
Complete cDNA Template Probeshow
GGAGGCGGCAGCTACATCGGAGACCTGGGTTTTCTCGTCCCCCCTCTCCTTTTTTTTTTTTTTTTTTTTTTTTTCTTCC
CTCCCTTCCTCCTTCCCCTCCTTCCTCCCCCTCTTCCCTCCCCTTCCCTTTGCGCGGCGAGAGCCAGAGAAAACTCCCG
TGCAAAGCCCGGTCGCCGCCGCACAGCCGGTGCGCTCCCGGAGCGGAAAGTTGCGGCACGCTCCGGCGCTCCGCTACCG
CGGGGAGAAGGCTCAGGACTTACAAAACCCACCCGGAGGCGCGGGCTTAGACCTTCTGCACCGTTCTTCTCGCTTCCCG
CACGGCCCCGAAGGCAGCATCTTTGTTTTGTTTTGCTTTTGCCCTCCTGCCGCTGCTCCTTTCTCCTCTCCGTGGGCGT
CTGAGTGCCCGGAGCCGCCGGCGGTGCGCTGCCAGCGCTGATACCCAAAGCCGGGAGGCGTCGGGCGGCCCCGGGAGCC
GGCTCGTCCCTGGCTTTGTTGCTGCGGTCCGAAGAAGCCCCAGAAGCCGGGAGAAGGAGGAGGCGGCGGTGGTGGAGGG
GGGAGCAGAGGAAAGGAAGCGAGAGGCGAAGCGGAGGCAAAGTTTCTTTGGAATAGGGAGCGCGGCCAGCCCTCTGCCA
GGCTGCGCGCTGGGGCCAGGTCTCCAGCCCCCTCCGCCCGGAGAGGAGCCCGCAAGACAGCGATGGCCGGAGAGCTGAG
CATCGGAGCCGAGCTGCCCACCAGCCCCCTGGCCATGGAGTACGTCAACGACTTCGACCTGATGAAGTTCGACGTGAAG
AAGGAGCCTCTGGGCAGGAACGACCGCTCGGGCAGGCACTGCACCCGCCTGCAGCCCGCCGGCTCCGTGTCCTCCACCC
CCATCAGCACCCCCTGCAGCTCCGTGCCCTCCTCGCCCAGCTTCAGCCCCACCGAACAGAAGACCCACTTGGAGGACCT
GTACTGGATGGCCAACAGCTACCAGCAGATGAACCCCGAGGCGCTGAACCTCACCCCTGAGGATGCCGTCGAAGCCCTC
ATCGGCTCCCACCAAGTGTCCCAGCAGCTGCAAGGCTTCGAGAGCTTCCGGGCCCATCACCACCACCATCACCACCACC
ACCAGCACCACCACCAGTACCCCGCCGTCACCCACGAAGACCTGGCAGGCAGCGGGCACCCTCACCACCACCACCACCA
CCACCATCAGGCCTCTCCCACCCCTTCCACCTCGTCCAGCTCCTCGCAGCAGCTCCAGACCTCGCACCAGCAGCATCCC
CCCTCCAGCAGCGTGGAGGACCGGTTCTCGGATGACCAGCTGGTCTCCATGTCTGTGAGGGAGCTCAACAGGCACCTCC
GAGGCTTCACCAAAGATGAGGTGATCCGCCTCAAGCAGAAGAGGAGGACCTTGAAGAACAGGGGCTACGCTCAGTCCTG
CAGGTATAAACGCGTCCAGCAGAAGCACCACCTGGAGAACGAAAAGACCCAGCTCATTCAGCAGGTGGAACAGCTCAAG
CAAGAAGTGACCCGGCTGGCCAGAGAGCGAGACGCCTACAAGCTCAAGTGTGAGAAACTTGCCAGCAATGGCTTCAGAG
AGGCCGGCTCCACCAGTGACAACCCGTCTTCCCCCGAGTTCTTCATGTGAGTGCTTAATAAAAGTAATTAAAAAAAAAA
AAACCCAACAAAAAAAAAAGAACCCAAGAAAAAGAACCCCACCCGACCCCTGACCCCCATCACCTCCCCCCCCCCCACC
CCACTCCCATCCTCCTCTGACATCTTCATCCATCTGTCTGCTTGACTAGAGGGAAAGAAGGAGAGAAACATAGAGACTT
GATTTTCTTTTTTGCAGCATCCAGTCTTCTAGATTAGCTGTGGGAAAAGTAGGCTGGGGGTGGGGACGGGAGAGGTAAA
GTGCAACTTTTCGACTTTGGTTTGCGAGTTAGAGAGAGGGACGGAGGCGCGGGAGAAAAGGACAAGTGAAGCGTTTTAT
AGATCGCTTGCTTGCAGAACGAGATGGACTTTAAGAGAATAATGACAGAAAAGGACAATGAACGAGCCATCTATAACAC
ACTGCCTGCTTGGGAGGAGAGAGGACACAGACAGCACCATCTCATGCACAATTTACCCACTTGGAGGAAAAAAAAAAGA
GAGAATAATAAAAAAAAGGACAATATATGCAAACTCTTCATATATTGCCTGCTTTGAGAAAAAAGTTACAGGACTCAGA
CGGGACATTCAATCTAAGAAAGGAAAGAAAGAAAGGAGGAAAAAAAAAAAACTCATCAGTTTTATTGCCTGCTTGATTA
TATAGAAAAATACGAAAATCTGCATTAAAAATATTAATCCTGCATGCTGGACATGTATGGTAATAATTTCTATTTTGTA
CCATTTTCTTGTTTAACTTTAGCATGTTGATCATCGATCATAGATTTCTGTTGTTTTGTTTCATCGGTAAGGAAAGCAT
CACGAGTTATCCCAAGTTTTTACTGCTTGTGCAGTTTTGTTCGTTGGTTTTTGCTCTCTTATTTTCTTTTATGGTCGTC
GGCTTGTAAATATCTGCTACTTCAAACCGCACAGGAAAAGAAAACAGAACATAAAGCAAAGTAACATTTCAGCAGGCTG
GTTGTACGGTTTGGTTGGTATTAAAGAGATACTTAAGGAAAAAAAAAAAGAAGTTA
CitationChambers, D, Mason, I, A high throughput messenger RNA differential display screen identifies discrete domains of gene expression and novel patterning processes along the developing neural tube. BMC Dev Biol. 2006; 6: 9. Published online 2006 February 24.
CopyrightCopyright © 2006 Chambers and Mason; licensee BioMed Central Ltd.This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
CommentsAs insufficient information is provided in publication to verify exact sequence used to synthesize probe, the sequence below was obtained from NCBI (acc # NM_001030852.1)
StageImage (click image to view full size)Location (click to highlight)Comments (click to highlight)
7-10
stage 10
stage 10
Midbrain
Rhombomeres
 

Entry 3

GEISHA IdMAFB.Garcia-Dominguez.2006Data SourcePublication
Complete cDNA Template Probeshow
GGAGGCGGCAGCTACATCGGAGACCTGGGTTTTCTCGTCCCCCCTCTCCTTTTTTTTTTTTTTTTTTTTTTTTTCTTCC
CTCCCTTCCTCCTTCCCCTCCTTCCTCCCCCTCTTCCCTCCCCTTCCCTTTGCGCGGCGAGAGCCAGAGAAAACTCCCG
TGCAAAGCCCGGTCGCCGCCGCACAGCCGGTGCGCTCCCGGAGCGGAAAGTTGCGGCACGCTCCGGCGCTCCGCTACCG
CGGGGAGAAGGCTCAGGACTTACAAAACCCACCCGGAGGCGCGGGCTTAGACCTTCTGCACCGTTCTTCTCGCTTCCCG
CACGGCCCCGAAGGCAGCATCTTTGTTTTGTTTTGCTTTTGCCCTCCTGCCGCTGCTCCTTTCTCCTCTCCGTGGGCGT
CTGAGTGCCCGGAGCCGCCGGCGGTGCGCTGCCAGCGCTGATACCCAAAGCCGGGAGGCGTCGGGCGGCCCCGGGAGCC
GGCTCGTCCCTGGCTTTGTTGCTGCGGTCCGAAGAAGCCCCAGAAGCCGGGAGAAGGAGGAGGCGGCGGTGGTGGAGGG
GGGAGCAGAGGAAAGGAAGCGAGAGGCGAAGCGGAGGCAAAGTTTCTTTGGAATAGGGAGCGCGGCCAGCCCTCTGCCA
GGCTGCGCGCTGGGGCCAGGTCTCCAGCCCCCTCCGCCCGGAGAGGAGCCCGCAAGACAGCGATGGCCGGAGAGCTGAG
CATCGGAGCCGAGCTGCCCACCAGCCCCCTGGCCATGGAGTACGTCAACGACTTCGACCTGATGAAGTTCGACGTGAAG
AAGGAGCCTCTGGGCAGGAACGACCGCTCGGGCAGGCACTGCACCCGCCTGCAGCCCGCCGGCTCCGTGTCCTCCACCC
CCATCAGCACCCCCTGCAGCTCCGTGCCCTCCTCGCCCAGCTTCAGCCCCACCGAACAGAAGACCCACTTGGAGGACCT
GTACTGGATGGCCAACAGCTACCAGCAGATGAACCCCGAGGCGCTGAACCTCACCCCTGAGGATGCCGTCGAAGCCCTC
ATCGGCTCCCACCAAGTGTCCCAGCAGCTGCAAGGCTTCGAGAGCTTCCGGGCCCATCACCACCACCATCACCACCACC
ACCAGCACCACCACCAGTACCCCGCCGTCACCCACGAAGACCTGGCAGGCAGCGGGCACCCTCACCACCACCACCACCA
CCACCATCAGGCCTCTCCCACCCCTTCCACCTCGTCCAGCTCCTCGCAGCAGCTCCAGACCTCGCACCAGCAGCATCCC
CCCTCCAGCAGCGTGGAGGACCGGTTCTCGGATGACCAGCTGGTCTCCATGTCTGTGAGGGAGCTCAACAGGCACCTCC
GAGGCTTCACCAAAGATGAGGTGATCCGCCTCAAGCAGAAGAGGAGGACCTTGAAGAACAGGGGCTACGCTCAGTCCTG
CAGGTATAAACGCGTCCAGCAGAAGCACCACCTGGAGAACGAAAAGACCCAGCTCATTCAGCAGGTGGAACAGCTCAAG
CAAGAAGTGACCCGGCTGGCCAGAGAGCGAGACGCCTACAAGCTCAAGTGTGAGAAACTTGCCAGCAATGGCTTCAGAG
AGGCCGGCTCCACCAGTGACAACCCGTCTTCCCCCGAGTTCTTCATGTGAGTGCTTAATAAAAGTAATTAAAAAAAAAA
AAACCCAACAAAAAAAAAAGAACCCAAGAAAAAGAACCCCACCCGACCCCTGACCCCCATCACCTCCCCCCCCCCCACC
CCACTCCCATCCTCCTCTGACATCTTCATCCATCTGTCTGCTTGACTAGAGGGAAAGAAGGAGAGAAACATAGAGACTT
GATTTTCTTTTTTGCAGCATCCAGTCTTCTAGATTAGCTGTGGGAAAAGTAGGCTGGGGGTGGGGACGGGAGAGGTAAA
GTGCAACTTTTCGACTTTGGTTTGCGAGTTAGAGAGAGGGACGGAGGCGCGGGAGAAAAGGACAAGTGAAGCGTTTTAT
AGATCGCTTGCTTGCAGAACGAGATGGACTTTAAGAGAATAATGACAGAAAAGGACAATGAACGAGCCATCTATAACAC
ACTGCCTGCTTGGGAGGAGAGAGGACACAGACAGCACCATCTCATGCACAATTTACCCACTTGGAGGAAAAAAAAAAGA
GAGAATAATAAAAAAAAGGACAATATATGCAAACTCTTCATATATTGCCTGCTTTGAGAAAAAAGTTACAGGACTCAGA
CGGGACATTCAATCTAAGAAAGGAAAGAAAGAAAGGAGGAAAAAAAAAAAACTCATCAGTTTTATTGCCTGCTTGATTA
TATAGAAAAATACGAAAATCTGCATTAAAAATATTAATCCTGCATGCTGGACATGTATGGTAATAATTTCTATTTTGTA
CCATTTTCTTGTTTAACTTTAGCATGTTGATCATCGATCATAGATTTCTGTTGTTTTGTTTCATCGGTAAGGAAAGCAT
CACGAGTTATCCCAAGTTTTTACTGCTTGTGCAGTTTTGTTCGTTGGTTTTTGCTCTCTTATTTTCTTTTATGGTCGTC
GGCTTGTAAATATCTGCTACTTCAAACCGCACAGGAAAAGAAAACAGAACATAAAGCAAAGTAACATTTCAGCAGGCTG
GTTGTACGGTTTGGTTGGTATTAAAGAGATACTTAAGGAAAAAAAAAAAGAAGTTA
CitationGarcia-Dominguez M, Poquet C, Garel S, Charnay P. PIASxβ acts as an activator of Hoxb1 and is antagonized by Krox20 during hindbrain segmentation. EMBO J. 2006 June 7; 25(11): 2432–2442. Published online 2006 May 4.
CopyrightCopyright © 2006, European Molecular Biology Organization
CommentsAs insufficient information is provided in publication to verify exact sequence used to synthesize probe, the sequence below was obtained from NCBI (acc # NM_001030852.1).
StageImage (click image to view full size)Location (click to highlight)Comments (click to highlight)
7-8
stage 8
stage 8
Rhombomeres
 

Entry 4

GEISHA IdMAFB.Bandyopadhyay.2008Data SourcePublication
Complete cDNA Template Probeshow
GGAGGCGGCAGCTACATCGGAGACCTGGGTTTTCTCGTCCCCCCTCTCCTTTTTTTTTTTTTTTTTTTTTTTTTCTTCC
CTCCCTTCCTCCTTCCCCTCCTTCCTCCCCCTCTTCCCTCCCCTTCCCTTTGCGCGGCGAGAGCCAGAGAAAACTCCCG
TGCAAAGCCCGGTCGCCGCCGCACAGCCGGTGCGCTCCCGGAGCGGAAAGTTGCGGCACGCTCCGGCGCTCCGCTACCG
CGGGGAGAAGGCTCAGGACTTACAAAACCCACCCGGAGGCGCGGGCTTAGACCTTCTGCACCGTTCTTCTCGCTTCCCG
CACGGCCCCGAAGGCAGCATCTTTGTTTTGTTTTGCTTTTGCCCTCCTGCCGCTGCTCCTTTCTCCTCTCCGTGGGCGT
CTGAGTGCCCGGAGCCGCCGGCGGTGCGCTGCCAGCGCTGATACCCAAAGCCGGGAGGCGTCGGGCGGCCCCGGGAGCC
GGCTCGTCCCTGGCTTTGTTGCTGCGGTCCGAAGAAGCCCCAGAAGCCGGGAGAAGGAGGAGGCGGCGGTGGTGGAGGG
GGGAGCAGAGGAAAGGAAGCGAGAGGCGAAGCGGAGGCAAAGTTTCTTTGGAATAGGGAGCGCGGCCAGCCCTCTGCCA
GGCTGCGCGCTGGGGCCAGGTCTCCAGCCCCCTCCGCCCGGAGAGGAGCCCGCAAGACAGCGATGGCCGGAGAGCTGAG
CATCGGAGCCGAGCTGCCCACCAGCCCCCTGGCCATGGAGTACGTCAACGACTTCGACCTGATGAAGTTCGACGTGAAG
AAGGAGCCTCTGGGCAGGAACGACCGCTCGGGCAGGCACTGCACCCGCCTGCAGCCCGCCGGCTCCGTGTCCTCCACCC
CCATCAGCACCCCCTGCAGCTCCGTGCCCTCCTCGCCCAGCTTCAGCCCCACCGAACAGAAGACCCACTTGGAGGACCT
GTACTGGATGGCCAACAGCTACCAGCAGATGAACCCCGAGGCGCTGAACCTCACCCCTGAGGATGCCGTCGAAGCCCTC
ATCGGCTCCCACCAAGTGTCCCAGCAGCTGCAAGGCTTCGAGAGCTTCCGGGCCCATCACCACCACCATCACCACCACC
ACCAGCACCACCACCAGTACCCCGCCGTCACCCACGAAGACCTGGCAGGCAGCGGGCACCCTCACCACCACCACCACCA
CCACCATCAGGCCTCTCCCACCCCTTCCACCTCGTCCAGCTCCTCGCAGCAGCTCCAGACCTCGCACCAGCAGCATCCC
CCCTCCAGCAGCGTGGAGGACCGGTTCTCGGATGACCAGCTGGTCTCCATGTCTGTGAGGGAGCTCAACAGGCACCTCC
GAGGCTTCACCAAAGATGAGGTGATCCGCCTCAAGCAGAAGAGGAGGACCTTGAAGAACAGGGGCTACGCTCAGTCCTG
CAGGTATAAACGCGTCCAGCAGAAGCACCACCTGGAGAACGAAAAGACCCAGCTCATTCAGCAGGTGGAACAGCTCAAG
CAAGAAGTGACCCGGCTGGCCAGAGAGCGAGACGCCTACAAGCTCAAGTGTGAGAAACTTGCCAGCAATGGCTTCAGAG
AGGCCGGCTCCACCAGTGACAACCCGTCTTCCCCCGAGTTCTTCATGTGAGTGCTTAATAAAAGTAATTAAAAAAAAAA
AAACCCAACAAAAAAAAAAGAACCCAAGAAAAAGAACCCCACCCGACCCCTGACCCCCATCACCTCCCCCCCCCCCACC
CCACTCCCATCCTCCTCTGACATCTTCATCCATCTGTCTGCTTGACTAGAGGGAAAGAAGGAGAGAAACATAGAGACTT
GATTTTCTTTTTTGCAGCATCCAGTCTTCTAGATTAGCTGTGGGAAAAGTAGGCTGGGGGTGGGGACGGGAGAGGTAAA
GTGCAACTTTTCGACTTTGGTTTGCGAGTTAGAGAGAGGGACGGAGGCGCGGGAGAAAAGGACAAGTGAAGCGTTTTAT
AGATCGCTTGCTTGCAGAACGAGATGGACTTTAAGAGAATAATGACAGAAAAGGACAATGAACGAGCCATCTATAACAC
ACTGCCTGCTTGGGAGGAGAGAGGACACAGACAGCACCATCTCATGCACAATTTACCCACTTGGAGGAAAAAAAAAAGA
GAGAATAATAAAAAAAAGGACAATATATGCAAACTCTTCATATATTGCCTGCTTTGAGAAAAAAGTTACAGGACTCAGA
CGGGACATTCAATCTAAGAAAGGAAAGAAAGAAAGGAGGAAAAAAAAAAAACTCATCAGTTTTATTGCCTGCTTGATTA
TATAGAAAAATACGAAAATCTGCATTAAAAATATTAATCCTGCATGCTGGACATGTATGGTAATAATTTCTATTTTGTA
CCATTTTCTTGTTTAACTTTAGCATGTTGATCATCGATCATAGATTTCTGTTGTTTTGTTTCATCGGTAAGGAAAGCAT
CACGAGTTATCCCAAGTTTTTACTGCTTGTGCAGTTTTGTTCGTTGGTTTTTGCTCTCTTATTTTCTTTTATGGTCGTC
GGCTTGTAAATATCTGCTACTTCAAACCGCACAGGAAAAGAAAACAGAACATAAAGCAAAGTAACATTTCAGCAGGCTG
GTTGTACGGTTTGGTTGGTATTAAAGAGATACTTAAGGAAAAAAAAAAAGAAGTTA
CitationBandyopadhyay A, Kubilus JK, Crochiere ML, Linsenmayer TF, Tabin CJ. Identification of unique molecular subdomains in the perichondrium and periosteum and their role in regulating gene expression in the underlying chondrocytes. Dev Biol. 2008 Sep 1;321(1):162-74. doi: 10.1016/j.ydbio.2008.06.012. Epub 2008 Jun 16.
CopyrightCopyright © 2013 Elsevier B.V. All rights reserved.
CommentsAs insufficient information is provided in publication to verify exact sequence used to synthesize probe, the sequence below was obtained from NCBI NM_001030852.1
StageImage (click image to view full size)Location (click to highlight)Comments (click to highlight)
31-38
stage 38
stage 38
Leg Bones
Leg Mesenchyme
 
 Data from NCBI Unigene EST Profile
Unigene ID: Gga.46475

Mouse

EmageMGI:104555
EurexpressMGI:104555
MGI GXDMGI:104555

Frog

Xenbase6085858

Fruit Fly

BDGP

Zebra Finch

ZEBrA

Zebrafish

ZFINZDB-GENE-980526-515, ZDB-GENE-010605-4
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