KEGG   Coturnix japonica (Japanese quail): 107309024
Entry
107309024         CDS       T04297                                 
Symbol
ITGA8
Name
(RefSeq) integrin alpha-8
  KO
K06584  integrin alpha 8
Organism
cjo  Coturnix japonica (Japanese quail)
Pathway
cjo04510  Focal adhesion
cjo04512  ECM-receptor interaction
cjo04514  Cell adhesion molecules
cjo04810  Regulation of actin cytoskeleton
cjo04820  Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:cjo00001]
 09130 Environmental Information Processing
  09133 Signaling molecules and interaction
   04512 ECM-receptor interaction
    107309024 (ITGA8)
   04514 Cell adhesion molecules
    107309024 (ITGA8)
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04510 Focal adhesion
    107309024 (ITGA8)
  09142 Cell motility
   04820 Cytoskeleton in muscle cells
    107309024 (ITGA8)
   04810 Regulation of actin cytoskeleton
    107309024 (ITGA8)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04515 Cell adhesion molecules [BR:cjo04515]
    107309024 (ITGA8)
Cell adhesion molecules [BR:cjo04515]
 Integrins
  Integrin alpha subunits
   107309024 (ITGA8)
SSDB
Motif
Pfam: Integrin_A_Ig_3 Integrin_A_Ig_1 Integrin_A_Ig_2 FG-GAP FG-GAP_3 Integrin_alpha ITGAX-like_Ig_3 LYRIC
Other DBs
NCBI-GeneID: 107309024
NCBI-ProteinID: XP_015708912
UniProt: A0A8C2T053
LinkDB
Position
2:18509523..18595652
AA seq 1045 aa
MPRRQPPLCPLLLLSALLCAPASAFNLDEEKLTVYSGPPGSYFGYSVDFYIPEPSTVSVL
VGAPRANTTQPDIVEGGAVYHCGWPAARCRQIPFDNTNNRKIKVNGTREPIEFKTNQWFG
ATVKAHKEKVVACAPLYHWRTLKDSPEKDPVGTCYVAIQNFSAYAEYSPCRNSNADPEGQ
GFCQAGFSLDFYKNGDLIVGGPGSFYWQGQVITASIADIIANYSFKDILRKLAREKQTGV
APPTYDDNYMGYSVAAGEFTGDSEEELVAGVPRGAQNFGYVSIINSSDLTFIQNFTGEQM
ASYFGYTVAVSDVNNDGLDDILVGAPLFMEREFESKPKEVGQVYLYLQESAFLFRDPQIL
TGTEVFGRFGSAITHLGDLNQDGYNDIAIGAPFAGEDRRGKVLIYNGYSNGLKTDPSQVL
NGAWASQSMPSGFGFTLRGDSDVDKNDYPDLIVGAFGAGKAVVYRARPVVTVNALLILNP
MIVNPDNKTCQPLGSQLLVACFTVRVCAAFEGQSISDDIVLKGELQLDSLKQKGAVKRTL
FFDYHQSHHYFSIVMERQKKLYCQDFLVYLRDETEFRDKLSPININFNYSLDESHFKDSL
MVKPILNYYQRSSVAEQAYILVDCGEDNLCIPDLHLSVLPDKDQLIIGEENCVVLIINPR
NDGEGAYEAELHIKIPPEADYTGVERNNKALRVLSCDYKMENETRMVVCDLGNPMVAGAN
FSTGIRFSVQHFENSDFSINFELQIKSSNKINSTSNLVNLHINITAAAQVQVRGVSHPPQ
IVLPLHNWEPKDEPTKEEEIGPLVEHIYELHNIGPSAINNTVLHVGWPVSSREEFLLYIL
HIQTHGPLHCQTSSPINVMQINFAVPQDTPELAAFLYNSTITHYIRRREVAVAEPYRRNS
AKILNCTNVKCILISCNVGQLERGKSAALKIRSRLWAETFLQRKNDPYTLSSNVSFEVKN
MPYKVQPAKLPEGSIAIRTSVIWSTPNVSFVIPLWVIILAIMLGLLVLAVLTLALWKCGF
FDRARPPQDDMADREQLTNNKTTDA
NT seq 3138 nt   +upstreamnt  +downstreamnt
atgccgcgccggcagccaccgctgtgcccgctgctcctgctgtcagcgctgctctgcgcg
ccggcatcggccttcaacctggacgaggagaagctgacggtgtacagcgggccgcccggc
agctacttcgggtactcggtggatttctacatccccgagcccagcacggtcagcgtcctg
gtgggagctccccgagccaacaccacgcagccggacatcgtggaaggaggagcggtgtac
cactgcggctggccggccgcgcgctgcaggcagatccccttcgataacaccaacaacagg
aaaattaaagtcaatggcaccagggaaccaattgaatttaagacaaatcagtggtttggg
gcaacagtcaaagctcataaagaaaaagttgtggcttgtgctcccttatatcattggagg
actcttaaagacagcccagagaaggaccccgttggtacctgctacgtagcaattcagaac
ttcagtgcctatgctgaatactcaccttgtcgcaacagcaatgcagatcctgaaggacaa
ggcttttgtcaagcaggtttcagcttagatttttacaagaatggagacctcatagtaggc
gggcctggtagtttttattggcaaggtcaggtaatcactgcaagcattgcggatatcatt
gcaaattattccttcaaggatattctgaggaaactggcacgagagaagcaaacaggagtt
gcaccacccacatatgatgacaactatatgggatactcagtagctgcaggggaatttact
ggagattctgaagaagagctggttgctggagtcccaaggggtgcacagaattttggttac
gtctcaatcattaattcttcagacttgacctttatccagaatttcactggtgaacagatg
gcgtcttattttgggtacactgttgcagtatctgatgttaacaatgatggtttagatgat
atcttagttggggcccctctgtttatggaacgagaattcgagagcaagcctaaagaagtt
gggcaagtctatctctacctgcaggaaagtgctttcctcttccgagatccacaaattctg
acaggcactgaagtgttcggtagatttggcagtgcaatcactcaccttggagatctcaat
caagatggatataatgacattgccattggtgcaccatttgcaggtgaagacagaagaggt
aaagtgctcatttacaatggatacagtaatgggttaaaaactgacccttcccaagttctc
aacggagcctgggcctcacagtccatgccttcgggatttggctttactttaagaggagac
tcagatgtagacaagaatgattacccagatttaattgtaggtgcatttggagctggaaaa
gcagttgtttacagagccagacctgttgtgactgtgaatgctctgctcattttgaacccc
atgattgtgaatccagacaacaagacttgccagccccttggatctcagcttttggtggcc
tgttttactgtaagagtctgtgcagcatttgaaggccaaagtatttcagatgatatagtg
ctgaaaggtgaattgcaattagattcattgaaacagaaaggagctgttaaaaggactctc
ttctttgattatcatcagtcacatcattatttctccatcgtgatggaaagacagaagaag
ctctattgccaggactttcttgtttatctcagagatgaaacagaatttagagataaatta
tctcccatcaatataaacttcaattatagcttggatgaatcccatttcaaagacagcttg
atggtgaagccaatactgaattactaccagagaagctcagtagcagaacaggcttacatt
ctggtagactgtggggaggacaacttgtgcattcctgacttgcacctttctgttttgcca
gataaagatcagctaataattggagaagaaaactgtgtcgtgctcataataaatccaagg
aatgatggggaaggagcctatgaagctgagctgcatataaagattccacctgaagcagat
tacactggggttgaacgcaacaacaaggcactgcgtgtgttgagctgtgattacaagatg
gaaaatgaaactagaatggtggtttgtgatcttgggaaccccatggtggctggcgcaaat
ttctctacaggtatccggttttctgttcagcattttgagaattcagatttcagcatcaat
tttgagctgcaaataaaaagttctaacaagattaattcaaccagcaatttagttaacctt
catatcaacatcactgctgcggctcaggtgcaggtccgaggagtatctcacccaccacaa
atagttctgcctcttcacaactgggaacccaaagatgaacctacaaaagaagaagaaatt
ggtccattagttgaacacatctatgagcttcacaatataggaccaagtgccatcaacaat
acagttctccatgtcggttggcctgtgtccagtcgagaagagtttcttctttacatcctg
catattcagacacatggaccattgcactgtcaaacaagctctcctattaacgtaatgcaa
atcaattttgctgttccacaggacactcctgaacttgctgcttttttatataattccaca
attactcattacatcaggagaagggaagtagctgtggcagaaccttacaggaggaactct
gcaaaaatactgaactgtacaaatgtgaagtgtatcctaatttcctgcaatgtgggacag
ctggaaagagggaagagtgcagcgctgaaaatcaggtctcgactatgggctgaaactttc
ctgcagaggaaaaatgatccatatactctttcttccaatgtgtccttcgaagttaagaac
atgccctataaagtgcagccagcgaagctccccgagggaagcatagcaatcagaacatca
gtcatttggtccactccaaatgtctcctttgtcatccctttgtgggttataatactagca
ataatgcttggtctactggtactagcggtgttgacccttgctttatggaagtgcggcttc
tttgacagagctaggcctcctcaagatgacatggcagacagagaacaactgacaaataac
aagactactgatgcatag

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