KEGG   Mesitornis unicolor (brown roatelo): 104546987
Entry
104546987         CDS       T08455                                 
Symbol
ITGA8
Name
(RefSeq) integrin alpha-8
  KO
K06584  integrin alpha 8
Organism
mui  Mesitornis unicolor (brown roatelo)
Pathway
mui04510  Focal adhesion
mui04512  ECM-receptor interaction
mui04514  Cell adhesion molecules
mui04810  Regulation of actin cytoskeleton
mui04820  Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:mui00001]
 09130 Environmental Information Processing
  09133 Signaling molecules and interaction
   04512 ECM-receptor interaction
    104546987 (ITGA8)
   04514 Cell adhesion molecules
    104546987 (ITGA8)
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04510 Focal adhesion
    104546987 (ITGA8)
  09142 Cell motility
   04820 Cytoskeleton in muscle cells
    104546987 (ITGA8)
   04810 Regulation of actin cytoskeleton
    104546987 (ITGA8)
 09180 Brite Hierarchies
  09183 Protein families: signaling and cellular processes
   04515 Cell adhesion molecules [BR:mui04515]
    104546987 (ITGA8)
Cell adhesion molecules [BR:mui04515]
 Integrins
  Integrin alpha subunits
   104546987 (ITGA8)
SSDB
Motif
Pfam: Integrin_A_Ig_3 Integrin_A_Ig_1 Integrin_A_Ig_2 FG-GAP FG-GAP_3 Integrin_alpha
Other DBs
NCBI-GeneID: 104546987
NCBI-ProteinID: XP_010190824
LinkDB
Position
Unknown
AA seq 989 aa
VSVLVGAPKANTTQPDIVEGGAVYYCAWPAAQCRQIPFDNTNNRKIKVNGTREPIEFKTN
QWFGATVKAHKEKVVACAPLYHWRTLKDSPEKDPVGTCYVAIQNFSAYAEYSPCRNSNAD
PEGQGFCQAGFSLDFYKNGDLIVGGPGSFYWQGQVITASVADIIANYSFKDILRKLAREK
QTGVAPPSYDDNYMGYSVAAGEFTGDSEQELVAGVPRGAQNFGYVSIINSSDLTFVQNFT
GEQMASYFGYTVAVSDVNNDGLDDILVGAPLFMEREFESNPKEVGQVYLYLQEGAFLFQD
AQVLTGTEVFGRFGSAITHLGDLNQDGYNDIAIGAPFAGEDRRGKVFIYNGYSNGLNANP
SQVLNGAWASQSMPSGFGFTLRGDSDVDKNDYPDLIVGAFGAGKAVVYRARPVVTVNAQL
ILNPMIVNPDNKTCQLPVSQLLVACFTVRVCADFEGQSISDEIVLKGELQLDSLKQKGAV
KRTLFFDYHQSHHYFSILIERQKELHCQDFLVYLRDETEFRDKLSPININLNYSLDESSF
EDSLTVKPILNYYQKSSVTEQAYILVDCGEDNLCIPDLQLSALPDKDQLMIGEENCVMLI
INPRNDGEGAYEAELHIKIPPEADYTGVERNNKALRVLSCDYKMENETRMVVCDLGNPMV
AGSNFSTGIRFSVQHFENADFSINFELQIKSSNKINPTSNLVNLHINISAMAQVQIRGVS
HPPTIILPLHNWEPKDEPTKEEELGPLVEHIYELHNIGPSAINNTVLHVGWPVSSREEFL
LYILHIQTHGPLHCQTNSPINTMQIKFAVPQDTPELAAFLYNSTVSHYIRRRDVAVAEPH
RRNFAKVLNCTNVKCILVSCTVGQLERGKSAALKIRSRLWAQTFLERKNDLYTLSSNVSF
EVKSMPYKVQPAKLPKGSIAIRTSVIWSTPNVSFVIPLWVIILAILLGLLVLAMLTLALW
KCGFFDRARPPQDDMADREHLTNNKTTDA
NT seq 2971 nt   +upstreamnt  +downstreamnt
tgtcagtgtcctggtgggagctcccaaagccaacactacgcagccagacatcgtggaagg
aggagcggtgtactactgcgcctggcccgcagcccagtgcaggcagatacccttcgataa
caccaacaacaggaaaattaaagtcaatggcaccagggaacctattgagtttaagacaaa
tcagtggtttggggcaacagtcaaagctcataaagaaaaagttgtggcttgtgctccctt
atatcattggagaacccttaaagatagccctgagaaggaccccgttggcacctgctatgt
agcaattcagaacttcagtgcttatgctgaatattcaccttgtcgcaatagcaatgcaga
tcccgaaggacaaggcttttgtcaagcaggtttcagcttagatttttacaagaatggaga
cctgatagtaggcgggcctggtagtttttattggcaaggtcaggtaatcactgccagtgt
tgcggatatcattgcaaattactcattcaaggatattctgaggaaactggcacgggagaa
gcaaacaggagtggcgccaccctcatatgatgacaattacatgggatactcagtggctgc
tggggaatttactggagattctgaacaagagttggttgctggagtcccaaggggagcaca
gaactttggctatgtctcaattattaattcttcagacttgacctttgttcagaacttcac
tggtgaacagatggcgtcttattttgggtacactgttgcagtatctgatgttaacaatga
tggtttagatgatatcttagttggtgcccctctttttatggaacgagaatttgagagcaa
tcccaaagaggttgggcaagtttatctatacctgcaagaaggtgctttcctcttccaaga
tgcccaagttctgacaggcactgaagtgttcggcagatttggcagtgcaatcacgcacct
tggagatctcaatcaagatggatataatgacattgctattggtgcaccatttgcaggaga
agacagaagagggaaagtgttcatttacaatggatacagtaatgggttaaatgctaaccc
ttcccaggttctcaatggagcctgggcctcacagtccatgccttccggatttggcttcac
tctaagaggagactcagatgtagacaagaatgattacccagatttaattgtaggtgcatt
tggagctggaaaagcagttgtttacagggccagacctgttgtgacagtgaatgctcagct
cattctgaaccccatgattgtgaatccagacaataaaacttgtcagctccctgtctcaca
gcttttggtggcctgctttactgtaagagtctgcgcagactttgaaggtcagagtatttc
agatgagatagtgctgaaaggtgaattgcaattagattcattgaaacagaaaggagctgt
taagaggaccctcttctttgattaccatcagtcacatcattacttctccattctgataga
aagacagaaagagctccattgccaggactttcttgtttatctcagagatgaaacagaatt
tagagataaattatctcccatcaatataaacttgaattatagtttggatgaatccagttt
tgaagatagcttgactgtgaagccaatactgaactattaccagaaaagctcagtaacaga
acaggcttacattctagttgactgcggggaggacaacttgtgcattcctgacttgcagct
ttctgctctgccagataaagatcagctaatgattggagaagaaaactgtgtcatgctcat
aataaatccaaggaatgatggggaaggagcctatgaagctgagctacatataaagattcc
acctgaagcagattacactggagttgaacgcaacaataaggcactgcgtgttctgagctg
tgattacaagatggaaaatgaaactagaatggtggtttgtgatcttgggaaccctatggt
ggctggctcaaatttctctacaggcattcgattttctgttcagcattttgaaaacgcaga
tttcagtatcaattttgagctgcaaataaaaagttctaacaagattaatcccaccagcaa
cttagttaacctccatattaacatcagtgctatggctcaagtacagatcagaggagtgtc
tcaccccccaacaattattttgccgcttcacaactgggaacccaaagatgaacctacaaa
agaagaagaacttggtcctttagtagaacacatctatgagctgcacaatataggaccaag
cgccatcaacaatacagttctccatgttggttggcccgtgtccagtcgagaagaatttct
tctttatattctgcatattcagacacatggaccattgcactgtcaaacaaactctcctat
taatacaatgcaaataaagtttgctgttccacaagacactcctgaacttgctgctttttt
atataattccacagtttctcattatatcaggagaagggatgtcgcagtggcagaacctca
caggagaaactttgcaaaagtattgaactgtacaaatgtgaagtgtatcttagtttcctg
cacggtgggacaactggaaagagggaagagtgcagcactaaaaatcaggtcccggctatg
ggcccaaacattcctggagagaaagaatgatctctatactctttcttccaatgtgtcctt
cgaagtcaagagcatgccatacaaagtgcaaccagcaaagctccccaagggaagcatagc
aatcagaacatctgtcatttggtccactccaaatgtctcctttgtaatccctttatgggt
tataatactagcaatacttcttggactgctggtactagctatgttgaccctggctttatg
gaagtgtggcttctttgacagagctcgacctcctcaagatgacatggctgacagggaaca
cctgacaaataacaagactactgatgcatag

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