Coregonus clupeaformis (lake whitefish): 121585395
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Entry
121585395 CDS
T08357
Name
(RefSeq) integrin alpha-8-like
KO
K06584
integrin alpha 8
Organism
cclu
Coregonus clupeaformis (lake whitefish)
Pathway
cclu04510
Focal adhesion
cclu04512
ECM-receptor interaction
cclu04514
Cell adhesion molecules
cclu04810
Regulation of actin cytoskeleton
cclu04820
Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:
cclu00001
]
09130 Environmental Information Processing
09133 Signaling molecules and interaction
04512 ECM-receptor interaction
121585395
04514 Cell adhesion molecules
121585395
09140 Cellular Processes
09144 Cellular community - eukaryotes
04510 Focal adhesion
121585395
09142 Cell motility
04820 Cytoskeleton in muscle cells
121585395
04810 Regulation of actin cytoskeleton
121585395
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
04515 Cell adhesion molecules [BR:
cclu04515
]
121585395
Cell adhesion molecules [BR:
cclu04515
]
Integrins
Integrin alpha subunits
121585395
BRITE hierarchy
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
Integrin_A_Ig_3
Integrin_A_Ig_2
Integrin_A_Ig_1
FG-GAP
FG-GAP_3
Integrin_alpha
Motif
Other DBs
NCBI-GeneID:
121585395
NCBI-ProteinID:
XP_045072562
LinkDB
All DBs
Position
Unknown
AA seq
1060 aa
AA seq
DB search
MVLMYAYMMCAFGGMLCRVVSVLWPVLSVVSGFNLHAERPAVYRGPEGSYFGYSVDFYRP
TPESSTLSVLVGAPKANTSQPGIIEGGAVYYCPYPPNPDPTKQPHSCSQIPFDNANNRMI
KVNGTREPLEFKSHQWFGASVRTHKGKVVACAPIYHWRTVKVNGEKDPVGTCYVAVQNFS
AYAEYSPCRTNDPDPEGQGFCQAGFSVDFTKEGTLVVGGPGSFYWQGQVMTAGVAEILNG
YSLKAVLRRVPGEKHTHAAADTHDDSYLGYSVAVGEFTGDSEQELIAGVPRGAQNFGYVA
VINSTNLTFIMNFTGEQMASYFGYSVAVTDLNGDGYDDVLVGAPLYMERERESKPKEVGR
VYLYLQHSPLTFSEPLLLMGTHTFGRFGTAIAPLGDLNQDGYNDVAVGCPFGGEDRSGLV
LIYNGQRDLTARGLTLSQELYGAWASSSGLSGYGFTLRGDGDLDNNHYPDLIVGAFGKGE
VSVYRARPVVSVEAEMILTPRILNPDDRSCLLTESDIMVTCLRIDVCAKVSGVGIPDSVV
LNAELQLDWLKGVRGGVKRVNFLDSHQPQHTGVLMLGHNRPHSCLNYTVYLRGEDEFRDK
LTPISLALNYSLAPPPSNLDLPPVLNHYSSTFLQEQAYILLDCGEDNECIPDLQLSASMD
RTELVVGDDNLVMLTINAVNEGEGAYETELHTLLPPEADYIGVERRIESLSRLNCEYRMV
NDSRLVVCDLGNPMVAGTEVSVGLRFAVQRLDDAGPHIVFDLQIHSSNKDNSKSNPVSLS
LSISARAQLDLRGVCHPSQVVLPFPHWEPKEKPVKEEDVGPQVTHIYELHNSGPSSIREA
ELQVGWPSRFRDEHLLYALEVLTDGPISCRSNSSLNPLGLQTSSVQDTPELLGFLRNSSS
PHRYRRATSVAQPYSSKTLNCSNIICLRVLCVVGRLDRGQSAVVKIRSRLWAHTFLQRRN
DPYLLNSTVSFRVTALPYRLQPSSLPQHTTSMGTLVLWGTPDVAFAVPLWVIILAILLGL
LVLAMLTLAMWKCGFFDRARPPADDVSDREQLTSDQSADA
NT seq
3183 nt
NT seq
+upstream
nt +downstream
nt
atggtgttaatgtacgcctatatgatgtgtgcgttcggtgggatgttgtgtcgcgtggtg
tcggtgctgtggccggtcctttcggtggtctcggggttcaacctgcatgcggagcgcccc
gccgtgtaccgaggaccagaggggagctactttggttactccgtggacttctaccgaccc
acccccgaaagcagcacgttgagtgtgttggtgggagcgcccaaggccaacacgtcccag
ccaggcatcatagaggggggagctgtctactactgtccctatcccccaaaccccgacccc
accaagcaaccccacagctgctcacagatacccttcgacaacgctaataacaggatgatt
aaggtgaatggcaccagggagcctctggagttcaagtctcaccagtggtttggagcctca
gttagaactcacaaaggcaaagtggtggcctgtgctcctatctaccactggcgtacagtg
aaggtgaatggtgagaaggacccggtaggaacctgctatgttgccgtgcagaacttcagc
gcctacgcagaatactcaccctgtaggaccaatgatcctgacccggagggacaggggttc
tgccaggccgggttcagtgtggacttcaccaaggaggggacactggtggtgggtggacct
ggaagcttctactggcaaggtcaggtgatgacagcaggcgtagcagagatattgaatggt
tactctctgaaagccgtgctcaggagagtccctggagagaaacacacacacgctgcagct
gatacacatgacgacagctacctaggttactctgtggcagtgggggaattcacaggagac
tcggagcaagagctgatagctggggttccgagaggggcacagaactttggatatgtagct
gtgattaactccactaatctgacattcatcatgaacttcacaggagagcagatggcttcc
tactttggctattctgtggctgttactgacctcaacggagacgggtatgatgatgtgttg
gtaggagcccctctctacatggagagagagagggagagtaagcccaaggaggtgggccgt
gtctacctgtacctccagcactccccgctcaccttctccgagcccctcctcctgatggga
acacacaccttcggacgctttggcactgccatcgccccgctaggagacctcaaccaggac
ggatataacgacgtggcagtgggttgtccgtttggtggggaggaccggagtggcctggta
ttgatctacaatggccagagagacctgacggcccggggcctaaccctcagccaggagctc
tatggagcctgggcctccagtagtggcctctccggttacggcttcaccctgaggggggac
ggagacctggacaacaaccattaccctgatctgatagtgggagcatttggtaaaggggag
gtgtcggtgtacagggctcgtcctgtagtgtcagtggaggcagagatgatcctgactcct
agaatcctgaaccctgacgaccgatcctgcctcctgacagaatctgatatcatggtgacc
tgtctcaggatagatgtttgtgcgaaggtgagcggtgtggggatcccagactctgtagtc
ctgaatgcagagctgcaactggattggctgaaaggtgtgaggggcggagttaagagagtt
aatttcctggattcccatcagccccagcacacaggggtcctaatgcttggccacaaccgt
ccacactcctgcctgaactatactgtctacctacgaggggaggatgagtttagggataaa
ttgactcccatctcattggctctgaactacagtttagcccctcctccttccaacctggac
ctcccccctgtcctcaaccactacagcagtaccttcctgcaggaacaggcgtatattctg
ctggactgtggggaagacaacgagtgtattccagacctccagctgtctgctagcatggac
cgtacagagctggtggtcggggatgacaacctggtcatgttgaccataaacgcggttaac
gaaggagagggggcatatgagacggagctacacacactcctaccccctgaggctgattac
ataggagtggaacgcaggatagagtctctatccaggttgaactgtgagtacaggatggtg
aatgactccagactggtggtgtgtgacctggggaaccctatggttgctggaacagaagta
tctgtaggtttaaggtttgctgtccaaaggctggatgatgccggtcctcacattgtcttt
gacctacagatccacagttcaaacaaagacaactccaagagcaacccagtcagtctgtct
ctctccatctctgccagagctcagctagacctgaggggggtgtgtcatccctctcaggtg
gttcttccgtttcctcactgggagcccaaggagaagccggtcaaagaggaagacgtagga
ccccaggtcacacacatctacgagctccataactcaggtcccagtagtatccgggaggcg
gagctccaggtgggctggccctctcgtttccgtgacgaacacctgctctacgctctggag
gttctaacggacggaccaatcagctgccggagcaacagcagcctcaaccccctgggccta
cagacctcctctgtccaggacactccagaattgttgggctttctgaggaacagtagctct
cctcaccgctacagacgagccaccagcgttgcccagccctacagcagcaagaccctgaac
tgcagtaacatcatttgtctaagagtgctgtgtgtggttgggcggttggaccgtggtcag
agcgctgtagtcaagatccgctcccgactctgggctcacaccttcctccagagacgtaac
gacccatatctcctcaactccaccgtgtccttcagagtgacagcactgccctaccgcctc
cagccctcctccttaccccaacacaccacttcaatgggtacattggtgctgtgggggact
cctgatgtggcgtttgctgttcctctatgggtcatcatcctggccatcctactgggactg
ctggtcctggccatgctaacactggccatgtggaagtgtgggttctttgaccgggcacgg
ccgccagcggatgacgtgtcggaccgtgagcagttgacttctgaccaatcagcagacgcc
taa
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