KEGG   Monopterus albus (swamp eel): 109972671
Entry
109972671         CDS       T05607                                 
Symbol
itga2b
Name
(RefSeq) integrin alpha-IIb
  KO
K06476  integrin alpha 2B
Organism
malb  Monopterus albus (swamp eel)
Pathway
malb04510  Focal adhesion
malb04512  ECM-receptor interaction
malb04810  Regulation of actin cytoskeleton
malb04820  Cytoskeleton in muscle cells
Brite
KEGG Orthology (KO) [BR:malb00001]
 09130 Environmental Information Processing
  09133 Signaling molecules and interaction
   04512 ECM-receptor interaction
    109972671 (itga2b)
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04510 Focal adhesion
    109972671 (itga2b)
  09142 Cell motility
   04820 Cytoskeleton in muscle cells
    109972671 (itga2b)
   04810 Regulation of actin cytoskeleton
    109972671 (itga2b)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01009 Protein phosphatases and associated proteins [BR:malb01009]
    109972671 (itga2b)
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:malb04147]
    109972671 (itga2b)
   04515 Cell adhesion molecules [BR:malb04515]
    109972671 (itga2b)
   04090 CD molecules [BR:malb04090]
    109972671 (itga2b)
Protein phosphatases and associated proteins [BR:malb01009]
 Protein serine/threonine phosphatases
  Phosphoprotein phosphatases (PPPs)
   Protein phosphatase-1
    PP1-interacting proteins (PIPs)
     109972671 (itga2b)
Exosome [BR:malb04147]
 Exosomal proteins
  Exosomal proteins of haemopoietic cells  (B-cell, T-cell, DC-cell, reticulocyte, and mast cell)
   109972671 (itga2b)
Cell adhesion molecules [BR:malb04515]
 Integrins
  Integrin alpha subunits
   109972671 (itga2b)
CD molecules [BR:malb04090]
 Proteins
  109972671 (itga2b)
SSDB
Motif
Pfam: Integrin_A_Ig_3 Integrin_A_Ig_2 Integrin_A_Ig_1 FG-GAP FG-GAP_3
Other DBs
NCBI-GeneID: 109972671
NCBI-ProteinID: XP_020477341
LinkDB
Position
Unknown
AA seq 817 aa
MMEDDYKHIDNRDDQRYCEVGFSADITKEGRLVLGAPGSFSFQGQVFTVGVSDILNNGRS
NEPIQYVGGISHSEEDKGGDYDVYHGYSVASGLLTGDSIPDYLVGVPHDRNTAGTVKVYD
GRSIKTLRVSHIFLGAQVASYFGHSVAVSDINSDGLDDVLIGAPLYMDRVTEQLQERGQV
VVYLQRRHTSFSSQPDQSLIGFSLYGRFGSALTVLGDMDMDGYHDVAIGAPWSGDSGQGQ
VFIYLGNSNGLSATPSQVIDSPLPSSRTAFGFTLRGGADIDGNGYPDLLVGAWAADQAFV
YRSWAVIRSTVSLSLLPDFLNPEVKLCHRGNTTVCCFVIQMCLYVSGHRIPQETALGVEL
QLDRMKQPTARRTLLLSTSQPQETMMLMVQRDEGMACVNQTAYLRSEEEVRDKLSPIFIS
ANISLLNTTQHALLHGQTHAAAQTRIVLDCGDDNICVPDLKLSAELVSDSVLVGEDQSVM
LYVLALNDGEGAYETELVVQIPKNTHFQRSQGLNRLVCKENQSIIVTCVLGNPMRQGHKL
QTGLLFSVGHLEEVESHITFILRIRSKNLVNPSSNEVSVKVQVKAKAMLEIRGGSSPTEV
VLPLPDWQPAMHPGSLEAVGPLVEHVYELRNHGPSVVNARLMVDFPSIWQHHFLLYIFSN
ASEESLSCWTLNTSQIDPFKLVSASSSISVVSPLIQQEETNSHRQTVHVNCSSSETGCVR
FVCDVTALGRGFSAVVRISARLWTHTLIQTPYLNYELISSASYDVINTSSKVQPTLLPSG
HAQLGFFQRTRPPTGEEDEKEEDEEQQQRAEESHMTE
NT seq 2454 nt   +upstreamnt  +downstreamnt
atgatggaagatgactacaaacacatagacaacagagatgaccagcgttactgtgaggtg
ggcttcagtgctgacatcacaaaggagggtcgcctggtgctgggagctccaggaagcttt
tctttccagggtcaggttttcacagtaggtgtgagtgacatcctcaacaatgggcggagc
aatgagcctatccagtatgtgggaggaatcagccattcagaggaagataagggaggagat
tatgatgtttaccacggttactctgtggccagtggtctgctgactggagactcgatacca
gattatcttgttggtgttccacatgacagaaacacagcaggaacagtgaaggtctatgat
ggcaggagcattaaaacgctcagagtttcccacatcttcctgggagctcaggtggcatca
tactttggacacagtgtggctgtctctgacatcaacagtgatggtttagatgatgtgctg
atcggagctcctctctacatggaccgagtgacagagcagctgcaggagcgaggacaggtg
gtagtgtacctgcagagaagacacacctccttctcctctcagcctgaccagtcactgatt
ggcttctccctgtatgggcggtttggctctgcgctcactgtgctgggtgacatggacatg
gacggttaccatgatgtggccattggagccccctggtcaggtgacagtgggcagggccaa
gtgtttatctacctgggcaacagtaatggtttgtcagccacaccctcccaggtgattgat
agcccattgcccagcagcaggacagcatttggctttactctgaggggtggagctgacatt
gatggcaacggatacccagacctgctggttggagcgtgggctgcagaccaagcctttgtc
tacaggtcctgggcagtgatccggtccacagtttctctgtctctgctgccagacttcctg
aatccagaagtaaaactgtgtcatcgaggaaacacaactgtgtgctgttttgttatccag
atgtgtctctacgtatctggtcacagaattccacaggagacagcactgggggtggaacta
cagctggacaggatgaagcagccaacggcgagaaggaccctgctgctgtcaaccagtcag
ccacaggagacgatgatgttgatggttcagagagacgagggcatggcctgtgtcaatcag
accgcttacctgaggtctgaagaggaggtccgtgataaattgagtccaatcttcatctcc
gccaacatcagcctcctcaatactacccagcatgctttgctgcatggacagacacatgct
gctgcacagaccaggatcgttctggactgtggagacgacaacatctgtgtccctgacctg
aagctgagcgccgagcttgtgtcagacagtgtgctggtcggcgaggaccagtcagtgatg
ttgtatgtgttggcgttgaacgatggtgagggggcgtatgagactgagctggtggtccaa
attcccaaaaacacacacttccaaagaagccagggtctgaatagactggtgtgtaaggag
aaccagagcatcatcgtcacctgtgtcctcggaaaccccatgaggcaaggacacaaactg
cagacaggtcttctgtttagtgtgggccatctggaggaggtggagagtcacatcaccttc
atcctcagaatcaggagtaagaacttggtgaatcccagcagtaacgaggtctcagtgaag
gtccaggtgaaagctaaggcgatgctggagatcagaggaggctcctcccctacagaagtt
gtcctgcccctccctgactggcaacctgcaatgcatcctgggagtttagaggcagtgggt
ccattggtagagcatgtttatgagctgaggaaccatggcccgagtgtggtcaatgctcgg
ctgatggtggacttcccatccatttggcaacatcacttcctgctctacatcttctccaat
gcttctgaagaatcattgagctgttggaccctgaacacatcacagatagaccccttcaag
ctggttagcgcctcctccagtatttctgtagtgtctccattgatccagcaggaggagaca
aactcacacagacaaactgttcatgtgaactgcagtagcagtgagactgggtgtgtcagg
tttgtctgtgatgtcacagcgttggggcggggcttcagtgccgttgtgcgaatctcagct
cgactgtggacacacactctcatacagactccctacctgaactatgagctcatttcatct
gcatcctatgatgtcatcaacacatcatcaaaggtccaaccaacgctgctgccgagtgga
cacgcacagctgggcttctttcagcgcacccgcccccccactggggaggaggatgagaag
gaggaggatgaagagcagcagcagcgggctgaggagagtcacatgactgaataa

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