KEGG   Clupea harengus (Atlantic herring): 105902754
Entry
105902754         CDS       T09045                                 
Symbol
fgfr1a
Name
(RefSeq) fibroblast growth factor receptor 1-A isoform X2
  KO
K04362  fibroblast growth factor receptor 1 [EC:2.7.10.1]
Organism
char  Clupea harengus (Atlantic herring)
Pathway
char04010  MAPK signaling pathway
char04020  Calcium signaling pathway
char04520  Adherens junction
char04810  Regulation of actin cytoskeleton
Brite
KEGG Orthology (KO) [BR:char00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04010 MAPK signaling pathway
    105902754 (fgfr1a)
   04020 Calcium signaling pathway
    105902754 (fgfr1a)
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04520 Adherens junction
    105902754 (fgfr1a)
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    105902754 (fgfr1a)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01001 Protein kinases [BR:char01001]
    105902754 (fgfr1a)
  09183 Protein families: signaling and cellular processes
   04090 CD molecules [BR:char04090]
    105902754 (fgfr1a)
   00536 Glycosaminoglycan binding proteins [BR:char00536]
    105902754 (fgfr1a)
Enzymes [BR:char01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.10  Protein-tyrosine kinases
    2.7.10.1  receptor protein-tyrosine kinase
     105902754 (fgfr1a)
Protein kinases [BR:char01001]
 Receptor tyrosine kinases (RTK)
  FGFR family [OT]
   105902754 (fgfr1a)
CD molecules [BR:char04090]
 Proteins
  105902754 (fgfr1a)
Glycosaminoglycan binding proteins [BR:char00536]
 Heparan sulfate / Heparin
  Growth factors/receptors
   105902754 (fgfr1a)
SSDB
Motif
Pfam: PK_Tyr_Ser-Thr Pkinase I-set Ig_3 ig Ig_2 V-set C2-set_2 V-set_CD47 ABC1 Pkinase_fungal
Other DBs
NCBI-GeneID: 105902754
NCBI-ProteinID: XP_012685860
Ensembl: ENSCHAG00000016543
UniProt: A0A6P3W065
LinkDB
Position
7:4417362..4447888
AA seq 864 aa
MPLLPRWIPPYRVSPSCEARGRMRTMGSVLLLLLWALAALVSQAQARPALTEEEHSLPGH
ILQPGLPANRTTVVGSDVEFECKVYSDLQAHIQWLKHIEVNGSHVGPDGQPLIHVLKTSG
SNTTEKDMEVLQIRNVSLEDAGEYTCVAESSLGRFHHSAWLTVYKDPLMSSEDDDEEEDE
SSSEEAKLSSSQKLMPMAPQWAQPERMEKKLHAVPASKTVKFRCQASGNPMPTLKWFKNG
REFKRDQRIGGFKVREHMWTIIMESVVPSDKGNYTCVVQNQHGSINHTYQLDVVERSPHR
PILQAGLPANRTAVVGSDVEFVCKVFSDPQPHIQWLKHIEINGSRYGSDGLPYVQVLKTA
GLNTTDKEMEVLQIKNVTFENTGEYTCLAGNSIGHSHHSAWLTVYEAVPPSPLPNQTYLE
VLIYCVGFFVICVMVAFAVIARMHSSSKKSNFNSQLAVHKLAKSIPLRRQVSVDSSSSLH
SGAMLVRNSRLSSGGSPMLSGVSEYELPQDPRWELTRERVVLGKPLGEGCFGQVMMGEVM
GMDKDKPNRVTKVAVKMLKSDATEKDLSDLISEMEMMKIIGKHKNIINLLGACTQEGPLY
VIVEFASKGNLREYLRARRPPGMEYCYNPDQVPIENMSIKDLVSCAYQVARGMEYLSSKK
CIHRDLAARNVLVTEDNVMKIADFGLARDIHHIDYYKKTTNGRLPVKWMAPEALFDRIYT
HQSDVWSFGVLLWETFTLGGSPYPGVPVEELFKLLKEGHRMDKPTTCTHEMYMMMRDCWH
AVPSQRPTFKQLVEDLDRTLSMTSNQEYLDLSMSLDQYSPNYPDTRSSTCSSGEDSVFSH
DAGVDEPCLPKFPPHPSRVAFKKR
NT seq 2595 nt   +upstreamnt  +downstreamnt
atgcccctgctgcccagatggattcctccatacagagtgtcccccagctgtgaagcccgc
gggaggatgaggacgatggggagtgtgctgctgctgctgctctgggctctggctgctctg
gtgtcacaggctcaggccagacctgcgctcactgaagaagagcattcccttcctgggcac
atcctacagccaggcctaccagccaatcggacaacagtggtgggcagtgatgtggagttc
gagtgcaaggtctacagcgacctccaagcacacatccagtggctgaaacatattgaggtc
aatgggagtcacgtgggtcctgatggtcaacccctcatccatgtcctgaagacctctgga
tccaacaccactgaaaaggacatggaagtcctccaaataaggaatgtgtccctggaggat
gccggggagtatacctgcgtcgctgaaagctccttggggcgttttcatcattcggcttgg
ttaaccgtttacaaagatcccctgatgtcttctgaagatgacgatgaggaagaggacgag
tcgtcatctgaagaggccaagctctccagtagccagaaattgatgccaatggccccacag
tgggctcagcccgagaggatggagaagaagcttcatgccgtcccggccagcaagacggtg
aagttccgctgccaggccagtggcaatcccatgccgacgctaaagtggtttaagaacggc
agggagttcaaaagggatcagcgcatcggtggattcaaggtgcgagagcacatgtggacc
atcatcatggagtctgtagtgccctcagacaaggggaactacacctgtgtggtgcagaat
cagcatggcagcatcaaccacacttaccagctggatgtcgtagagcgctcacctcatagg
cctatcctacaagcaggccttccagcaaatcgcactgcggtggtgggcagtgatgtcgag
tttgtttgtaaggtcttcagtgacccccagccccacatccagtggttgaagcatattgaa
ataaacgggagtcgttacggatctgatggcttgccatatgtccaagtgctaaagaccgct
ggccttaacaccacggacaaggaaatggaggtcctgcaaataaagaatgtgacttttgag
aatactggggagtatacctgcttggcggggaactctatcgggcactctcaccattctgca
tggttgactgtctatgaagccgtgcccccctctcccctgcccaatcaaacctatctggag
gtcctgatctactgcgtcggcttcttcgtcatatgtgtgatggtggccttcgcagtcatc
gccaggatgcacagctcgtccaaaaagagcaacttcaacagtcagctcgccgtgcacaag
ctggccaagagcattcctctgcgcagacaggtgtctgtggactccagctcctccctgcac
tccggggccatgctggtgcgtaactcgcgcctctcctccggtggctcgcccatgctctcg
ggggtctccgagtacgagctgccccaggacccacgctgggagctgaccagagagagggta
gttctcgggaagccacttggtgaaggatgctttgggcaagtgatgatgggtgaggtcatg
ggaatggataaagacaagccaaaccgtgtcaccaaagtggccgtcaagatgctgaaatct
gatgccacagaaaaagacctgtcagacctgatctcagagatggagatgatgaagattatt
ggcaaacacaagaacatcatcaacctgcttggagcctgcacacaagaaggtccgctctat
gtcattgtggagtttgcctccaagggcaacctgagggagtacctaagagctcgccgccct
cctggtatggagtactgctacaatccagatcaggtgccaattgagaacatgtccatcaaa
gatctagtatcctgcgcgtatcaagtggcaagagggatggagtatctgtcatctaaaaag
tgcatacacagggacctggctgctcgcaatgttctggtgaccgaggacaatgtgatgaaa
atagcagacttcggattggcgcgagatatccaccacattgattattacaagaagaccacc
aatggtcgtttgccagtgaagtggatggctcctgaggctctatttgacaggatatacacg
caccagagtgatgtgtggtcttttggggtgctcctctgggagacctttactttagggggc
tccccataccctggtgtccccgttgaggaactcttcaagctgcttaaggaaggacatcgc
atggacaagcccacaacctgcacccatgagatgtatatgatgatgagggattgctggcat
gcagttccttctcagagaccaacattcaaacagttggtggaggaccttgaccgtacgctt
tccatgacctccaaccaggagtatctggatctctctatgtctctggaccaatactccccc
aactaccccgacacgcgcagctccacctgctcctcgggggaggactccgtgttctcccat
gatgccggcgtggacgagccctgcctgccaaagtttccccctcacccgagcagggtggca
ttcaagaagcgctga

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