KEGG   Talpa occidentalis (Iberian mole): 119257820
Entry
119257820         CDS       T07495                                 
Symbol
FGFR1
Name
(RefSeq) fibroblast growth factor receptor 1 isoform X4
  KO
K04362  fibroblast growth factor receptor 1 [EC:2.7.10.1]
Organism
tod  Talpa occidentalis (Iberian mole)
Pathway
tod04010  MAPK signaling pathway
tod04014  Ras signaling pathway
tod04015  Rap1 signaling pathway
tod04020  Calcium signaling pathway
tod04151  PI3K-Akt signaling pathway
tod04520  Adherens junction
tod04550  Signaling pathways regulating pluripotency of stem cells
tod04714  Thermogenesis
tod04810  Regulation of actin cytoskeleton
tod04928  Parathyroid hormone synthesis, secretion and action
tod05200  Pathways in cancer
tod05205  Proteoglycans in cancer
tod05215  Prostate cancer
tod05218  Melanoma
tod05224  Breast cancer
tod05230  Central carbon metabolism in cancer
Brite
KEGG Orthology (KO) [BR:tod00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04010 MAPK signaling pathway
    119257820 (FGFR1)
   04014 Ras signaling pathway
    119257820 (FGFR1)
   04015 Rap1 signaling pathway
    119257820 (FGFR1)
   04020 Calcium signaling pathway
    119257820 (FGFR1)
   04151 PI3K-Akt signaling pathway
    119257820 (FGFR1)
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04520 Adherens junction
    119257820 (FGFR1)
   04550 Signaling pathways regulating pluripotency of stem cells
    119257820 (FGFR1)
  09142 Cell motility
   04810 Regulation of actin cytoskeleton
    119257820 (FGFR1)
 09150 Organismal Systems
  09152 Endocrine system
   04928 Parathyroid hormone synthesis, secretion and action
    119257820 (FGFR1)
  09159 Environmental adaptation
   04714 Thermogenesis
    119257820 (FGFR1)
 09160 Human Diseases
  09161 Cancer: overview
   05200 Pathways in cancer
    119257820 (FGFR1)
   05205 Proteoglycans in cancer
    119257820 (FGFR1)
   05230 Central carbon metabolism in cancer
    119257820 (FGFR1)
  09162 Cancer: specific types
   05218 Melanoma
    119257820 (FGFR1)
   05215 Prostate cancer
    119257820 (FGFR1)
   05224 Breast cancer
    119257820 (FGFR1)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01001 Protein kinases [BR:tod01001]
    119257820 (FGFR1)
  09183 Protein families: signaling and cellular processes
   04090 CD molecules [BR:tod04090]
    119257820 (FGFR1)
   00536 Glycosaminoglycan binding proteins [BR:tod00536]
    119257820 (FGFR1)
Enzymes [BR:tod01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.10  Protein-tyrosine kinases
    2.7.10.1  receptor protein-tyrosine kinase
     119257820 (FGFR1)
Protein kinases [BR:tod01001]
 Receptor tyrosine kinases (RTK)
  FGFR family [OT]
   119257820 (FGFR1)
CD molecules [BR:tod04090]
 Proteins
  119257820 (FGFR1)
Glycosaminoglycan binding proteins [BR:tod00536]
 Heparan sulfate / Heparin
  Growth factors/receptors
   119257820 (FGFR1)
SSDB
Motif
Pfam: PK_Tyr_Ser-Thr Pkinase I-set ig Ig_3 Ig_2 V-set C2-set_2 Ig_4 ABC1 V-set_CD47 Pkinase_fungal DUF1615 zf-CCCH_9
Other DBs
NCBI-GeneID: 119257820
NCBI-ProteinID: XP_037381965
LinkDB
Position
Unknown
AA seq 821 aa
MWSWKCLLFWAVLVTATFCCTARPAPTLPEQAQPWGAPVEVESFLVHPGDLLQLRCRLRE
DVQSINWLRDGVQLVESNRTRITGEEVEVRDSVPADSGLYACVTSSPSGSDTTYFSVNVS
DALPSSEDDDDDDDSSSEEKETDNTKPNRMPVAPYWTSPEKMEKKLHAVPAAKTVKFKCP
SSGTPNPTLRWLKNGKEFKPDHRIGGYKVRYATWSIIMDSVVPSDKGNYTCIVENEYGSI
NHTYQLDVVERSPHRPILQAGLPANKTVALGSNVEFMCKVYSDPQPHIQWLKHIEVNGSK
IGPDNLPYVQILKTAGVNTTDKEMEVLHLRNVSFEDAGEYTCLAGNSIGLSHHSAWLTVL
EALEERPAVMTSPLYLEIIIYCTGAFLISCMVGSVIIYKMKSGTKKSDFHSQMAVHKLAK
SIPLRRQVSADSSASMNSGVLLVRPSRLSSSGTPMLAGVSEYELPEDPRWELPRDRLVLG
KPLGEGCFGQVVLAEAIGLDKDKPNRVTKVAVKMLKSDATEKDLSDLISEMEMMKMIGKH
KNIINLLGACTQDGPLYVIVEYASKGNLREYLQARRPPGLEYCYNPSHNPEEQLSSKDLV
SCAYQVARGMEYLASKKCIHRDLAARNVLVTEDNVMKIADFGLARDIHHIDYYKKTTNGR
LPVKWMAPEALFDRIYTHQSDVWSFGVLLWEIFTLGGSPYPGVPVEELFKLLKEGHRMDK
PSNCTNELYMMMRDCWHAVPSQRPTFKQLVEDLDRIVALTSNQEYLDLSMPLDQYSPSFP
DTRSSTCSSGEDSVFSHEPLPEEPCLPRHPAQLANGGLKRR
NT seq 2466 nt   +upstreamnt  +downstreamnt
atgtggagctggaagtgcctcctcttctgggctgtgctggtcacagccacattctgctgc
accgccaggccggccccaaccttgcctgaacaagcccagccctggggagcccctgtggaa
gtggagtccttcctggtccaccctggtgacctgctgcagcttcgctgtcggctgcgggaa
gatgtccagagcatcaactggctgcgggacggggtacagctggtggaaagcaaccgtacc
cgcatcacaggggaggaggtggaggtgcgggattccgtgcctgccgactctggcctctac
gcttgcgtgaccagcagcccctcgggcagtgacaccacctacttctccgtcaatgtttca
gatgccctcccttcctcagaggacgacgatgatgatgatgactcctcttcagaggagaaa
gagacagataacaccaaaccaaaccgtatgcccgtggctccatactggacgtccccagaa
aagatggaaaagaaattacatgcagtgccagctgccaagacggtgaagttcaaatgccct
tccagtgggactcctaatcccacccttcgctggttgaaaaatggcaaagaattcaaacct
gaccacaggattggaggctacaaggtccgttatgccacctggagcatcataatggactct
gtggtgccttcagacaagggcaactatacctgtatcgtggagaatgagtatggcagcatt
aatcacacctaccagctggatgttgtggagcggtcccctcaccgacccatcctgcaagca
gggctgcctgccaacaagacagtggccctgggcagcaatgtggagttcatgtgtaaggtg
tacagtgacccacagccccacatccagtggctaaagcacatcgaggtgaatgggagtaag
attggtccggacaacctgccttatgttcagatattgaagactgccggagttaataccacc
gacaaagagatggaggtgcttcacttaaggaatgtctcctttgaggacgcgggggagtat
acgtgcttggcgggtaactctatcggactctcccatcactctgcatggttgaccgttctg
gaagccctggaagagagacctgcagtgatgacctcgcccttgtacctggagatcatcatc
tattgcacaggggccttcctcatctcctgcatggtggggtctgtcatcatctacaagatg
aagagcggcaccaagaagagtgacttccacagccaaatggctgtgcacaagctggccaag
agcatccctctgcgcagacaggtgtcagctgactccagtgcatccatgaactctggagtt
ctgctggttcggccctcacgtctctcctccagcggaacccccatgctggctggggtttct
gaatatgaacttcctgaagaccctcgctgggaactacctcgagacaggctggttttaggt
aaacccttgggagaaggctgctttgggcaagtggtattggcagaagccattgggctggac
aaggacaaacccaaccgtgtgaccaaagtggctgtgaagatgttgaaatccgatgccacg
gagaaagacctgtctgacctgatatcagaaatggagatgatgaagatgatcgggaaacac
aagaacatcatcaacctgctgggggcttgcacgcaggatggtcctttgtatgtcatcgtg
gaatatgcctccaagggcaacttaagagagtacctgcaggcccggaggcctcctgggtta
gaatactgttacaaccccagccacaacccggaggagcagctctcctccaaagacctggta
tcctgcgcctatcaagtggcccggggcatggaatatcttgcctccaagaagtgcatacac
cgagacctggccgccaggaatgtcctggtgacagaggacaatgtgatgaagatcgcagac
ttcggcttagctcgggacattcaccacattgactactataaaaagacgaccaacggccga
ctgcctgtgaagtggatggcacctgaggccttgtttgaccggatctatacccaccagagt
gatgtgtggtctttcggggtgctcctgtgggaaatcttcactttgggtggctccccatat
cctggtgtgcctgtggaggagcttttcaagctgctgaaggaaggtcatcgaatggataaa
cccagtaactgcaccaatgagctgtacatgatgatgcgtgattgttggcatgcggtacct
tctcaaagacctaccttcaagcagctggtagaagacctggaccgcattgtggccttgacc
tccaaccaggagtatctggacctgtcaatgcccctggatcagtactctcccagctttccc
gatacccggagctcaacctgctcctcgggggaggattccgtcttctctcatgagccgttg
cctgaggagccttgtctgccccgacacccagcccagcttgccaatggcggactcaagcga
cgctga

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