KEGG   Tarenaya hassleriana (spider flower): 104807303
Entry
104807303         CDS       T04125                                 
Name
(RefSeq) bifunctional dihydrofolate reductase-thymidylate synthase 1-like isoform X1
  KO
K13998  dihydrofolate reductase / thymidylate synthase [EC:1.5.1.3 2.1.1.45]
Organism
thj  Tarenaya hassleriana (spider flower)
Pathway
thj00240  Pyrimidine metabolism
thj00670  One carbon pool by folate
thj00790  Folate biosynthesis
thj01100  Metabolic pathways
thj01232  Nucleotide metabolism
thj01240  Biosynthesis of cofactors
Module
thj_M00126  Tetrahydrofolate biosynthesis, GTP => THF
thj_M00938  Pyrimidine deoxyribonucleotide biosynthesis, UDP => dTTP
Brite
KEGG Orthology (KO) [BR:thj00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00240 Pyrimidine metabolism
    104807303
  09108 Metabolism of cofactors and vitamins
   00790 Folate biosynthesis
    104807303
   00670 One carbon pool by folate
    104807303
Enzymes [BR:thj01000]
 1. Oxidoreductases
  1.5  Acting on the CH-NH group of donors
   1.5.1  With NAD+ or NADP+ as acceptor
    1.5.1.3  dihydrofolate reductase
     104807303
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.45  thymidylate synthase
     104807303
SSDB
Motif
Pfam: Thymidylat_synt DHFR_1 Spermine_synth
Other DBs
NCBI-GeneID: 104807303
NCBI-ProteinID: XP_010530820
LinkDB
Position
Unknown
AA seq 516 aa
MATGLNGNVTVASDPQRTYQVVVAATREMGIGKDGKLPWSLPTDLRYFKDITLTTSDSAK
KNAVVMGRKTWESIPMKYRPLSGRLNVVLTRSGGFDIANTENVLTCSSIDSALDLLAAPP
YCLSIERVFVIGGGDILREALNRPSCDAIHLTEIDASIDCDTFIPPIDSSVYQPWYSSYP
ITENGIRFCFTTYVRVRSSSVESYDQSDGSEAPKFDVKRFSFLPKMVFDRHEEFLYLNLV
QDIISTGNLKDDRTGTGTLSKFGCQMRFNLRRNFPLLTTKRVFWRGVVEELLWFISGSTN
AKVLQEKGIHIWDGNASRDYLDSTGLTEREEGDLGPIYGFQWRHFGARYTNMHADYTGQG
FDQLLDVIDKIKNKPNDRRIILSAWNPSDLKLMALPPCHMFAQFYVANGELSCQMYQRSA
DMGLGVPFNIASYSLLTCIIAHACELVPGDFIHVIGDSHVYQTHVRPLQEQLQNPPKPFP
ILKINPEKKDIDSFVPADFELIGYDPHKKIEMKMAV
NT seq 1551 nt   +upstreamnt  +downstreamnt
atggcgactggtctcaatggcaatgttacagtggcatcagatccgcagagaacttaccaa
gttgtggtagctgcaacaagggaaatgggtattggtaaagatgggaaactgccctggagt
ttgcctactgatctcagatactttaaggacataactctgacaacgtcggattccgcaaag
aagaatgccgtcgtgatgggtaggaaaacgtgggaatcgatccccatgaaatatcgacca
ctctctggccgccttaacgttgttctcactcgttcaggcggttttgatatagccaacacc
gagaatgttttaacctgcagtagcatagattctgctctggatttattagctgcacctccg
tattgtctgtccatcgagagggtgtttgttataggaggcggtgatatattgagggaagca
ctgaataggcctagctgtgacgccatccacttaactgagattgatgctagtattgactgt
gatacgtttatacccccgatcgactcttctgtatatcagccttggtactcatcgtatccg
ataactgaaaatggaattcgattttgcttcacgacttatgttcgtgtaaggagttcttca
gttgaatcatatgatcaaagtgatggatcagaggcccccaaatttgatgtgaaaaggttc
tctttccttcccaagatggtttttgaccggcatgaggaattcctgtacttgaatcttgtt
caagacatcatatcgactggaaacctgaaagacgataggacggggaccggcacactatca
aaatttggctgccagatgagattcaatctacgcaggaactttccacttctgactactaag
agagtgttctggagaggtgttgtcgaggaacttctatggttcataagtggctcaacaaat
gccaaggtgctacaagaaaagggcatccatatatgggatgggaatgcgtcacgagactat
cttgacagtactggccttaccgagagagaggaaggtgaccttggacccatatatggattt
caatggagacactttggtgctaggtacaccaatatgcatgctgattatacagggcaaggg
tttgatcagctgttagacgttatcgataagatcaagaataagcctaatgatcgaaggatt
atattatctgcttggaatccttctgacctcaagttgatggcacttcctccatgccacatg
tttgcgcagttctatgtcgcaaatggggaactgtcatgtcaaatgtatcagcgttcagct
gacatgggcctcggtgtaccattcaacattgcttcatactctctccttacgtgcattatc
gctcatgcgtgtgagcttgttcccggtgatttcatccatgttatcggggattctcatgtt
taccaaactcatgtcaggcctctgcaagaacagcttcagaacccgccaaagccctttcct
attttgaagataaaccccgagaaaaaggacatagattctttcgtaccggctgacttcgag
ctcataggctatgatcctcacaagaagatagaaatgaaaatggcggtttag

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