KEGG   Rippkaea orientalis PCC 8801: PCC8801_1245
Entry
PCC8801_1245      CDS       T00806                                 
Name
(GenBank) thymidylate synthase
  KO
K00560  thymidylate synthase [EC:2.1.1.45]
Organism
cyp  Rippkaea orientalis PCC 8801
Pathway
cyp00240  Pyrimidine metabolism
cyp00670  One carbon pool by folate
cyp01100  Metabolic pathways
cyp01232  Nucleotide metabolism
cyp04981  Folate transport and metabolism
Brite
KEGG Orthology (KO) [BR:cyp00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00240 Pyrimidine metabolism
    PCC8801_1245
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    PCC8801_1245
 09150 Organismal Systems
  09154 Digestive system
   04981 Folate transport and metabolism
    PCC8801_1245
Enzymes [BR:cyp01000]
 2. Transferases
  2.1  Transferring one-carbon groups
   2.1.1  Methyltransferases
    2.1.1.45  thymidylate synthase
     PCC8801_1245
SSDB
Motif
Pfam: Thymidylat_synt DUF4346 MtrA
Other DBs
NCBI-ProteinID: ACK65311
UniProt: B7K3G9
LinkDB
Position
complement(1294383..1295876)
AA seq 497 aa
MTLASSNYQFTYTPHYKPNQLICGYGQTAVITGWTVKQSVAKQLNPEDYAVIGNLYSPTR
GISPLIRNLLANPHVRFLVILQATKEDKNAGGCQCLLDFLANGFTKGTSDTGRDTWVINS
TITGYIDIEITADALETLRQSLDYKEVKSISEVVNYVKEFAKETHKQTWGEPLIFPIVET
TPTVLPGPRYGHRIEGKTIAETWVKILHRIKTTGTIRPTGYDGKWQELIDLTAVITNEPP
EFYFPDPNYLPIDRSFLQEYIPQILDDAPYTEGVKYTYGQRLRSWFKRDQIEQVINKLIG
EIDAASGVMSLWDVNDHDKGGSPCLNHIWVRVVDNELSLTATLRSNDMFAAWPANAMGLR
ALQQHIRDAIAKRSDYNLQMGPLITISQSAHIYDDTWENVDKLISNQYAKIINNRDYFDP
SGNFLIEVEDGQIMVKQTTSGSGEIVACYSGKNPLKLVRDICAASPAIQPDHIGYLGMEL
QKAYQSLKLGNRYTQDQ
NT seq 1494 nt   +upstreamnt  +downstreamnt
atgaccttagcatcttctaattatcaattcacttacaccccccattataaaccaaatcaa
ttgatttgtggttatggacagactgctgttattacgggatggacagttaaacagtcagtt
gctaaacaattaaaccctgaagactatgcagttattggtaatttatatagtcctaccagg
ggaattagtcctttaattcgcaatttattagcgaacccccatgtgagatttttagtcatt
ttacaagcaactaaagaagataaaaatgcagggggatgtcaatgtttattagatttttta
gctaatgggtttactaaaggaacaagcgatacagggagagatacttgggttattaattct
acaattactggatatattgatattgaaattactgctgatgcgttagaaactttacgtcaa
tctttagactataaagaagtaaaatctattagtgaagtagtaaattatgttaaagaattt
gccaaggaaactcataagcaaacttggggagaacctttaatttttcctatcgttgaaacc
accccaaccgtgttacctggaccaagatatggtcatcgtattgaaggaaaaactattgca
gaaacttgggtaaaaatattgcatcgtattaaaacaaccggaaccattcgaccaacaggt
tatgatggaaaatggcaagaattaattgacttaacagcagttattactaatgaaccccct
gagttttattttccagaccctaattatttacccattgatcgttcttttcttcaagaatat
atcccccaaattttagatgatgcaccttatactgaaggggtaaaatacacatacggtcaa
cggttaagatcttggtttaaacgggatcaaattgaacaagttattaataaattgattgga
gaaattgacgcagcaagtggggtaatgtccctctgggatgtgaacgatcatgataaagga
ggaagtccttgtttaaatcatatttgggtgagagttgtcgataatgaattgtctttaact
gctactttgcgaagtaatgatatgtttgctgcttggcctgcaaatgcaatgggtttgaga
gcattacagcaacatattcgggatgcaattgctaagcgttcagactataatttacagatg
ggtccattaataaccattagtcaaagtgcccatatttatgacgatacttgggaaaatgtt
gataaattaattagcaatcaatatgctaaaattattaataatcgagactattttgatcca
tcaggtaactttttaattgaagtagaagatggacaaattatggttaagcaaacgacttca
ggaagtggagaaattgttgcttgttattctggcaaaaatcctcttaagttagttcgagat
atctgtgctgcttctcctgcaatacaacctgatcatattggttatttaggaatggagtta
cagaaagcttatcaatctttaaaattgggtaatcgctatacacaagatcagtaa

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