Entry
Name
(RefSeq) bifunctional dihydrofolate reductase-thymidylate synthase
KO
Organism
Pathway
Module
tgo_M00938 Pyrimidine deoxyribonucleotide biosynthesis, UDP => dTTP
Brite
KEGG Orthology (KO) [BR:tgo00001 ]
09100 Metabolism
09104 Nucleotide metabolism
00240 Pyrimidine metabolism
TGME49_249180
09108 Metabolism of cofactors and vitamins
00790 Folate biosynthesis
TGME49_249180
00670 One carbon pool by folate
TGME49_249180
Enzymes [BR:tgo01000 ]
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
TGME49_249180
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.45 thymidylate synthase
TGME49_249180
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
XII:complement(join(4362462..4362545,4363083..4363393,4364028..4364120,4364521..4364662,4365067..4365139,4365519..4365612,4366108..4366357,4366769..4367100,4367566..4367702,4368196..4368512))
Genome browser
AA seq
610 aa AA seq DB search
MQKPVCLVVAMTPKRGIGINNGLPWPHLTTDFKHFSRVTKTTPEEASRLNGWLPRKFAKT
GDSGLPSPSVGKRFNAVVMGRKTWESMPRKFRPLVDRLNIVVSSSLKEEDIAAEKPQAEG
QQRVRVCASLPAALSLLEEEYKDSVDQIFVVGGAGLYEAALSLGVASHLYITRVAREFPC
DVFFPAFPGDDILSNKSTAAQAAAPAESVFVPFCPELGREKDNEATYRPIFISKTFSDNG
VPYDFVVLEKRRKTDDAATAEPSNAMSSLTSTRETTPVHGLQAPSSAAAIAPVLAWMDEE
DRKKREQKELIRAVPHVHFRGHEEFQYLDLIADIINNGRTMDDRTGVGVISKFGCTMRYS
LDQAFPLLTTKRVFWKGVLEELLWFIRGDTNANHLSEKGVKIWDKNVTREFLDSRNLPHR
EVGDIGPGYGFQWRHFGAAYKDMHTDYTGQGVDQLKNVIQMLRTNPTDRRMLMTAWNPAA
LDEMALPPCHLLCQFYVNDQKELSCIMYQRSCDVGLGVPFNIASYSLLTLMVAHVCNLKP
KEFIHFMGNTHVYTNHVEALKEQLRREPRPFPIVNILNKERIKEIDDFTAEDFEVVGYVP
HGRIQMEMAV
NT seq
1833 nt NT seq +upstream nt +downstream nt
atgcagaaaccggtgtgtctggtcgtcgcgatgacccccaagaggggcatcggcatcaac
aacggcctcccgtggccccacttgaccacagatttcaaacacttttctcgtgtgacaaaa
acgacgcccgaagaagccagtcgcctgaacgggtggcttcccaggaaatttgcaaagacg
ggcgactctggacttccctctccatcagtcggcaagagattcaacgccgttgtcatggga
cggaaaacctgggaaagcatgcctcgaaagtttagacccctcgtggacagattgaacatc
gtcgtttcctcttccctcaaagaagaagacattgcggcggagaagcctcaagctgaaggc
cagcagcgcgtccgagtctgtgcttcactcccagcagctctcagccttctggaggaagag
tacaaggattctgtcgaccagatttttgtcgtgggaggagcgggattgtacgaggcagcg
ctgtctctgggcgttgcctctcacctgtacatcacgcgtgtagcccgcgagtttccgtgc
gacgttttcttccctgcgttccccggagatgacattctttcaaacaaatcaactgctgcg
caggctgcagctcctgccgagtctgtgttcgttcccttttgtccggagctcggaagagag
aaggacaatgaagcgacgtatcgacccatcttcatttccaagaccttctcagacaacggg
gtaccctacgactttgtggttctcgagaagagaaggaagactgacgacgcagccactgcg
gaaccgagcaacgcaatgagctccttgacgtccacgagggagacaactcccgtgcacggg
ttgcaggctccttcttcggccgcagccattgccccggtgttggcgtggatggacgaagaa
gaccggaaaaaacgcgagcaaaaggaactgattcgggccgttccgcatgttcactttaga
ggccatgaagaattccagtaccttgatctcattgccgacattattaacaatggaaggaca
atggatgaccgaacgggcgttggtgtcatctccaaattcggctgcactatgcgctactcg
ctggatcaggcctttccacttctcaccacaaagcgtgtgttctggaaaggggtcctcgag
gagttgctgtggttcattcgcggcgacacgaacgcaaaccatctttctgagaagggcgtg
aagatctgggacaagaatgtgacacgcgagttcctcgattcgcgcaatctcccccaccga
gaggtcggagacatcggcccgggctacggcttccagtggagacacttcggcgcggcatac
aaagacatgcacacagactacacaggtcagggcgtcgaccagctgaagaatgtgatccag
atgctgagaacgaatccaacagatcgtcgcatgctcatgactgcctggaatcctgcagcg
ctggacgaaatggcgctgccgccttgtcacttgttgtgccagttctacgtgaacgaccag
aaggagctgtcctgcatcatgtatcagcggtcgtgcgatgtcggcctcggcgtccccttc
aacatcgcttcctattcgcttttgacgctcatggttgcacacgtctgcaacctaaaacct
aaggagttcattcacttcatggggaacacgcatgtctacacgaaccatgtcgaggcttta
aaagagcagctgcggagagaaccgagaccgttccccattgtgaacatcctcaacaaggaa
cgcatcaaggaaatcgacgatttcaccgccgaggattttgaggtcgtgggctacgtcccg
cacggacgaatccagatggagatggctgtctag