Entry
Name
(RefSeq) putative bifunctional dihydrofolate reductase-thymidylate synthase isoform X1
KO
Organism
osa Oryza sativa japonica (Japanese rice)
Pathway
Module
osa_M00126 Tetrahydrofolate biosynthesis, GTP => THF
osa_M00938 Pyrimidine deoxyribonucleotide biosynthesis, UDP => dTTP
Brite
KEGG Orthology (KO) [BR:osa00001 ]
09100 Metabolism
09104 Nucleotide metabolism
00240 Pyrimidine metabolism
9271078
09108 Metabolism of cofactors and vitamins
00790 Folate biosynthesis
9271078
00670 One carbon pool by folate
9271078
Enzymes [BR:osa01000 ]
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
9271078
2. Transferases
2.1 Transferring one-carbon groups
2.1.1 Methyltransferases
2.1.1.45 thymidylate synthase
9271078
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SSDB
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
12:join(15562807..15563216,15563318..15563717,15563795..15563839,15564677..15564742,15566000..15566061,15566144..15566218,15566332..15566497,15567555..15567678,15568348..15568454,15568566..15568676)
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AA seq
521 aa AA seq DB search
MSTNVNNGNSESNLKRSYQVVVSATRDMGIGKDGTLPWKLPGDLKFFKDITVTTSDPSKK
NAVVMGRKTWESIPLKFRPLPGRLNVILTRSGSFDFATAENVVICGSLDSALQLLATTPY
CLTVEKTFIIGGGEILRQSLNAPACEAIHLTDIESSIECDTFIPPIDLSMFHPWYSSFPV
VENGIKHSFISFVRVTKSIAEANDSSGKELTGNDSKKVKFEIENFSFLPKMIFERHEEYQ
YLNLVQDIIRNGAKKNDRTGTGTVSKFGCQMRFNLRRNFPLLTTKRVFWRGVLEELLWFI
SGSTNAKVLQEKGIHIWDGNASRQYLDSIGLTQREEGDLGPVYGFQWRHFGAEYTDMHAD
YVGKGFDQLMDVIDKIKNNPDDRRIILSAWNPTDLKKMALPPCHMFAQFYVENGELSCQM
YQRSADMGLGVPFNIASYSLLTCMIAQVCDLSPGDFVHVIGDAHVYRTHVEALEEQMRKQ
PKPFPILKINPVKKDIDSFVTSDFKLVRYDPHHKIEMKMAV
NT seq
1566 nt NT seq +upstream nt +downstream nt
atgtctacaaatgttaacaatggtaactcagagagcaaccttaagagaagttatcaagtt
gtggtttctgctactcgcgacatgggtattgggaaggatgggacgctgccatggaagctg
ccgggtgacctgaagttttttaaagatattacagtgactacgtcagacccttcaaagaaa
aatgctgttgtaatgggaaggaaaacatgggaaagcataccccttaagtttagaccactc
cctggtcgtttgaatgtaatattgactcgttctgggagttttgattttgcaactgcagaa
aatgttgttatctgtgggagtttggattctgccttgcaactgctagcaacaactccatac
tgtttgacagttgagaaaacttttataataggaggtggcgagattctgaggcaatcttta
aatgcgcctgcttgtgaggccatccatcttaccgacatagagtccagcattgaatgtgat
actttcattcctccaattgatctctccatgttccacccatggtattcatcatttccagtg
gtagaaaacggcatcaagcattctttcatttcctttgttcgtgttacaaaatcaattgca
gaagctaatgattctagtggcaaggaattgactggaaatgattctaagaaggtcaagttt
gaaattgagaatttttcctttttacctaaaatgatatttgaaaggcacgaggagtatcaa
tatctcaatcttgttcaagatataataagaaatggtgctaagaaaaatgacagaacagga
acagggacagtatcaaagtttggttgccagatgcggttcaacttaaggaggaactttcca
ttgctcacaacgaagagggtattttggcgtggtgttcttgaagagctattgtggttcatt
agtggctcaacaaatgcaaaggttttacaggagaaaggtattcacatatgggatggcaat
gcttcaaggcagtatcttgacagtattggtttaacacaaagggaggagggggacttggga
ccagtttatggatttcagtggagacactttggtgctgaatatactgacatgcatgctgac
tacgtgggaaaaggttttgatcagttaatggatgtcattgacaagatcaagaataatccc
gatgatagaagaatcattttatctgcatggaatccaacagacctgaaaaagatggccctg
ccaccatgccacatgtttgctcagttttatgttgagaatggggagttgtcatgccagatg
taccaacgctctgctgatatggggctcggtgtgccattcaacattgcatcatattctctt
ctgacatgtatgattgcacaagtgtgtgatctttctcctggggattttgtccatgttata
ggtgatgcccatgtttaccgtacgcatgttgaagcgttagaggagcaaatgcggaagcag
cctaaaccattccctattttgaagataaatcctgtgaagaaagatattgattcttttgta
acatcagacttcaaactggttcgctatgatcctcaccataagatagaaatgaagatggca
gtatga