MetaCyc Pathway: superpathway of pyrimidine deoxyribonucleotides de novo biosynthesis (E. coli) in Rhodosporidium toruloides IFO0880

Add experiment(s):


Nucleoside-triphosphatase:
CTP + H2O→CDP + H+ + phosphate
(EC 3.6.1.15; 3.6.1.5)
No genes
Ribonucleoside-diphosphate reductase (in reverse):
UDP + a reduced NrdH glutaredoxin-like protein→dUDP + an oxidized NrdH glutaredoxin-like protein + H2O
(EC 1.17.4.1)
mRNA_2804 (11172)
mRNA_2922 (11290)
mRNA_5869 (14237)
CTP + formate + H+→dCTP + CO2 + H2O (EC 1.1.98.6)
No genes
formate + UTP + H+→dUTP + CO2 + H2O (EC 1.1.98.6)
No genes
Ribonucleoside-diphosphate reductase (in reverse):
UDP + a reduced thioredoxin→dUDP + an oxidized thioredoxin + H2O
(EC 1.17.4.1)
mRNA_2804 (11172)
mRNA_2922 (11290)
mRNA_5869 (14237)
Ribonucleoside-diphosphate reductase (in reverse):
CDP + a reduced thioredoxin→dCDP + an oxidized thioredoxin + H2O
(EC 1.17.4.1)
mRNA_2804 (11172)
mRNA_2922 (11290)
mRNA_5869 (14237)
Nucleoside-diphosphate kinase:
dUDP + ATP→dUTP + ADP
(EC 2.7.4.6)
mRNA_7311 (15679)
mRNA_575 (8943)
Ribonucleoside-diphosphate reductase (in reverse):
CDP + a reduced NrdH glutaredoxin-like protein→dCDP + an oxidized NrdH glutaredoxin-like protein + H2O
(EC 1.17.4.1)
mRNA_2804 (11172)
mRNA_2922 (11290)
mRNA_5869 (14237)
Nucleoside-diphosphate kinase:
dCDP + ATP→dCTP + ADP
(EC 2.7.4.6)
mRNA_7311 (15679)
mRNA_575 (8943)
dCTP deaminase:
dCTP + H+ + H2O→dUTP + ammonium
(EC 3.5.4.13)
No genes
dUTP diphosphatase:
dUTP + H2O→dUMP + diphosphate + H+
(EC 3.6.1.23; 3.6.1.9)
mRNA_6270 (14638)
mRNA_31 (8399)
Thymidylate synthase:
dUMP + a 5,10-methylenetetrahydrofolate→dTMP + a 7,8-dihydrofolate
(EC 2.1.1.45)
mRNA_2476 (10844)
mRNA_2477 (10845)
T(2)-induced deoxynucleotide kinase:
dTMP + ATP→dTDP + ADP
(EC 2.7.4.12; 2.7.4.13; 2.7.4.9)
mRNA_6884 (15252)
Nucleoside-diphosphate kinase:
dTDP + ATP→dTTP + ADP
(EC 2.7.4.6)
mRNA_7311 (15679)
mRNA_575 (8943)

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Candidate genes for each reaction are identified from best hits to MetaCyc; by matching EC numbers (which are assigned by TIGRFam, SEED, or best hits to KEGG); or by matching SEED roles to KEGG reactions to MetaCyc reactions. See the "Protein" tab of each gene for more information