Entry
Symbol
CDEST_00213
Name
(RefSeq) Putative thiaminase-2/PQQC, pyridoxamine kinase/Phosphomethylpyrimidine kinase, thiaminase II
KO
Organism
cdet Colletotrichum destructivum
Pathway
Module
cdet_M00898 Thiamine biosynthesis, pyridoxal-5P => TMP/thiamine/TPP
Brite
KEGG Orthology (KO) [BR:cdet00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
87936716 (CDEST_00213)
Enzymes [BR:cdet01000 ]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.49 hydroxymethylpyrimidine kinase
87936716 (CDEST_00213)
2.7.4 Phosphotransferases with a phosphate group as acceptor
2.7.4.7 phosphooxymethylpyrimidine kinase
87936716 (CDEST_00213)
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.99 In other compounds
3.5.99.2 aminopyrimidine aminohydrolase
87936716 (CDEST_00213)
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
1:join(733018..733070,733134..733315,733369..733451,733511..733895,733944..734103,734150..734300,734349..734414,734462..734570,734620..734835,734893..734972,735022..735060)
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AA seq
507 aa AA seq DB search
MVQGRVLVIAGSDSSGGAGLEADQKVIAAHGCYAMTATTALTAQDTTGVHDIHHVPQEFL
VKQIDACVGDIGVDVVKTGMLASPTTIGTVVEALKRHKIPRVVVDPVMIATSGAELLPRE
AVAELLEGLLRLTTVLTPNIPEAKLILEDSGYKSIEVKNVRDLDEMARSVQALGPEWVLV
KGGHAPFKADFTVAETEEEKAVVVDVLYGQGEFLHIQSPYQSSTNTHGTGCSLASAIASN
LAKGLSVPEAARSACRYIEAAIKTAPGFGKGHGPLNHFHSVQTLPFAPGRFIEYMLARPD
VKDVWKTFVYHPFVMAMGDGTLPMDSFKKYLIQDYLYLVHFARANALASYKAKNIADIAA
GATIVSHITREMSLHIDYCKDFGITVPEIEATEEHQACTAYTRYVLDVGMSEDWIALQMA
LAPCLLGYGAVAKQLHGDAKTKRDDNTYWKWIENYVADDYVGAVKTGSELIERHAVLQSP
SSIERLVKIFIHGTKMEIGFWEMFPSR
NT seq
1524 nt NT seq +upstream nt +downstream nt
atggtccagggacgggttctcgttattgccggctctgacagctcggggggagccggtcta
gaggcagaccagaaggtgatcgcggctcacggctgctatgccatgaccgccacgacggcc
ctgacggcacaggacactaccggcgtgcacgacattcaccatgtgccacaggagttcttg
gttaagcagattgacgcctgcgtcggcgacattggtgtcgatgttgtcaaaaccggtatg
ctggcttctcctacaacgataggtaccgttgtcgaggctctcaaaaggcacaaaatcccc
agggtggtcgtagacccggtcatgatcgcaactagcggtgcggagcttcttccccgcgaa
gccgtcgccgagctgctggagggtctcctaaggctcaccaccgtcctcacgcccaacatc
cccgaggcgaagctcattcttgaagactcgggttacaagtccatcgaagtgaagaacgtc
agggacctcgacgagatggcaaggtccgtccaggcgcttggtcccgagtgggtgctcgtc
aagggcgggcatgcgccgtttaaggcagacttcactgtggctgagacggaggaggagaag
gctgttgttgttgacgtgctctacggacaaggagagttcttgcatatccagagcccttat
cagagttccacgaacacgcatggaacaggctgctcgctcgcttctgccatcgcgtcgaac
ctcgccaaaggtcttagtgtacctgaagcagctaggtcagcttgtcgatacatcgaggct
gcgatcaaaaccgctccaggctttggcaagggacatggaccgttgaaccacttccattcg
gttcagacacttccatttgcgccgggacggttcattgagtatatgctcgcacgacccgat
gtcaaagacgtgtggaaaacgtttgtttaccaccccttcgtcatggccatgggcgatggc
acgctgcctatggattccttcaaaaaatacctcatccaagactacctctacctcgtccat
tttgccagagctaatgccctggcgtcgtacaaggccaagaacattgcggatattgcagct
ggcgctaccatcgtcagtcacatcactcgtgagatgagcttgcacatcgactactgcaaa
gatttcggcatcaccgtgcctgagattgaggcaaccgaagagcatcaagcctgcacggcg
tacacacgttacgttctcgacgtcggaatgagcgaggactggatcgccctgcaaatggcg
ctggccccttgtcttctcggatacggcgccgtggccaagcagcttcacggcgacgccaag
accaaacgcgacgacaacacgtactggaagtggatagagaactacgttgctgatgactac
gttggggccgtcaagaccggatcagagttgatcgagaggcatgccgtcttacagtccccg
tcgagtatcgagcggctggtcaagattttcattcatggaaccaagatggaaattggtttc
tgggagatgtttccttcccgatga