Entry
Name
(RefSeq) probable thiamine biosynthetic bifunctional enzyme, chloroplastic
KO
Organism
tang Typha angustifolia (narrow-leaf cattail)
Pathway
Module
tang_M00897 Thiamine biosynthesis, plants, AIR (+ NAD+) => TMP/thiamine/TPP
Brite
KEGG Orthology (KO) [BR:tang00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
140780103
Enzymes [BR:tang01000 ]
2. Transferases
2.5 Transferring alkyl or aryl groups, other than methyl groups
2.5.1 Transferring alkyl or aryl groups, other than methyl groups (only sub-subclass identified to date)
2.5.1.3 thiamine phosphate synthase
140780103
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.49 hydroxymethylpyrimidine kinase
140780103
2.7.4 Phosphotransferases with a phosphate group as acceptor
2.7.4.7 phosphooxymethylpyrimidine kinase
140780103
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SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
3:join(7181150..7181491,7181586..7181660,7182299..7182374,7182457..7182532,7182690..7182824,7182983..7183047,7183175..7183302,7183694..7183950,7184109..7184643)
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AA seq
562 aa AA seq DB search
MAMASVFHPLPIRLPRDLFSLHLRPSPKSLSSHKKPFLFTTTTTTITAVMSESTEDSAPD
GHVATKLPHVLTVAGSDSGAGAGIQADIKACAALGVYCSSVVTAVTAQNTVGVQGVHIVP
EEFIEEQLRSVLSDMEVYVVKTGMLPSVGVIKVLCDSLKKFPVKALVVDPVMVSTSGDML
SAPSTVAGYRDELFKMADIVTPNLKEASALLGGMPLRTVSDMYSAAKSIHNLGPRNVLVK
GGDLTDSSDAIDIFFDGENCHELRGSRVKTRNTHGTGCTLASCIAAELAKGSPMLQAVQT
AKAFVEGALHYSKDMVTGKGAQGPFDHLYRLKSPHYNVAHTPTFNADDLLLYAVTDSGMN
KKWGRSIMDAVKAAIEGGATIIQLREKEAETCDFLEAAMACIEICRSNGVSLLINDRVDI
ALACNADGVHVGQSDMPAHTVRKLLGPGKIIGVSCKTVAQAEQAWAGGADYIGCGGVFPT
NTKANNLTVGLEGLKAVCLASKLPVVAIGGIGAGNVHSVMEIGVPNLKGVAVVSALFDRE
CIVTETRKLRSALLEAGSKAKL
NT seq
1689 nt NT seq +upstream nt +downstream nt
atggcgatggcctccgtcttccatccgcttcccatccgtctcccgagagatttattctct
ctccatctccgcccctctcccaaatctctctcctcgcataagaaacccttcctctttact
actactactactactatcactgcagtgatgtctgaatccaccgaagactccgctcccgac
ggccacgtggcgaccaagctcccgcacgtgctcaccgtcgccggctcggattccggggcc
ggcgcgggaatccaggccgacatcaaggcttgcgccgccctcggcgtctactgctcctcc
gtcgtcaccgccgtcaccgctcagaacaccgtcggcgtccagggagttcatattgtgccg
gaggagtttatcgaggagcagttgaggtcggtgctttcggatatggaagtgtatgtggta
aagacagggatgcttccttctgttggagtaattaaggttttatgtgatagtctcaaaaag
ttccctgtcaaagctttagtggtggatcctgtcatggtatctactagtggggatatgctt
tctgcaccatctaccgttgctggatatagggatgagctttttaaaatggctgatatagtt
accccaaatctgaaagaagcatcagcactacttgggggcatgccactaagaacagtatct
gacatgtattctgcagcaaaatcaatacataatttaggtcctagaaatgttcttgtaaag
ggtggggatctcacagattcatcggatgccattgatatattctttgatggggagaattgc
catgagctacgtggatcacgtgtgaagacacgtaatactcatggaactggttgcactctg
gcttcatgtattgcagcggaattggcaaaaggttcgccgatgctgcaagctgttcagaca
gccaaggcctttgtggaaggtgcacttcattacagcaaagatatggtcaccggtaaagga
gctcaaggtccttttgatcacctatacaggcttaagagtcctcactataatgtggcacat
acaccaacattcaatgcagatgatcttcttttgtatgcggttactgattcggggatgaac
aagaagtggggccgttccataatggatgctgtcaaagctgccattgaaggaggtgccaca
attattcagctgagagaaaaggaagctgaaacatgtgactttttggaagcagcaatggca
tgcatagagatctgccggtccaacggagtatcactgctgatcaatgacagggtcgatatt
gccctcgcttgcaatgctgatggtgtgcatgttggccagtctgacatgccagcacatact
gttcgcaagctcttggggccagggaagatcatcggtgtctcatgtaagacagtagcccaa
gctgagcaggcatgggcaggcggtgctgattacattggctgtgggggtgtttttccaact
aacacaaaggcaaacaatcttactgtcggattggaaggattgaaggctgtctgtttggct
tccaaattgcctgttgtcgcaattggcggcattggtgctggaaatgttcattcagtgatg
gaaattggtgtccctaatctgaaaggtgttgcggtggtctctgctttgtttgatcgcgag
tgtattgtgacagaaacgcgtaaactaaggtccgccttacttgaagctggctctaaagct
aagttataa