Entry
Name
(RefSeq) thiamine biosynthetic bifunctional enzyme TH1, chloroplastic isoform X1
KO
Organism
mdm Malus domestica (apple)
Pathway
Module
mdm_M00897 Thiamine biosynthesis, plants, AIR (+ NAD+) => TMP/thiamine/TPP
mdm_M00899 Thiamine salvage pathway, HMP/HET => TMP
Brite
KEGG Orthology (KO) [BR:mdm00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
103425403
Enzymes [BR:mdm01000 ]
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
103425403
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.49 hydroxymethylpyrimidine kinase
103425403
2.7.4 Phosphotransferases with a phosphate group as acceptor
2.7.4.7 phosphooxymethylpyrimidine kinase
103425403
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SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
15:join(53444858..53445205,53445340..53445414,53446557..53446632,53446849..53446924,53451777..53451911,53453108..53453172,53453279..53453406,53454051..53454298,53454921..53455464)
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AA seq
564 aa AA seq DB search
MAVAFLGCTHNFNCLALYHDQAVLPEFRQSKGLSFLVNSRISRGKQSRASMEMRGSGGPM
TSDHSAVKIPLVLTVAGSDSGAGAGIQADLKACAARGVYCSTVITAVTAQNTVGVQGVNI
VPEDFVAEQMKSVLSDMDVDVVKTGMLPSIGIVKILHQQLQVYPVRALVVDPVMVSTSGD
VLADPSILAVFREELLPMADIVTPNLKEASALLDGVKINTVSDMLSAAKLLHDMGPRNVL
VKGGDLPDSLDAVDVFFDGEHLYELRSSRIKTRNTHGTGCTLASCIAAELAKGSSMLKAV
KASKFFVETALDYSKDISIGKGPQGPFDHLMNLKHNSGRQVRFNPSDLFLYAVTDSRMNR
KWGHSISDAVKDAVQGGATIVQLREKDIETGDFLEAAKSCLQICRAHGIPLLINDRIDVA
LASDADGVHIGQSDMPAHVARSLLGPEKIIGVSCKTPEQAEKAWLGGADYIGSGGVYPTN
TKENNRTIGLDGLKTVCLASKLPVVAIGGINISNAREVMEIGVPNLKGVAVVSALFDREC
VLTETRKLHAVLTEATAAAAAAAK
NT seq
1695 nt NT seq +upstream nt +downstream nt
atggctgttgcatttctgggttgcactcataatttcaattgtttggcgctatatcatgac
caggctgtgctcccagagttcaggcaatcaaaaggtttgagctttttggtgaattcgaga
atcagccgaggcaagcaatcgagagcttcaatggagatgcggggaagtggaggtccaatg
acaagtgaccactctgcagttaagattccacttgtactgactgttgctggctccgattcc
ggtgccggtgctggaatccaagctgatcttaaggcttgtgctgctcgcggagtgtactgc
tctactgtcataaccgctgttactgcacaaaacactgttggcgttcagggtgtaaacatt
gtgcctgaggattttgttgctgagcagatgaagtctgtgctatctgatatggatgtcgat
gtggtgaaaactgggatgttaccttctattggcatcgttaagattcttcatcaacaactt
caggtgtatcctgttcgagctttagtggttgaccctgttatggtgtctacaagtggagat
gtattggctgatccttcaatacttgctgtgtttagagaggagcttcttcctatggctgac
atagtaactccaaatttgaaagaggcatcggctttactggatggagtgaaaataaacaca
gtttctgacatgctttctgctgcaaaattgttacatgatatgggtccacgaaatgttctt
gtcaaaggaggagacctccctgattcattggacgctgttgatgtcttcttcgatggcgag
cacttatatgagctgcgttcgtcacgcatcaaaactcgtaatactcatggaactggttgc
actttggcatcatgtattgcagctgagctggcaaaaggttcttcaatgctcaaggctgtt
aaggcatctaagttctttgtcgagactgccttggattatagcaaagatatttccattgga
aaaggtccccaaggcccttttgatcatctaatgaacctcaagcacaactctggtcgacaa
gtcagattcaatccaagcgatctattcttgtatgctgttacagattcgcgtatgaaccga
aagtggggccattctatctcagatgctgttaaagatgccgtacaaggaggtgctacaatt
gtccaattgagggaaaaggatattgaaacaggggattttctggaagcagctaagtcatgt
ctccaaatttgccgtgcccatggaattccattactaataaatgatcgtatagatgttgcg
cttgcttctgatgctgatggggtgcatattggccagtctgacatgcctgcccatgttgca
cgttctctccttggtcctgaaaagataattggcgtgtcatgcaagacaccagagcaggcg
gagaaagcatggcttggtggtgctgattacattggtagtggtggtgtatatccaactaat
acaaaggaaaacaatcgcactataggcttggacgggctgaaaactgtttgtttggcgtct
aaattacccgtggttgcgattggtgggatcaatatttcaaatgcacgtgaggtgatggaa
attggtgtaccgaacctgaaaggcgttgcagttgtgtctgctctatttgatagggaatgt
gttttgacagagactaggaagttgcatgcagtgctaacggaggcaacagcagcagcagca
gcagcagcaaagtga