Entry
Name
(RefSeq) uncharacterized protein
KO
Organism
apuu Aspergillus puulaauensis
Pathway
Module
apuu_M00898 Thiamine biosynthesis, pyridoxal-5P => TMP/thiamine/TPP
Brite
KEGG Orthology (KO) [BR:apuu00001 ]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
APUU_10953A
Enzymes [BR:apuu01000 ]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.1 Phosphotransferases with an alcohol group as acceptor
2.7.1.49 hydroxymethylpyrimidine kinase
APUU_10953A
2.7.4 Phosphotransferases with a phosphate group as acceptor
2.7.4.7 phosphooxymethylpyrimidine kinase
APUU_10953A
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
APUU_10953A
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
1:complement(join(2452465..2452592,2452668..2452883,2452946..2453054,2453130..2453195,2453253..2453403,2453466..2454010,2454064..2454146,2454231..2454412,2454473..2454525))
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AA seq
510 aa AA seq DB search
MSVGRVLVIAGSDSSGGAGLEADQRVLTVHGCYALTATTGLTAQNTLGVQDIFVVPAEFV
KKQISASLDDVGADVIKLGMLSSAETIDIIADALTSYQIPAVVLDPVMISTSGSQLLPEA
AVQGLRKKLLPLTTVLTPNIPEAKLLIKDSGLDYTEPEDLHGLIDLAKQVTTLGPKAVLL
KGGHLPLTNDHKTARSAGEASRVIDVLYDREEVTLFETEFLVSKNTHGTGCSLASAIAAN
LALGKDMKRAVRSAVRFVEAGIKTSTQLGKGSGPINHFHSVYSVPFAPGRFLEYILDRPD
VQSVWKRFTEHEFVRGLGSGTLPIERFKEYLVQDYLYLVHFARSNALAAYKAKDMESIAA
SAKIVLHIERETALHIDYCTSFGLSKEEMEKLPETGACTAYSRYILDVGQSEDWLALQVA
LAPCLIGYGAIAQRLYAEEKTLREGNRYFKWIENYVAEDYTEAVRLGSELLEKHMRKVSP
SRMEELIKIFIRATELEISFWSMGLGNGHP
NT seq
1533 nt NT seq +upstream nt +downstream nt
atgtcagtcgggcgagtcctggttatcgcaggatccgacagctccggcggagcaggtctt
gaggctgaccagagagtcttaactgtccatggatgttatgccctcacggcgactacaggc
ctcacagcccagaacaccctaggggtgcaagacatcttcgtggttccggctgagttcgtc
aagaagcaaatcagcgccagcctggacgatgtcggtgccgacgtgatcaagctggggatg
ttgtcgtccgcagagaccattgacatcatcgcagatgcgcttacatcgtatcaaattcca
gccgtggttttggatccggtgatgatctcaaccagcgggtctcagttattacctgaagct
gctgtccagggtctgcgcaagaaactgctgcctctgacaactgttctcacgcccaacatc
ccagaagcaaaacttcttataaaagactcaggtctagactataccgaacccgaagacctt
catgggcttattgatctcgcaaaacaagtcacaacgttgggccccaaagctgttctgcta
aagggtggccatctgccgctcacaaacgaccacaaaactgcccgcagcgcaggcgaagcc
tctcgagtcattgatgtactttatgatagagaggaggttactctgtttgaaactgaattt
ctagtctcgaagaacacccacggcaccggttgctctctcgcatcggccattgcggcaaac
ctcgcgctcggaaaggatatgaagagagccgtgcgcagtgctgttcgttttgttgaagca
ggaatcaagaccagcacccaactcggaaaaggaagcggtccaatcaaccacttccactcc
gtctattccgtgccatttgcaccgggacggtttttggagtacattctagatcgtcccgat
gtacaatcagtatggaagcgattcacagagcatgaatttgtccgaggactcggcagcggt
acccttccaatcgaacggttcaaagaatacctggtgcaggattacctctaccttgtccac
tttgctcggagcaacgcacttgctgcgtataaggccaaagatatggaatccatagccgca
tcagctaaaatcgttctacacatcgaacgagagacagcgctccacattgactactgcacg
tcattcgggctatccaaagaagaaatggagaagcttccagagactggtgcatgcaccgcg
tacagcagatacatcctcgatgtgggccaatcagaagactggcttgcactgcaggtagcc
ttagcaccatgtttaattggatatggagccatcgcacaaaggctatacgcggaggaaaag
acgcttcgggagggcaaccgatacttcaagtggatagaaaattacgttgcggaggattac
actgaggctgtccgtctagggtccgaactactggaaaagcacatgaggaaagtctcaccg
tcgcggatggaagagttgatcaagatcttcattagagcaactgagttggaaatcagtttc
tggagcatgggcctcggcaatgggcacccctga