Novibacillus thermophilus: B0W44_01880
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Entry
B0W44_01880 CDS
T04694
Name
(GenBank) hypothetical protein
KO
K00158
pyruvate oxidase [EC:
1.2.3.3
]
Organism
ntr
Novibacillus thermophilus
Pathway
ntr00620
Pyruvate metabolism
ntr01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
ntr00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
B0W44_01880
Enzymes [BR:
ntr01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.3 With oxygen as acceptor
1.2.3.3 pyruvate oxidase
B0W44_01880
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
TPP_enzyme_C
TPP_enzyme_M
TPP_enzyme_N
DXP_synthase_N
POR_N
PglD_N
Motif
Other DBs
NCBI-ProteinID:
AQS54707
UniProt:
A0A1U9K3T6
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All DBs
Position
complement(345131..346762)
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AA seq
543 aa
AA seq
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MQSASPTVSDIILRQLSLWGIRRIYGVAGDAVLPFLHAVGQQTAVQYIAARHESGAAFMA
SAEGKCSREMAVCLGTSGPGLVNMLNGIVDATADRVPLLVLTGQIALKKVGTEAKQYIEQ
QQMIAPLAVYSAQLLHPDATVEVLQKAVIEAHSKRGVAHISVPVDVWNVPCSREPHQPTG
VLKTSRYQNLEQLEQAVNLLSAAEAPMILIGTGARGASRAIAELAEAMGAGIVETLGAKG
TVPHSHPLNVGGIGEGGSEASRNLLQQSDCVLAVGANWWPEGFVPKDTQVIHIDTAPASI
EAHPEVVCGLVGDAAEILPLIQQQLPQGPKSSWQGHIHEARAHFDAFLDRERQNDAHPVA
PQRVIAALDETVDDRAIVAVDTGDHTVWFNRVFRATQQDILFSGKWRTMGFALPAAIAAK
LTFPERQVVACVGDGSFAMTMMELATAVTYRTPVSVIVMNNRSLSMEKNSMNAQGMQPFG
TELINPNFADLAQAFGAKGIHVETADELSPALETAFTCGEPAVVDVHTSDAMPPFTYFKQ
AVQ
NT seq
1632 nt
NT seq
+upstream
nt +downstream
nt
atgcagagtgcgagtccaactgtttctgacattatcttaaggcagttgtccttatggggg
attcgtcgaatttacggtgttgcgggggatgcggttttgccgtttctacacgctgtcgga
cagcaaacggccgtccagtacatcgccgcccgccacgaatcaggggccgccttcatggcg
tctgcggaaggaaagtgctcccgagaaatggccgtatgcctcggcacgagcggacctggc
ctcgtgaacatgctaaacggcatagtcgacgcaacagccgaccgcgtccctttgctcgtc
ctgacgggacaaatcgctttgaaaaaagtcgggactgaggcgaaacagtacattgaacag
cagcaaatgatcgcccccctcgccgtttactcggcccagctcctgcatcccgatgccact
gtggaggtgttgcaaaaggcggtcatcgaagctcactccaagcgaggggtcgcccacata
tccgtaccggtggatgtgtggaatgtcccctgttcacgggaaccgcaccagccgacgggt
gtgttaaaaacgagtcgataccaaaatctcgaacaactggagcaagctgtcaaccttttg
tccgctgcggaagccccgatgatactcatcggcaccggcgcaaggggcgcatccagagcg
atcgccgaattggcggaggcgatgggggctggcatcgtcgaaacgttgggggcgaaaggc
accgtcccgcactcacaccctctaaatgtaggcggcattggagaaggtggaagtgaagcg
agccgaaatctgttgcagcagtcggactgcgtgctcgccgtcggtgccaactggtggccg
gaggggttcgtcccaaaagacacccaagtgattcacattgacactgcgcctgccagtatt
gaggcccatccggaagtggtctgcggccttgtcggcgatgccgccgagattctccccctc
atccaacagcaactgccgcaaggaccgaagtcctcttggcaaggacacattcacgaagcg
agagcacacttcgacgcgttcctggacagggagcgccagaacgacgcccaccccgttgca
ccacagcgcgtcatagccgccctcgatgaaacagtggacgatcgcgccatcgtcgcagtc
gacactggtgaccacacggtttggtttaaccgcgttttccgggccacacagcaagacatt
ctcttctctggaaaatggcgaacgatggggtttgccctccctgccgccattgcggcgaaa
ctcacctttccagagcgccaggtcgtcgcatgcgtcggtgacggcagttttgccatgacg
atgatggaattggctactgctgtcacctaccgcactcctgtctccgtcattgtcatgaac
aaccgttccctctccatggagaaaaacagcatgaatgcgcaaggcatgcaacctttcggc
accgagctcatcaacccgaatttcgccgatctcgctcaagcgttcggcgccaaaggcatt
cacgttgagactgcagacgagctctcacctgcgttggaaacggcgtttacatgcggcgaa
ccggccgtagtggacgtccacacatcggacgcgatgccaccgttcacctattttaaacag
gccgttcagtag
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