Qipengyuania citrea: NCF85_16625
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Entry
NCF85_16625 CDS
T08274
Symbol
adhP
Name
(GenBank) alcohol dehydrogenase AdhP
KO
K13953
alcohol dehydrogenase, propanol-preferring [EC:
1.1.1.1
]
Organism
qci
Qipengyuania citrea
Pathway
qci00010
Glycolysis / Gluconeogenesis
qci00071
Fatty acid degradation
qci00350
Tyrosine metabolism
qci00620
Pyruvate metabolism
qci00625
Chloroalkane and chloroalkene degradation
qci00626
Naphthalene degradation
qci01100
Metabolic pathways
qci01110
Biosynthesis of secondary metabolites
qci01120
Microbial metabolism in diverse environments
qci01220
Degradation of aromatic compounds
Brite
KEGG Orthology (KO) [BR:
qci00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
NCF85_16625 (adhP)
00620 Pyruvate metabolism
NCF85_16625 (adhP)
09103 Lipid metabolism
00071 Fatty acid degradation
NCF85_16625 (adhP)
09105 Amino acid metabolism
00350 Tyrosine metabolism
NCF85_16625 (adhP)
09111 Xenobiotics biodegradation and metabolism
00625 Chloroalkane and chloroalkene degradation
NCF85_16625 (adhP)
00626 Naphthalene degradation
NCF85_16625 (adhP)
Enzymes [BR:
qci01000
]
1. Oxidoreductases
1.1 Acting on the CH-OH group of donors
1.1.1 With NAD+ or NADP+ as acceptor
1.1.1.1 alcohol dehydrogenase
NCF85_16625 (adhP)
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Motif
Pfam:
ADH_zinc_N
ADH_N
AlaDh_PNT_C
Glu_dehyd_C
TrkA_N
2-Hacid_dh_C
Motif
Other DBs
NCBI-ProteinID:
USA63277
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Position
plas2:6588..7622
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AA seq
344 aa
AA seq
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MESTMKAAVVREFGKPLVMEEVAVPRPGAGQILVKIAATGVCHTDLHAAEGDWPVKPNPP
FIPGHEGVGHVVAVGAGVKHVKEGDRVGVPWLYDACGHCTHCLGGWETLCEEQHNTGYSV
NGSFAEYVLADPNYVGHLPGNVSFVDIAPILCAGVTVYKGLKVTDTKPGDWVVISGIGGL
GHLAVQYAKAMGLNVVAVDVDDRKLDLARSLGATLAVNARSEDPIAFVKKQIGGANGVLV
TAVSPKAFEQAMGMVGRGGTVALNGLPPGDFPLPIFDTVLNGVTVRGSIVGTRLDLQEAL
DFAGDGKVKATISTDKLENINDIFSRMNKGDIQGRVVIDFEQAT
NT seq
1035 nt
NT seq
+upstream
nt +downstream
nt
atggaaagcacgatgaaagccgcggtcgtccgtgaattcggaaagccattggtcatggag
gaagtcgcggtgccccgacctggcgccggccagatcctcgtcaagatcgcagccaccggt
gtgtgccacaccgacctgcatgccgctgagggcgattggccggtcaagcccaatccaccc
ttcattcctggtcacgagggcgtcggacatgtggtcgcggttggcgcaggtgtgaagcat
gtcaaggagggcgaccgggtgggcgtgccatggctatatgatgcctgcggccattgcacg
cactgcctgggcggctgggaaacgctgtgcgaggagcagcacaataccgggtattcggtg
aacggcagctttgccgaatatgttctcgccgatcccaattatgtggggcatctgcccggc
aacgtttcgttcgtcgatattgcgccgatcctgtgcgccggcgtcaccgtctacaagggc
ctcaaggtaaccgacaccaaaccgggcgactgggtggtgatctccggcatcggaggtctc
ggccatctcgccgtgcaatatgccaaggcgatgggcctcaacgtcgtcgccgtcgatgtc
gatgacaggaagctcgacctcgcccggtcgctgggggccacgttggcagtcaacgcccgt
tcggaagacccgatcgctttcgtgaagaagcagatcggaggcgcgaatggggtgttggtc
accgccgtgtcgcccaaggccttcgaacaggcgatgggtatggtgggacgcggcggcacg
gtcgcgctcaacggcctgccgcccggtgacttcccgctgccgatcttcgacacggtgctg
aacggcgtgaccgtgcggggatcgatcgtggggacgcggctcgatttacaggaagccttg
gacttcgccggtgacggcaaggtgaaagccacgatctcaaccgacaaactcgagaacatc
aacgacatcttctcccggatgaacaagggcgacatccagggccgcgtcgtcatcgatttc
gagcaagcgacttga
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