Burkholderia thailandensis E444: BTJ_5218
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Entry
BTJ_5218 CDS
T03112
Name
(GenBank) aldehyde dehydrogenase family protein
KO
K26061
L-aminoadipate-semialdehyde dehydrogenase
Organism
btj
Burkholderia thailandensis E444
Pathway
btj00310
Lysine degradation
btj01100
Metabolic pathways
btj01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
btj00001
]
09100 Metabolism
09105 Amino acid metabolism
00310 Lysine degradation
BTJ_5218
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Aldedh
Motif
Other DBs
NCBI-ProteinID:
AHI82676
LinkDB
All DBs
Position
2:2254907..2256418
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AA seq
503 aa
AA seq
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MQFNDILAALDVDLARWQGSALTARSPVDGATLATLAADSPADTERKIDAAHQAFLKWRT
VPAPVRGELVRVFGNVLREHKAALGRLVTLEAGKIASEGLGEVQEMIDICDFAVGLSRQL
YGLTIASERPGHRMMETWHPLGVCGVISAFNFPVAVWSWNAALAFVCGDPVVWKPSEKTP
LTAIACHALFAKAVREFDKTHPGVVPNGLHQLVLGGRDVGEALCASPKVPLVSATGSVRM
GVEVAQVLSRRLARSILELGGNNGMIVAPSADLDLVVRAVTFAAVGTAGQRCTTLRRLIV
HRSVADRLLPRLEKAFASVKVGDPLEAGTLVGPLIDRASFDAMQKALGDAREQGGEVKGG
ERVELGHADAYYVRPALVRMPRQTAVVTRETFAPILYVLVYDDFDDALAIHNGVPQGLSS
AIFTNDMREAEQFMSAAGSDCGIVNVNIGTSGAEIGGAFGGEKETGGGRESGSDAWKSYM
RRATNTINYSRELPLAQGVKFDV
NT seq
1512 nt
NT seq
+upstream
nt +downstream
nt
atgcaattcaacgacattctcgccgcgctcgacgtcgatctggcccgctggcaaggcagt
gcgctgaccgcccggtcgcccgtggacggcgcgacgctcgcgacgctcgccgccgacagc
ccggccgacaccgaacgcaagatcgacgccgcgcatcaggcgttcctcaagtggcgcacg
gtgcccgcgcccgtgcgcggcgagctcgtgcgcgtgttcggcaacgtgctgcgcgagcac
aaggcggcgctcggccggctcgtcacgctcgaggcgggcaagatcgcatccgagggcctg
ggcgaagtgcaggagatgatcgacatttgcgatttcgcggtcggcctgtcgcggcagctc
tatggcctgacgatcgcgtccgagcgccccggccaccggatgatggagacctggcatccg
ctcggcgtgtgcggcgtgatctccgcgttcaactttccggtcgcggtgtggtcgtggaac
gcggcgctcgcgttcgtgtgcggcgatccggtcgtctggaagccgtccgagaagactccg
ctcaccgcgatcgcatgccacgcgctgttcgcgaaggcggtgcgcgagttcgacaagacc
catccgggcgtcgtgcccaacgggctgcatcaactcgtgctcggcggccgcgacgtcggc
gaggcgctttgcgcttcgccgaaggtgccgctcgtgtccgcgacgggcagcgtgcggatg
ggcgtcgaggtcgcgcaggtgctgagccggcggctcgcgcgcagcattctcgagctcggc
ggcaacaacgggatgatcgtcgcgccgagcgcggatctcgatctcgtcgtgcgcgccgtg
acgttcgccgcggtcggcaccgcgggccagcgctgcacgacgctgcgccggctgatcgtg
catcgcagcgtcgccgatcgactgctgccgcgcctcgagaaggcgttcgcatcggtgaag
gtcggcgatccgcttgaagcgggcacgctcgtcggcccgctgatcgatcgcgcgtcgttc
gacgcgatgcaaaaggcgctcggcgatgcgcgcgagcagggcggcgaggtgaagggcggc
gagcgcgtcgagctcggccatgcggatgcgtactacgtgcgtccggcgctcgtgcggatg
ccgaggcagacggccgtcgtcacgcgcgagacgttcgcgccgattctgtacgtgctcgtc
tacgacgacttcgacgacgcgctcgcgatccacaacggcgtgccgcaagggctgtcgtcg
gcgatcttcacgaacgacatgcgcgaggccgagcaattcatgtcggcggcgggcagcgat
tgcgggatcgtcaacgtgaacatcggcacgagcggcgcggagatcggcggcgcgttcggc
ggcgagaaggaaacgggcggcggccgcgagtccggttccgacgcgtggaagagctacatg
cgccgcgcgacgaacacgatcaactacagccgcgaattgccgctcgcgcagggtgtgaag
ttcgacgtgtag
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