Enterobacter chuandaensis: RQP59_00855
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Entry
RQP59_00855 CDS
T11050
Symbol
xylA
Name
(GenBank) xylose isomerase
KO
K01805
xylose isomerase [EC:
5.3.1.5
]
Organism
echu Enterobacter chuandaensis
Pathway
echu00040
Pentose and glucuronate interconversions
echu00051
Fructose and mannose metabolism
echu01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
echu00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00040 Pentose and glucuronate interconversions
RQP59_00855 (xylA)
00051 Fructose and mannose metabolism
RQP59_00855 (xylA)
Enzymes [BR:
echu01000
]
5. Isomerases
5.3 Intramolecular oxidoreductases
5.3.1 Interconverting aldoses and ketoses, and related compounds
5.3.1.5 xylose isomerase
RQP59_00855 (xylA)
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Motif
Pfam:
AP_endonuc_2
Motif
Other DBs
NCBI-ProteinID:
WNS40385
UniProt:
A0AA96RU56
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Position
196068..197390
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AA seq
440 aa
AA seq
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MQAYFDQLDRVRYEGPKTTNPLAFRHYNPDELVLGKRMEDHLRFAACYWHTFCWNGADMF
GVGSFDRPWQQPGEAIELAKRKADVAFEFFHKLNVPYYCFHDVDVSPEGASLKEYLNNFA
QMVDVLAAKQQQSGVKLLWGTANCFTNPRYGAGAATNPDPEVFSWAATQVVTAMNATHQL
GGENYVLWGGREGYETLLNTDLRQEREQIGRFMQMVVDHKHKIGFRGTLLIEPKPQEPTK
HQYDYDVATVYGFLKQFGLEKEIKVNIEANHATLAGHSFHHEIASAIALGIFGSVDANRG
DAQLGWDTDQFPNSVEENALVMYEIVKAGGFTTGGLNFDAKVRRQSTDKYDLFYGHIGAM
DTMALALKVAARMIEDGELDKRVAKRYSGWNSELGQQILKGQLSLADIAKYAEQQQLAPQ
HQSGHQELLENLVNHYLFDK
NT seq
1323 nt
NT seq
+upstream
nt +downstream
nt
atgcaagcttatttcgaccaactcgatcgcgttcgttacgaaggcccaaaaacgaccaat
cctttagcatttcgtcactacaatccggatgagctggtgctgggtaagcgcatggaagat
catctgcgctttgccgcctgttactggcataccttctgctggaacggcgccgatatgttc
ggcgtgggttcctttgaccgtccgtggcagcagccgggtgaggccatcgagctggcgaaa
cgcaaagccgacgtggcgtttgagttcttccacaagctgaacgtgccgtactactgcttc
catgatgttgacgtgtcgccggaaggagcgtcgctgaaagagtacctgaacaattttgcg
cagatggtggacgtgctggcggcaaaacagcagcaaagcggcgtgaagctgctttggggc
acggcaaactgcttcaccaacccacgctacggcgcgggggcggccaccaacccggatccg
gaagtgtttagctgggcggccacgcaggtggtgacggcaatgaacgccacgcatcagctg
ggcggtgaaaactatgtcctgtggggcggtcgtgaaggctatgaaaccctgctcaataca
gacctgcgccaggagcgcgagcagattggccgctttatgcagatggttgtcgaccataaa
cacaaaatcggcttccgcggcacgctgctgatcgagccgaagccgcaggaaccgacgaag
caccagtatgactacgacgtggcgacggtgtatggtttcctgaagcagttcggtctggaa
aaagagatcaaagtgaacattgaggccaaccacgccacgctggcgggccactctttccat
cacgagatcgcgtctgcgattgcgctgggtattttcggctctgtcgatgcgaaccgtggc
gatgcacagctgggctgggacaccgatcagttcccgaacagcgtggaagaaaatgcgctg
gtgatgtacgaaatcgtcaaagcgggcggcttcaccaccggcggcctgaactttgacgcc
aaggtgcgtcgccagagcaccgacaaatacgatctgttctacggccacattggcgcgatg
gacaccatggcgctggcgctgaaagtggcggcgcgtatgattgaagacggcgagctggat
aagcgcgtggcgaagcgctacagcggctggaacagtgagctgggccagcaaattttgaaa
ggtcagttatcgcttgcggacatcgcgaagtacgctgaacaacagcagctggcgccgcag
caccagagcgggcatcaggaactgctggaaaacctggttaatcactacctgttcgataaa
taa
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