Butyrivibrio fibrisolvens: CIY_29790
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Entry
CIY_29790 CDS
T02581
Name
(GenBank) Beta-galactosidase/beta-glucuronidase
KO
K01190
beta-galactosidase [EC:
3.2.1.23
]
Organism
bfi
Butyrivibrio fibrisolvens
Pathway
bfi00052
Galactose metabolism
bfi00511
Other glycan degradation
bfi00600
Sphingolipid metabolism
bfi01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
bfi00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00052 Galactose metabolism
CIY_29790
09103 Lipid metabolism
00600 Sphingolipid metabolism
CIY_29790
09107 Glycan biosynthesis and metabolism
00511 Other glycan degradation
CIY_29790
Enzymes [BR:
bfi01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.23 beta-galactosidase
CIY_29790
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Gene cluster
GFIT
Motif
Pfam:
Glyco_hydro_2_C
Bgal_small_N
Glyco_hydro_2_N
LacZ_4
Glyco_hydro_2
Glyco_hydro_2_N2
BetaGal_ABD2
Motif
Other DBs
NCBI-ProteinID:
CBK75501
LinkDB
All DBs
Position
complement(2716330..2719347)
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AA seq
1005 aa
AA seq
DB search
MSEFNYSIVSNPRIFQENRLDPHSDHEYYDNESYAYGEKSNFKHSLNGMWKFEYAKNYEC
CDKTFFEEDRDCRGWDDIKVPAHIQLEGYDKIMYVNTQYPWDGHEAIEPGEIPSEENPVG
NYVKYFEVPDFMKGKPIFISFQGVESGFALWLNGKYVGYSEDSFTPSEFDLTPFIKEGEN
KLAVQVFKWTAGSWCEDQDFFRFSGIFREVYLYTIPATHIKDLRIQTLLDDDYKDATLVL
DMKVVGSGLVQMTLSDDDVDILNKITVNEGDNHFELHVREPKLWSAEHPYLFDLHMNVFG
ETGRLTEVVKEKVGFRRFEMKDGLMHINGKRIVFKGVNRHEFSSSTGRVLSEGEILQDII
TIKKNNINAIRTSHYPNQTVFYRLCDIFGLYVIDETNLETHGTWQTPIQILKLKDDSYAV
PGDRPEYSDNVIDRAHNMFERDKNHPCILIWSLGNESYGGTNLRKMQDLLHKWDAGRLVH
YEGVFNDRRVDLSDMESTMYVKVKDIKEWLKNHKDKPYINCEYMHAMGNSCGAMFKYTEL
AYEEPRFQGGFIWDYIDQAITTKDCYGEEFEGYGGDFDDRPNDGSFSGDGICYSKGRLPS
PKMQEVKYDYQNIKITIKDGVAHIENRNLFTNTNEYTAILTIERIGELIAEEELTIDCPP
LEEIDYELELNLPKDNEYVVTLSFVLSEDTLWARKGHEVAYGQTTIGRFIYESGRKQPLT
VTQGFHNLGVKGEDFEVLFVGQRGLSSYKYHGKELLKRIVLPNFWRPMTENDLANQLPFR
AGQWKLASKYISTSVMDENINEPPIVEASNDCVKVIYTYHLATKPAGKCTVEYIVNADGI
VDCTLKLPKSAEIGELPELSMAFVLDNELSNLEWYGKGPQENYLDRDHAKIGVFANKVED
NMAKYLVPQECGNHQEVRYGQLTDDKGDGILFLSNNLGFSALPYSVHEIDEAHHKTELPK
SHFTFVRVGMQMGVAGDDTWGAKTHPEFMLDNSKEMQISFSFRGI
NT seq
3018 nt
NT seq
+upstream
nt +downstream
nt
atgtctgaattcaattattcaattgttagcaaccctagaatttttcaagaaaatagatta
gatccacactcagaccacgagtattacgataacgagagctatgcttatggtgagaaatca
aattttaagcattctcttaatggaatgtggaagtttgaatacgctaaaaattacgagtgc
tgtgacaagacgttttttgaagaagacagagattgccgtggatgggatgatataaaagtt
cctgcccatatccaattagagggttatgacaaaattatgtatgtgaacacccagtatcct
tgggatggtcacgaagcaatagaaccaggagagattccatcagaggaaaatccagttggc
aattatgtaaaatactttgaagtacctgattttatgaagggaaagccgatatttatttca
tttcagggtgtagagagtggatttgctctttggctaaatggaaaatatgtaggatatagc
gaggattccttcactccttcagaatttgatttaacaccatttataaaagagggagagaat
aagctggcagttcaggtgttcaaatggacagccggcagctggtgcgaggatcaggatttc
tttagattctcaggtattttcagagaagtatatttatatactattcctgctactcacatt
aaggatttacgcatccagacactattagatgacgactataaagatgccactttagtgctt
gatatgaaggtggttggaagcggtcttgttcagatgacattatcagatgatgatgtggac
attctaaataaaattaccgttaatgagggagacaatcattttgagcttcatgtcagagag
ccaaagctatggagcgctgagcatccatatctctttgatttacatatgaatgtgtttggc
gaaacaggaagactgacagaggttgttaaagaaaaagttggtttcagacgttttgagatg
aaagacggtttgatgcacattaatggcaaacgtattgtatttaaaggcgttaaccgtcac
gaattttcatcatcaacaggaagagttctctcagagggggagattcttcaggatataatt
acaattaagaaaaataatattaatgctatacgaaccagtcattatccaaatcagactgta
ttttacagactttgtgatattttcggactgtatgtaattgatgagacgaatctggagact
cacggaacatggcagactcctatacagattcttaagttaaaggacgatagctatgctgtt
cctggagatagaccagaatattcggacaatgttatcgatagagcccataacatgttcgaa
agagacaagaatcatccttgtattttgatatggtctttaggaaatgagtcctatggcggc
acaaatttacgcaagatgcaagatttgttgcataaatgggatgctggtagactggttcat
tacgagggagtatttaatgatagacgtgtagatttgtcagatatggaatctacaatgtat
gttaaggttaaggatattaaagagtggcttaagaatcataaggataagccatacataaat
tgcgaatatatgcatgccatgggtaattcctgcggagcaatgttcaaatatacagagctt
gcatatgaggagcctagattccagggcggatttatctgggattacatcgatcaggcaatc
accacaaaggactgctacggcgaggaatttgagggctacggtggagatttcgacgacaga
ccaaacgatggcagcttttcaggagatggaatctgctatagcaagggtcgattgccaagc
cctaaaatgcaggaagtaaagtacgattatcaaaatatcaaaatcacaataaaagatgga
gtagctcatattgaaaacagaaacctgtttacaaatacaaatgagtacactgcaatcctt
accatagagcgcataggagagcttattgctgaggaagagcttacaatcgactgtcctcca
ttagaggaaatagattatgagctggagcttaatctgccaaaggataacgagtacgttgtt
acactttcatttgtgctttctgaggatactttgtgggctagaaagggtcacgaagtggct
tatggtcagaccacaattggaagattcatatacgaaagtggtagaaagcagcctttaacg
gttactcagggattccataaccttggggtaaagggcgaagattttgaagtattatttgta
ggtcaaagaggcctaagctcatacaaataccacggtaaggagcttttaaagagaattgta
cttccaaacttctggagaccaatgactgaaaatgatttggctaatcagctaccattcaga
gctggtcagtggaagctggcaagcaagtatatttctacatcagtaatggatgagaatatt
aatgagccaccgatagtggaggcttccaatgattgtgtaaaggtgatttatacatatcat
ttagccactaaaccagcaggaaaatgtactgtagagtatattgtaaatgctgatggtata
gtagattgcacattaaagcttccaaaatctgctgagattggtgagcttccagagctttct
atggcttttgtgctggataatgagctttctaatcttgagtggtatggcaaaggtcctcag
gagaattacctagacagagatcacgctaaaataggtgtatttgccaataaggttgaagac
aatatggctaagtaccttgttccacaggaatgtggaaatcatcaggaggtacgctatgga
cagcttacagatgataagggagatggaattttattcctatcaaataaccttggtttttca
gcattgccatattctgtgcacgaaatagatgaagcacaccacaagacagagcttccaaaa
tcacattttacattcgttagagtgggaatgcagatgggtgtagcaggtgacgatacttgg
ggtgcaaaaactcatccagaatttatgcttgataatagtaaagaaatgcagatttccttt
agttttaggggaatttaa
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