Clostridium thermosuccinogenes: CDO33_15715
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Entry
CDO33_15715 CDS
T05300
Name
(GenBank) hypothetical protein
KO
K01176
alpha-amylase [EC:
3.2.1.1
]
Organism
cthd
Clostridium thermosuccinogenes
Pathway
cthd00500
Starch and sucrose metabolism
cthd01100
Metabolic pathways
cthd01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
cthd00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00500 Starch and sucrose metabolism
CDO33_15715
Enzymes [BR:
cthd01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.1 alpha-amylase
CDO33_15715
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GFIT
Motif
Pfam:
Alpha-amylase
SusG_C
DUF3459
Malt_amylase_C
hDGE_amylase
DUF6600
Motif
Other DBs
NCBI-ProteinID:
AUS97761
UniProt:
A0A2K2FMU7
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All DBs
Position
complement(3584111..3585817)
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AA seq
568 aa
AA seq
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MIMALVLLAGCHQQKQGDELGNEPPEQIQETAPPHSEPEQAQEMSEPRPKTVYFPDVTRK
ERVIDSKYGIYYEIFVRSFADSDGDGIGDFKGLTRQLDYLKDDSSDEDLNVDGIWLMPVN
ASPSYHKYDVTDYYSIDPEYGTMEDFEQFLAEAHKRGLKVIMDLVINHTSSQHPWFIESC
KSEDNPYRDYYRWAKTDQEGYNLKGKSPWGSNTWHKKGDSYYYGIFWDQMPDLNYDNPKV
RQEIKNIAKFWLEKGVDGFRLDAALHIYGAHENPVGTDYQKKNLQWWKEFGAYVEEVNPK
AYLVGEVWDKTSVVAPYYQGLDSLFNFDVGEGIIKAVNSGTGAAVSSKGFARWLEEKYSD
FTKVERNFLDAPFLTNHDQNRSMNQLGKDVGKAKLAAGIYLTLPGNPFIYYGEEIGMLGT
KPDERIREPFVWSKEREAPQTYWEANLQNTDTVPVKEQQEDPNSLLNCYKQLIALRQSSK
ALKMGDFKALDSGSSRVIAYSRNYDMDGKDKESVMVLHNLSSEFETFELIGEDFKDLKVI
FETPGPEKSTINQSAISLAPRTTLVLQK
NT seq
1707 nt
NT seq
+upstream
nt +downstream
nt
atgataatggcgcttgtgcttttagcaggctgccaccagcaaaaacagggtgatgagctc
gggaatgagccgccggaacagatacaggagacggctccaccacattcggagccggaacag
gcacaggaaatgagtgagccccggccaaaaaccgtatactttccggatgtgaccaggaaa
gaaagggttatcgacagcaaatacggcatatattatgagatttttgtaaggtctttcgca
gattccgatggcgacggaataggcgacttcaaaggcttgaccaggcagctggactacctg
aaggatgatagcagcgatgaggatttgaacgtggacgggatttggcttatgcccgttaat
gcttcgcccagctatcataaatatgatgtgaccgattactacagcattgatcccgagtat
ggtacaatggaggattttgaacagtttctggccgaagctcacaaaaggggattaaaagtg
ataatggatttggtgatcaatcataccagttcacaacatccctggtttatagagtcatgc
aaatcggaggacaatccctatagggactattaccggtgggcaaagacagaccaggaaggc
tataatctaaaagggaagtcgccatggggaagcaatacatggcataaaaagggcgacagt
tattattacggcatattctgggatcaaatgccggatctgaattatgacaaccctaaggta
aggcaagaaatcaaaaatatcgcaaagttctggcttgagaagggtgtggacggctttagg
ctggatgcggcgctgcacatttacggtgcccatgaaaatcctgtggggacggattatcag
aaaaagaacctgcagtggtggaaggaattcggagcctatgtggaagaggtgaatccgaag
gcatatcttgtaggagaggtgtgggataaaacatccgttgttgctccatattatcaggga
ttggactcccttttcaattttgatgtgggagaggggattattaaggcggtaaactcagga
accggggcagcggtcagcagtaaaggatttgcccgatggctggaagaaaaatattcggat
tttacaaaggttgaaagaaatttcctggatgcgccttttttaaccaaccacgatcagaat
cgcagcatgaatcaactgggtaaggatgtgggcaaggcaaagctggcagcaggtatctat
cttacgctgccgggcaatccttttatctattatggtgaggaaataggcatgctggggaca
aaaccggacgaaaggatacgggaaccctttgtgtggtctaaagaacgggaagcgcctcaa
acttactgggaagcaaatttacaaaacaccgatactgttccggtaaaggagcagcaagag
gatcccaattcgctgttgaactgctataagcagctaatagcccttaggcaatccagcaag
gccctgaagatgggagatttcaaagctctcgattccggcagcagcagggtgattgcatat
agcagaaattacgatatggatggcaaggataaagaaagtgtgatggtgctgcataattta
agcagtgaatttgaaacttttgagttaataggagaggatttcaaagacttgaaagtcata
tttgaaacgccgggaccggagaaaagcaccataaaccaatcggcgataagtcttgccccc
aggacaactttggttttgcaaaaataa
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