Simiduia litorea: R50072_11980
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Entry
R50072_11980 CDS
T10759
Name
(GenBank) hypothetical protein
KO
K01218
mannan endo-1,4-beta-mannosidase [EC:
3.2.1.78
]
Organism
slio Simiduia litorea
Pathway
slio00051
Fructose and mannose metabolism
slio01100
Metabolic pathways
slio02024
Quorum sensing
Brite
KEGG Orthology (KO) [BR:
slio00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00051 Fructose and mannose metabolism
R50072_11980
09140 Cellular Processes
09145 Cellular community - prokaryotes
02024 Quorum sensing
R50072_11980
Enzymes [BR:
slio01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.78 mannan endo-1,4-beta-mannosidase
R50072_11980
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GFIT
Motif
Pfam:
Cellulase
CBM_2
CBM49
CBM_10
Glyco_hydro_cc
Trypan_PARP
Glyco_hydro_2_C
Rib_recp_KP_reg
Motif
Other DBs
NCBI-ProteinID:
BFM11045
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Position
1370377..1371984
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AA seq
535 aa
AA seq
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MKFYNLLNARPAVLVGSALLTAVISSHSQAGMRVSGTQLLDGNGNVFVMRGVNHPHAWYN
YRTHAFEDIALAGSNTIRVVLSDGQQFTKNSAEDVARVIAACKRQRMICVLEVHDVTGSG
EKAEAGTMAKAVDYWLELSSVLSGEEDYVIINIANEPFGNNVPASTWVNEHKAAITRIRA
AGLTHTIMVDAANWGQDWQEIMLTHASDVAAADVSNNTLFSVHMYQVYPNREKVEGYVKT
FLETHNLPLIVGEFGADHQGADVDEDAILAVSEAYQIGYLGWSWSGNTGGGTESLDMTVG
FDPKVLTPWGDRLINGVNGIKATSTLASVFDGQVPPPKLMCDWYGSIIPVCEFQESGHGY
ENQQSCVGVVTCRAQDGTGGVVGETPTPTPTPTPTPTPTPTPTPTPTPTPTPTPTPTPTP
TPTPTPTPPEGAKANCSYKVINSWDTGFEGQIILSNPAASTTVINGWALSWLYLDGSKVS
SVWNAEFSSAETYQAKNLTWNASIQPGQSVSFGFVGEGSGVQAELGGASCVTPVL
NT seq
1608 nt
NT seq
+upstream
nt +downstream
nt
atgaaattttataatttattgaatgctcgtcctgcggttttagtgggtagtgcgctattg
accgccgtgatttcttcacattcacaagcaggtatgcgtgtgtctggtacgcagttacta
gatggtaatggtaatgtttttgtcatgcggggcgttaaccatccccacgcttggtacaac
tatcgcactcacgcttttgaagatatcgcgcttgcgggatctaataccattcgagtggtc
ttaagtgatggccaacaatttaccaaaaatagcgccgaagatgtggctagggttattgcg
gcctgtaagcgtcaacgaatgatttgcgtgttggaagtacacgatgtaacaggctcgggc
gagaaagcagaggccggtaccatggcaaaagccgttgattattggctggagttgagcagt
gtattaagtggtgaagaagattatgtgattatcaacatcgccaatgagccctttggcaat
aacgtacctgcgagtacctgggtaaatgagcacaaagctgcgattacgcgaattcgggcg
gccggtttgacgcatacgattatggttgacgctgcaaactggggccaagattggcaggag
attatgctgacccatgcctctgatgtcgccgcagcagatgtgagtaataacacgctgttt
agcgtgcacatgtatcaggtctacccgaatcgtgaaaaagttgaaggttatgtaaaaaca
tttttggagactcacaacctgccgttgattgttggtgagtttggtgccgatcaccagggc
gctgacgtggatgaagatgccattctcgcggtatctgaagcgtatcaaattggctactta
ggttggtcttggtcaggtaatacgggcggtggtacagagtctcttgatatgaccgtaggt
tttgatccgaaggtgttaaccccgtggggcgacagattgattaacggcgttaatggtatt
aaagcgacttcaacattggctagcgtattcgatggccaggtgccgccgccaaaattgatg
tgtgattggtacggttcgattattcctgtgtgtgaatttcaggagtctgggcatggttat
gaaaaccaacaaagttgtgtgggtgtggtaacctgccgcgcacaagacggaaccggtggc
gttgtgggtgaaacgccaacaccgacgccaacaccaaccccaacaccaacaccaacaccg
acaccaacaccgacaccaacaccaacaccaacaccgacaccgacaccgacaccgacgccg
acgccgacgccaacaccaacaccgccagaaggtgccaaggctaattgcagctataaggtg
ataaacagttgggatacgggttttgaaggtcaaataattttatccaaccccgctgcatca
actactgtcataaatggttgggccttgtcttggctgtacttggatggctcaaaagtcagc
tcggtatggaatgcagaattttcaagcgcggagacttaccaagcgaaaaatttgacttgg
aatgccagtattcaacctgggcagtcggttagttttggttttgtaggcgagggaagtgga
gtacaagcagagttaggtggtgcttcatgtgttacgccagttctctaa
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