Aeromonas hydrophila subsp. hydrophila ATCC 7966: AHA_1474
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Entry
AHA_1474 CDS
T00424
Name
(GenBank) hyaluronidase, putative
KO
K01197
hyaluronoglucosaminidase [EC:
3.2.1.35
]
Organism
aha
Aeromonas hydrophila subsp. hydrophila ATCC 7966
Pathway
aha01100
Metabolic pathways
aha04142
Lysosome
Brite
KEGG Orthology (KO) [BR:
aha00001
]
09140 Cellular Processes
09141 Transport and catabolism
04142 Lysosome
AHA_1474
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02042 Bacterial toxins [BR:
aha02042
]
AHA_1474
00536 Glycosaminoglycan binding proteins [BR:
aha00536
]
AHA_1474
00537 Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:
aha00537
]
AHA_1474
Enzymes [BR:
aha01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.35 hyaluronoglucosaminidase
AHA_1474
Bacterial toxins [BR:
aha02042
]
Toxins that damage the extracellular matrix
Hyaluronidases/Collagenases
AHA_1474
Glycosaminoglycan binding proteins [BR:
aha00536
]
Heparan sulfate / Heparin
Enzymes
AHA_1474
Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:
aha00537
]
Enzymes
AHA_1474
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
NAGidase
Motif
Other DBs
NCBI-ProteinID:
ABK39090
UniProt:
A0KIB1
LinkDB
All DBs
Position
complement(1606672..1607775)
Genome browser
AA seq
367 aa
AA seq
DB search
MPYQTLLSGLQPPSPQLGVIEGFFGKGWSWEARARYAQWLPRHGYGFYLYAPKEDGYLRK
HWAKPWPAAQLEALRQLARQCRDNGLAFGVGLSPMGAHHDYARQRPALLEKVRLIEEELK
PDILAVLFDDMKGDTPDLAHWQLTIAHDIAAHTRAGRLLFCPSYYSTDPVLEKVFSAMPP
HYLQDLGQGLDKRFEIFWTGPKVCSSDYPAAHLKQVAEWLHRKPFLWDNYPVNDGSKASS
FLHLRAFENRPTELAELTSGHAVNPMKQAALSVLPLATLPMSYKLGKQYDPDKALHASLN
ATCGPQISAMIQADLPLFQDIGLAQLTPEQVAHLKARYLPFRDQSCVGEILRWLDGEYVF
DPDCLTD
NT seq
1104 nt
NT seq
+upstream
nt +downstream
nt
atgccttaccaaaccctgttgtccggcttgcaacccccttcgccccagctgggggtgatc
gagggcttctttggcaagggctggagctgggaagcccgcgcccgctacgcccagtggctg
ccccgccacggttacggcttctatctctatgcccccaaggaagatggctacctgcgcaag
cactgggccaagccctggcctgccgcccagctcgaggcgctgcgccagctcgcccgccag
tgccgcgacaacggcctcgccttcggggtgggcctgagccccatgggcgcacaccacgac
tatgcccgccagcggccggccctgctggaaaaggtgcggctcatcgaggaggagctcaaa
cccgacatcctggccgtgctgtttgacgacatgaagggggataccccggatctcgcccac
tggcagctcaccatcgcccacgacatcgcggcccacacccgcgccggccggctgctgttc
tgccccagctactacagcacggaccccgtgctggagaaggtgttcagcgccatgccgccc
cactatttgcaggatctggggcaggggctggacaagcgcttcgagatcttctggaccggc
cccaaagtctgctccagcgactatccggcggcccacctcaagcaggtggccgagtggctg
catcgcaagccgttcctgtgggacaactacccggtcaacgatggcagcaaggccagcagc
ttcctgcacctgcgcgctttcgagaaccgcccgacggaactcgccgagctgacctcgggc
cacgcggtcaaccccatgaagcaggcggcgctgtcggtgctgccactggccaccctgccg
atgagctacaagctcggcaagcagtacgatccggacaaggcgctgcacgcctccctcaat
gccacctgcggcccgcagatctccgccatgatccaggccgatctgccgctgtttcaggac
atagggctggcccagctgacccctgagcaggtggcccatctcaaggcccgctacctgccg
tttcgcgaccaatcctgcgtcggcgagatcctgcgctggctggatggcgaatacgtgttc
gacccggactgcctgaccgactga
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