Dyella telluris: H8F01_16515
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Entry
H8F01_16515 CDS
T07969
Name
(GenBank) glycosyl hydrolase
KO
K01201
glucosylceramidase [EC:
3.2.1.45
]
Organism
dtl
Dyella telluris
Pathway
dtl00511
Other glycan degradation
dtl00600
Sphingolipid metabolism
dtl01100
Metabolic pathways
dtl04142
Lysosome biogenesis
dtl04382
Cornified envelope formation
Brite
KEGG Orthology (KO) [BR:
dtl00001
]
09100 Metabolism
09103 Lipid metabolism
00600 Sphingolipid metabolism
H8F01_16515
09107 Glycan biosynthesis and metabolism
00511 Other glycan degradation
H8F01_16515
09140 Cellular Processes
09141 Transport and catabolism
04142 Lysosome biogenesis
H8F01_16515
09150 Organismal Systems
09158 Development and regeneration
04382 Cornified envelope formation
H8F01_16515
Enzymes [BR:
dtl01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.45 glucosylceramidase
H8F01_16515
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Paralog
GFIT
Motif
Pfam:
Glyco_hydro_30
Glyco_hydro_30C
Glyco_hydro_59
Motif
Other DBs
NCBI-ProteinID:
QNK00679
UniProt:
A0A7G8Q1M1
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Position
3771946..3773496
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AA seq
516 aa
AA seq
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MAERGSESSRAAVAFVALLTLVTFAVVCAPRFQHAAVTAPLAAATGPVMPPVEVWLSTED
RRLKLDRQPDLALSVRGDATADVVIDLDKKYQTMDGFGAAMTDSSAWLLQTKMSDGQRGA
LLHELYGPPPNLNLTMMRLTIGASDFSRSLYTLDDVPVGETDPTLAHFNVAPNLREVIPT
VREVLSINPAVLVIASSWSAPAWMKSGENLIGGQLLEQYESAFADYLVKYVDAYRGYGIP
IFALTLQNEPSFLPVTYPGMLMDADQRARIVAQYLGPKLANRNPRTRILEWDHNWNHPEQ
PLAVLGDPAAARYIDGVAWHCYEGSPSAQGKVHHAYPKKDVYLTECSGGDWASSANGELI
WFSRNLLVAGIRQWARGVVYWNLALDEEHGPHYGGCAACKGVVLIDSKTGEVSRNDEYYA
LAHFSTFVLPGAIRLGSTDTDADQGIANVAFQNVSDGSMVLVMVNSNKQERHVSVSEGQS
LFDYTMPPRSVATFVWNTNPAGAWMNRAIRWLGRGR
NT seq
1551 nt
NT seq
+upstream
nt +downstream
nt
atggctgagcgcggatcggaatccagccgggctgccgtcgccttcgtcgctttgctcact
ctggttacctttgccgtggtgtgtgcaccgcgctttcagcatgcggctgtaacggctccg
ctcgccgccgccaccgggccggtgatgccgcccgtcgaggtctggctgagcacggaggat
cgccggctgaagctggacaggcagcccgacctggcactgagcgtgcgcggcgacgccacg
gccgatgtggtgatcgacctcgacaagaaataccagaccatggacgggttcggcgccgcc
atgacggattcgtcggcctggctgctgcagaccaagatgagcgacgggcagcgtggcgcg
ctgttgcacgagctgtatggcccgccgcccaacctcaacctgaccatgatgcgcctgacc
atcggcgcgtctgatttctcgcgctcgctgtatacgctggacgatgtgccggtgggcgaa
accgaccccacgctggcccacttcaacgtcgcccccaacctgcgcgaagtgataccgaca
gtgcgcgaagtgctgtccatcaacccggccgtgctggtcattgcgtcctcgtggagcgcg
ccggcatggatgaagagcggcgaaaacctgatcggcgggcagttgctggagcagtatgag
agtgccttcgccgactatctggtcaagtacgtggatgcgtaccgcggttacggcattccc
attttcgcgctgacgctgcagaacgagcccagcttcctgccagtgacctacccgggcatg
ctgatggatgcggaccagcgggcgcgcatcgttgcgcagtacctgggccccaagctcgcg
aaccgcaacccgcgcacgcgcatcctggagtgggaccacaactggaaccaccccgagcag
ccgctggccgtgctgggcgacccggcggcggcgcgttacatcgatggcgtggcctggcat
tgctacgaaggcagcccgtcggcgcagggcaaggtgcatcacgcgtatccgaagaaggat
gtctacctcaccgagtgttccggtggtgactgggcatccagcgccaatggcgagctgatc
tggttctcgcgcaacctgttggtggccggcatccggcaatgggcgcgtggtgtggtgtac
tggaatctcgcgctcgacgaggagcatgggccgcattacggtggctgcgccgcgtgcaag
ggcgtggtgctcattgattcgaagacgggcgaggtgagccgcaacgacgagtactacgcg
ctggcgcacttcagcaccttcgtgctgcccggcgccatccgcctgggctccaccgatacc
gatgcggaccagggcatcgccaacgtggccttccagaacgtatccgatggatcgatggtg
ctggtgatggtgaacagcaacaagcaggaacgccacgtgtcggtgtcggaaggacaatcc
ctgtttgactacaccatgccgccgcgcagcgtggcgacctttgtgtggaacaccaacccg
gccggcgcgtggatgaaccgtgccatccggtggctgggcagggggcggtaa
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