Aspergillus clavatus: ACLA_016820
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Entry
ACLA_016820 CDS
T01148
Name
(RefSeq) alpha-galactosidase, putative
KO
K07407
alpha-galactosidase [EC:
3.2.1.22
]
Organism
act
Aspergillus clavatus
Pathway
act00052
Galactose metabolism
act00561
Glycerolipid metabolism
act00600
Sphingolipid metabolism
act00603
Glycosphingolipid biosynthesis - globo and isoglobo series
act01100
Metabolic pathways
Brite
KEGG Orthology (KO) [BR:
act00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00052 Galactose metabolism
ACLA_016820
09103 Lipid metabolism
00561 Glycerolipid metabolism
ACLA_016820
00600 Sphingolipid metabolism
ACLA_016820
09107 Glycan biosynthesis and metabolism
00603 Glycosphingolipid biosynthesis - globo and isoglobo series
ACLA_016820
Enzymes [BR:
act01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.22 alpha-galactosidase
ACLA_016820
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SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
Melibiase_2
Ricin_B_lectin
Melibiase_C
RicinB_lectin_2
Melibiase
Motif
Other DBs
NCBI-GeneID:
4706882
NCBI-ProteinID:
XP_001274662
UniProt:
A1CBW8
LinkDB
All DBs
AA seq
525 aa
AA seq
DB search
MHPSMTLLAILPPLVRASIGNPHLLPTPPMGFNNWARFMCNLNESLFLDTAAAMLDTGLH
AAGYTRLNLDDCWMASHRAPNGSLPWDPTKFPHSLPWLSAQLRSLGFSLGIYQDAGNVTC
GGYPGSYGFEELDAHTFAEWGVDYLKLDGCNVSPAGAVSLADEYRARYARWHSVLGAMPH
PLVFSESAPAYFVDPQNATAWYGVMDWVPAYGELARHSTDILVYEGEGSAWQSIMVNYRY
NTLLARYQRPGYFNDPDFLIADHPGLSLVEKRSHFALWASFGAPLIISADVPGLSKEVIA
VLTNADLIRVDQDALGLQATLASRSEHLDVLTRSLDGGDRLVTILNRGDGGLAVKVPVGW
MGLQRCAYQAKNLWDGEIQEIEEDIEVQLDSHATEVFRVSLPPDCPMVIPTGIVFNTASG
NCLTDGEALAFEPCRGQDLQVWQVEESGILRPLSRTSHCLTAIGDNVVVKPCTGRPGQRW
TYHITGNLQNQHTGACLTEGTGIDVCGFELDSQVFGLPSGVDIEA
NT seq
1578 nt
NT seq
+upstream
nt +downstream
nt
atgcatccatctatgaccctcctcgcaattctcccacccctcgtccgcgcctccataggc
aacccccacctcctccccacgccccccatgggcttcaacaactgggcccgcttcatgtgc
aacctaaacgaatccctcttcctcgacaccgcagccgcaatgctcgacaccggcctccac
gccgcaggctacacccgcctcaacctcgacgactgctggatggcatcccaccgcgccccg
aacggctccctaccctgggacccgaccaagttcccccacagcctcccctggctctctgcg
cagctccgatccctcggcttcagcctcggcatctaccaggacgccggcaacgtcacctgc
ggcggataccccgggtcctacggattcgaggaactcgacgcccacacgttcgccgagtgg
ggggtcgattacctcaagctggacgggtgtaatgtctcccctgccggggccgtgtcgctg
gcggacgagtacagagcgcggtacgcccgctggcattctgtcctcggcgccatgccgcac
ccgctggtgttctcggagagcgcgcccgcgtactttgtcgacccgcagaacgccacggcg
tggtatggcgtcatggactgggtgccggcgtatggggagctggcgcgccattctacggat
atcctggtgtatgagggcgaggggagcgcatggcagagtatcatggtgaattaccgctat
aatacgctgttggcgaggtaccagcgtcctgggtattttaatgatccggatttcctgatt
gcggatcatccgggtctgagcctggtggagaaacggtcgcatttcgccttgtgggcgtcg
tttggggcgccgctgattatcagtgcggatgtgccggggttgtcgaaggaggtgattgcg
gttttgaccaacgcagacttgattcgggtggatcaggatgcactgggattgcaggcgacg
ctggcgagtcggagtgagcaccttgatgtactgacgaggagtttggatggtggggatcgg
ttggtgacgattttgaatcggggggatggcggtcttgccgtcaaggtgccggtggggtgg
atggggctgcagagatgtgcataccaggcgaagaatctctgggatggagaaatacaggaa
attgaggaggatatcgaagtacagctggactcgcatgctacggaggtgtttagggtgtct
cttccccccgattgtcccatggtgatccctacagggattgtgttcaacacagcgtcgggg
aactgtcttacggatggcgaggctctggcattcgagccgtgccggggacaagatttgcaa
gtctggcaggtggaagagtcggggattctgcgtccgctctcgcgaacctcccactgcttg
acagccataggagataatgtggtggtcaagccatgcacagggcgccccggccagagatgg
acataccatatcactggcaacctgcaaaatcagcataccggtgcttgtttgacagaaggt
acaggcatagatgtctgtggatttgagctggatagccaggtattcggtctgcccagtgga
gttgatattgaagcgtag
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