KEGG   Aspergillus nidulans: AN2017.2Help
Entry
AN2017.2          CDS       T01016                                 

Definition
(RefSeq) hypothetical protein
  KO
K01187  alpha-glucosidase [EC:3.2.1.20]
Organism
ani  Aspergillus nidulans
Pathway
ani00052  Galactose metabolism
ani00500  Starch and sucrose metabolism
ani01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:ani00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00052 Galactose metabolism
    AN2017.2
   00500 Starch and sucrose metabolism
    AN2017.2
Enzymes [BR:ani01000]
 3. Hydrolases
  3.2  Glycosylases
   3.2.1  Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
    3.2.1.20  alpha-glucosidase
     AN2017.2
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: Glyco_hydro_31 NtCtMGAM_N Rotavirus_VP7
Motif
Other DBs
NCBI-GeneID: 2875019
NCBI-ProteinID: XP_659621
UniProt: A0A1U8QJW0 G5EB03
LinkDB All DBs
Position
VII
AA seq 992 aa AA seqDB search
MVRFLHLAGTLPVLASGAVQDALRPVAESAATVTATATVAGQQAQFTLSDYVDVGADLIA
NVDDPEAVNAQSVCPGYKASDIQQTDLGFTASLRLAGEPCNVYGTDVESLTLEMQYQDTD
RLNIQITPTYVDASNASWYILPEEFVPRPKPAAGASESHSDFAVTWSNEPTFNFQVTRKS
TGEVLFDTAGSVLVFENQFIEFVTSLPEEYNLYGLGERINQLRLLRNATLTSYAADIGNP
IDANIYGQHAFYVDTRYFSVDEAGKHTYVKSSEADPSATYTSYSHGVFLRNSHGHEVVLN
PQGLTWRTIGGSIDLTLYSGPTVAEVTKQYQRSTVGLPAMQKYDTLGFHQCRWGYNNWSV
FADVLANFEKFEIPLEYLWADIDYMHGYRNFENDEYRFPYNETKVFLDKLHAGGRHFVPI
VDAALYIPNPQNASDSYETYTRGAARDVFLKNPDGSLYIGAVWPGYTVFPDWHHPDAADF
WANELVTWYEKVKFDGVWYDMSEVSSFCVGSCGSRNRTLNPVHPPFRLPGEPGNVDYEYP
EGFELSNATEAASASAASSSQAATTATETTTSTSSYLRTSPTPGVRNVNYPPYVINHVQT
GHDLAVHAVSPNATHVDGYHEYDVHSLYGHMGIQATYRGLTQIAPRKRPFIIGRSTFAGS
GKWAGHWGGDNYSRWSSMYFSISQALQFSLYGIPMFGVDTCGFSGNTAEELCNRWMQLSA
FFPFYRNHNVLGTIPQEPYQWASVIDATKKAMRIRYALLPYFYTLMHDAHTTGSTVLRAL
AWEFPDDPSLAAIDNQFLVGPSILVTPVLEPQVSTVKGVFPGVGQGEVWYDWYTQTAVDA
QPGVNTTIDAPLGHIPVYVRGGSILPMQEPALTTRDARKTPWALLVALGKDGTASGHLYL
DDGESIHPKVSLNVKFRATQTALTVSSEGEWKEANPLANVTILGVLENPVSVTSNGQQVP
AEYDAQSRILVITGLNQFTNNGAWGQDWTLRW
NT seq 2979 nt NT seq  +upstreamnt  +downstreamnt
atggtccgcttcctgcacctagctgggacccttccggtcctagcctctggcgcagtccag
gacgccctccggccagttgccgagtccgccgcgaccgtaaccgcaaccgcgaccgtagcc
gggcaacaggctcaatttacactctcggattatgtggatgtcggggcagacttgattgcc
aatgtggacgatcccgaagccgtcaatgcccagtccgtctgtcctgggtacaaggcttcc
gatatacaacaaacggacctgggctttaccgccagcctacggctggccggcgagccctgc
aatgtatacgggacggacgtcgagtctttgactttggagatgcagtatcaggatacggac
cgcttgaacatccaaatcacaccgacctacgtggacgcatccaacgcgtcctggtatatt
ctgccagaggaattcgtcccccgaccgaaaccggccgcaggtgcgtccgagtcgcacagc
gacttcgccgtgacatggtcaaacgagccaactttcaactttcaggtcacccggaagtcg
acaggcgaggtgctcttcgatacggccggttccgtattggttttcgaaaaccaattcatc
gagtttgtgacatctttgccggaggaatataacctgtatggtctaggagaacgcatcaac
cagctccgtctgttgcgaaacgccacactgacctcctatgcggctgacattggcaatccg
attgatgccaacatctacggacagcacgcattttacgtagacacaagatacttctcagtt
gacgaggctggaaaacacacatacgtgaaaagtagtgaggctgacccttcggcaacatat
acctcctactcgcatggggttttcctcagaaactctcacggccatgaagttgtgttgaat
ccgcagggcctgacttggcggacgattggaggaagcatcgacctcaccctctactcgggg
ccgactgtagcagaggtcacaaagcaataccagcgcagcaccgttggtctccccgctatg
caaaagtacgacacgcttggtttccatcaatgccggtggggttacaacaactggtcggtc
tttgcagatgttcttgcgaatttcgagaaatttgagattccgttggaatatctctgggcc
gacattgactatatgcatggttatagaaattttgaaaatgacgagtatagatttccatat
aacgagaccaaagttttcttggacaagcttcacgcaggtgggcgccattttgtcccaatt
gtggacgcggcgctgtatatccctaatccgcaaaacgcttcagattcttatgaaacgtac
actcgaggcgcagctcgagacgtcttcctgaagaatccagatggcagcctctacatcggc
gctgtatggcctggttatacagtctttcccgactggcatcatcccgatgcggctgatttc
tgggccaacgagctcgtgacttggtatgagaaagtcaaattcgatggagtgtggtacgac
atgagtgaggtatcgtctttctgtgtgggaagctgtgggtctcgaaaccggacactcaac
cccgttcacccgcctttcagattgccaggtgaaccgggcaacgttgattacgagtatcct
gaaggatttgagctgtccaacgcgacagaggctgcttcggcatctgcagcttcttcgagc
caggccgcaaccaccgccacagagactacgacatccaccagctcttacttgcgtacttcg
cccactcctggtgtccgtaatgtcaactatccaccttatgtgatcaaccatgtccagacg
ggccatgatcttgctgtgcatgcagtctcgccaaatgctactcacgttgacggttatcac
gagtacgacgtgcacagcctctacggacatatgggtatccaggccacctaccgaggtttg
actcagattgcgcccaggaagcgtccattcatcattggccgctcgacgtttgctggctct
ggaaaatgggccggccattggggcggtgacaactactcccggtggtcatccatgtacttt
tcaatctcgcaagcgttgcagttttctctctacggcattccgatgttcggagtcgatacg
tgcgggtttagtggaaataccgcggaggaactctgcaaccgctggatgcagttgtcggct
ttcttcccgttctatcgtaaccataatgttcttgggacaatccctcaggagccttatcaa
tgggcatcggtcattgatgccaccaagaaggcgatgaggatccgatatgctttgctgcct
tatttctacactttgatgcatgacgcgcatactacgggctctactgtgctgcgagcgctg
gcctgggagtttccggacgatccatccctggctgcgattgacaatcagttcctggtcggc
ccctccatcctggttactccagtcctcgagcctcaagtaagtaccgttaaaggcgtcttt
cctggagtagggcagggagaagtctggtacgattggtacacacaaactgcagttgacgcc
cagccgggagtcaacacgacgatcgacgcgcccctcggccatataccggtctatgtccgg
ggcggaagtatcctgccaatgcaagagcctgctttgacgacccgcgacgcccggaagacg
ccgtgggcactgttagtcgcactcggtaaagacggaacagcttcaggccatctatacctc
gatgatggggagagtatccatccaaaggtgtcgcttaacgtcaaatttagggccacacag
accgccctaaccgtatcatccgaaggcgagtggaaagaagccaacccattggcgaatgta
accattttaggtgtccttgaaaacccggtctcggtcacatctaacggacagcaagtgcct
gcagaatatgacgcgcagtcgcggatcctggttattaccgggctgaaccaatttacaaac
aatggtgcttgggggcaagattggacccttcggtggtga

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