KEGG   Alternaria alternata: CC77DRAFT_986652Help
Entry
CC77DRAFT_986652  CDS       T05291                                 

Definition
(RefSeq) hypothetical protein
  KO
K01187  alpha-glucosidase [EC:3.2.1.20]
Organism
aalt  Alternaria alternata
Pathway
aalt00052  Galactose metabolism
aalt00500  Starch and sucrose metabolism
aalt01100  Metabolic pathways
Brite
KEGG Orthology (KO) [BR:aalt00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00052 Galactose metabolism
    CC77DRAFT_986652
   00500 Starch and sucrose metabolism
    CC77DRAFT_986652
Enzymes [BR:aalt01000]
 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
     CC77DRAFT_986652
BRITE hierarchy
SSDB OrthologParalogGFIT
Motif
Pfam: Glyco_hydro_31 NtCtMGAM_N Gal_mutarotas_2
Motif
Other DBs
NCBI-GeneID: 29121819
NCBI-ProteinID: XP_018386867
JGI: 986652
UniProt: A0A177DPL2
LinkDB All DBs
Position
Unknown
AA seq 1045 aa AA seqDB search
MAPNAGAADSTAESYKRFKSQWMPGDVQAALDWFSTAIMSRSSFLQASTLLSSFLALTSG
QTPISSSDGGWSTTLAGTPTSFRSVFTLPASADQGVDQIPNIYDPEAVNAQDVCPGYKAS
GLEQGDRGLSATLTLAGAACNVYGTDIEELDLKVEYQSKGRLAVSIVPKHLDASNQSQWI
VPEDLIPRPQAEDSSEGTDLKFDWGNEPSFWFNVGRRSTGDIIFTTQGTKLIYENQFIEF
VNSLPEDYNLYGLGERIHGLRLNNNFTATIYAADVGDPIDRNLYSSHPFYLETRYFEKGG
NGSKTPLKQSELQQPSLGYDSKPTGSAYESRSHGVYYRNTHGMDVVMKPDHLSWRTLGGA
IDLFFFDGPSQPEVTKEYQKSAIGLPAMQQYWTLGFHQCRWGYRNWTETREIVETMKAFN
IPMAETIWLDIDYMDQYRDFTLDPVSFPPSGVKEFFDFLHGNNQHFVPIVDAAIYIPNPL
NASDAYDTYARGNDSDVFLGNPDGSQYIGAVWPGYTVFPDWLSSNGVAWWVKEMVEWYKE
VPFSGFWVDMTEVSSFCVGSCGSGNVTLNPAHPPFSLPGEVGNVVFDYPEGFNITNATEA
ASASAGASSQAAPTAPTETAATTTSYFRSTPTPGVRNVNYPPYVINHVQAGADLAVHAVS
PNATHQNGVEEYDVHNLFGHQIINATYQGLLQVFPGKRPFIIGRSTFAGSGKWAGHWGGD
NASKWAYMFFSIPQALSFSLFGIPMFGVDTCGFNGNTDMELCARWMQLSAFFPFYRNHNV
LSAIPQEPYRWEAVASASRTAMHIRYSLLPYMYTLFNDAHTTGSTVMRALAWEFPNEPQL
AGVDTQFMLGPNILITPVLEPQVDTVNGVFPGIVDGESWFDWYSGERVEAEAGVNTTISA
PLGHIPVYVRGGSVLPIQEPGYTTTESRNNPWGLIVALSTDGTASGNLYVDDGESLEPES
CLDVTFAAMTGQLKVNVEGEFKDTNALANVTILGAPAVGQVKLNGETIDASKVSYNSTSS
VLKLSGLNDLTSGGAWQGSWTLSWE
NT seq 3138 nt NT seq  +upstreamnt  +downstreamnt
atggcgccaaatgcaggtgccgctgacagcaccgcagaaagctataaaaggttcaagtcg
caatggatgcccggggatgtccaggcagcactcgactggttcagcacagccatcatgtcg
cgctcaagctttcttcaagcttcaacgctactctcctcttttctagcgttaacatctggt
cagacacctatcagttcgtctgacggcggttggagcaccacactcgctggaacccctacc
tcgtttcgctccgtcttcactctccctgcctcggctgatcagggcgttgaccagatccct
aacatctacgatccggaagctgtcaacgcgcaggatgtctgcccaggatacaaggcatcc
ggtctcgaacagggtgatcgcgggctgagcgccaccttgacactggctggagctgcttgc
aacgtctacggcacagatattgaagagctagacctgaaggttgagtaccaatctaaggga
aggctggctgtcagtattgtaccaaagcatcttgacgctagcaatcaatcccaatggatt
gtacccgaggatcttattccacggccgcaagccgaagactcttctgagggcacagacctc
aagtttgactggggtaacgaaccatctttctggttcaatgttggccgtcgctctactgga
gacatcatcttcactactcagggtacaaaactcatttatgagaaccagtttatcgagttt
gtgaacagcctacctgaggactacaacctctacggtctaggagaacgtatccatggcctt
cgcctgaacaacaacttcaccgcaaccatctatgctgctgatgtgggtgacccaatcgac
cgcaatttgtacagtagtcatcccttctacctagaaacccgctacttcgagaagggcggg
aatggcagcaagactcccttgaagcagtctgagcttcagcagcccagccttggctatgac
agcaaacccaccggttcggcgtatgagtcgcgctctcatggtgtttactaccgcaacacg
cacggcatggatgtcgttatgaagcctgaccatctttcatggagaacattgggaggtgca
attgatctgttcttcttcgatggaccttcccaaccagaagtgaccaaggagtaccagaag
tcagcgattggactgcctgccatgcaacagtactggacattaggtttccatcaatgtcga
tggggataccgtaactggacggagacgagagaaattgttgagactatgaaggcctttaat
atccccatggcagaaacgatttggcttgacattgactacatggaccagtaccgagatttt
acgcttgatcccgtgtcattccctccctctggtgtcaaagaattctttgacttccttcat
ggaaacaaccagcacttcgtacccattgtggacgctgctatctatattccgaacccattg
aacgccagtgatgcttacgacacctacgctcgcggaaacgattccgatgtgttcctgggg
aatcccgatggtagtcaatacattggcgctgtatggcccggatacactgtcttcccagac
tggctgtcttccaacggtgtagcgtggtgggtcaaggagatggttgaatggtacaaggaa
gtgccatttagcggcttctgggtggacatgactgaagtctcctcattctgcgtcggttcc
tgcggttccggaaacgttaccttgaaccctgctcacccacccttctctctccctggcgag
gttggcaacgtcgttttcgattatccagaaggctttaacatcaccaatgcaactgaggcc
gcttcggcttcagctggcgcatcaagccaggccgcaccaacagcacctacggagacggct
gctacaactaccagctacttccgatcaacgcctacacctggtgtgcgcaacgtcaactac
cctccatacgtcatcaaccatgtccaagccggagctgatcttgctgtccacgcggtcagt
cccaatgcaacacatcagaatggtgttgaagagtacgatgtccacaaccttttcggtcac
cagatcatcaacgccacctaccagggtcttcttcaagtcttccctggtaagcggcccttc
atcatcggacgttctacctttgctggtagcggcaagtgggccggccactggggtggtgat
aatgcatcaaagtgggcttatatgttcttttcaattccccaagctctgtcgttctcgctt
ttcggtatccccatgtttggtgtcgacacctgcggattcaacggcaacaccgacatggag
ctttgcgctcgctggatgcaactttctgctttcttccccttctaccgcaaccacaacgtg
ctctctgccattccccaggaaccctaccgctgggaggcagtggcttctgcatccaggacc
gctatgcacatccgatactccttactgccctacatgtacaccctcttcaatgacgcccac
actactggctctactgtcatgcgtgcgctagcgtgggagttccccaatgagcctcagctc
gcaggtgttgacacacagttcatgctgggtcctaacatcctgatcactcctgtccttgag
cctcaggtcgacaccgtcaatggagtattccctggtatcgtcgacggcgagagctggttc
gactggtactctggtgaacgcgtcgaggcggaggctggcgtcaacaccaccatctctgct
cctttgggtcatattcccgtgtacgttcgcggtggctcagtccttccgatccaagaacct
ggttacacaacgaccgagtcccgcaacaacccatggggtctcatcgttgcgctctcaaca
gatggcactgcttctggtaacttgtatgttgatgacggcgagtctctagagccagaatcg
tgcctggacgttacgtttgctgctatgactggacagctgaaggtcaatgttgagggcgag
ttcaaggacacgaacgcgcttgctaatgtgaccattctgggtgctccagcagttggacag
gtcaagttgaacggcgagacaatcgatgcaagcaaggtaagttacaactctactagcagc
gtcctgaagctgtcaggcttgaacgacttgactagtgggggagcttggcagggaagctgg
accctaagctgggaataa

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