KEGG   Blautia producta: PMF13cell1_01272
Entry
PMF13cell1_01272  CDS       T05894                                 
Symbol
tvaII
Name
(GenBank) Neopullulanase 2
  KO
K01208  cyclomaltodextrinase / maltogenic alpha-amylase / neopullulanase [EC:3.2.1.54 3.2.1.133 3.2.1.135]
Organism
bpro  Blautia producta
Pathway
bpro00500  Starch and sucrose metabolism
bpro01100  Metabolic pathways
bpro01110  Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:bpro00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00500 Starch and sucrose metabolism
    PMF13cell1_01272 (tvaII)
Enzymes [BR:bpro01000]
 3. Hydrolases
  3.2  Glycosylases
   3.2.1  Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
    3.2.1.54  cyclomaltodextrinase
     PMF13cell1_01272 (tvaII)
    3.2.1.133  glucan 1,4-alpha-maltohydrolase
     PMF13cell1_01272 (tvaII)
    3.2.1.135  neopullulanase
     PMF13cell1_01272 (tvaII)
SSDB
Motif
Pfam: Alpha-amylase Malt_amylase_C Neopullulanase-like_C Alpha-amylase_C_2 Alpha-amylase_C DUF5696
Other DBs
NCBI-ProteinID: QBE95748
UniProt: A0A4V0Z768
LinkDB
Position
complement(1369435..1370811)
AA seq 458 aa
MAKWYEEAVFYHMYPIGMTGAPRENKDEGVVHRFAELEKWLPHLADIKATAIYIGPLFES
TTHGYDTRDYKLVDQRLGDNEDFARFVEKAHQMGIKVVVDGVFNHTGREFFAFRDIQENR
EGSRYCGWYKGINFGWNNPYNDGFSYEAWRNCFELVNLNLQNPEVKGYLLDVIDFWIDTF
DIDGIRLDCADCLDFGFMEDMRRRTGEKKEDFWLMGEVIHGDYSRYIQDGQKMLHSVTNY
ELHKGIYSGHNDHNYFEIAHTIRREFEENGGIYRGMKLYSFVDNHDVDRIYSKINVKEHI
FPIYTLLYTLPGIPSIYYGSEWGIEGSKNNGGDDALRPAVDISEALEEQKDSKIMLWVKT
LGEMHEKYKTCLAEGRYRELLLTNRQLAFMRFTEEEGLITAVNNDEEPAQVSIPVPMENK
HYVNLLTQEEAEPENGRLNFTIEAAGSVLLEIRNSTEG
NT seq 1377 nt   +upstreamnt  +downstreamnt
atggcaaaatggtatgaggaggcagtattttaccatatgtacccgattgggatgactggc
gctcccagggaaaataaagacgaaggcgttgtacaccgcttcgcggaactggagaaatgg
ctgccgcatcttgcagacattaaggcaacggcaatctatattggaccgctgtttgagtcc
accacccacggttacgacaccagagattataagctggtggatcagcggcttggggacaac
gaagattttgcccggtttgtggaaaaggcacaccagatgggaatcaaggttgtggtggac
ggtgtgtttaatcacacaggaagagagttctttgccttccgggatatccaggagaaccgg
gaaggctccaggtactgcggttggtacaagggaatcaatttcggatggaacaatccctac
aatgacggattttcctatgaggcatggagaaactgctttgagcttgtcaatttgaacctg
cagaatccggaggtgaaaggatatcttttggatgtgatcgatttctggatcgatacattt
gatattgacggtatccgtctggactgtgcggactgtcttgactttggattcatggaggat
atgcgcagacgtaccggggagaaaaaggaagacttctggctcatgggagaagttatccac
ggtgattacagccgctatatccaggacggacagaaaatgctgcacagcgttacaaactat
gagcttcacaaaggcatttattccggacataatgaccacaattacttcgagatcgcccat
accatacgaagagaatttgaggagaatgggggaatctacaggggaatgaagctgtattcc
tttgttgacaatcacgatgtagaccgcatttacagtaagattaatgtgaaggagcatatt
ttcccgatctacacactgctgtatacattaccaggaattccatccatctattacggatct
gaatgggggatcgagggaagcaaaaataacggcggtgacgatgcgctcaggccggctgtg
gatatcagtgaagcgctggaagagcagaaagattccaagatcatgctttgggtcaaaaca
cttggggaaatgcatgaaaagtataaaacctgtcttgcagagggcagatacagggaactg
ctgctgaccaacagacagttggcatttatgcgttttactgaggaagaaggcctgatcaca
gcagtgaacaatgatgaggaaccggcacaggtgagcatcccggtgccaatggaaaataaa
cattatgtaaaccttttgacccaggaggaagcagagccggagaacggccggctgaatttt
accatagaagcagcaggcagcgtcctgctggaaatccgtaacagtacagaaggctga

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