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Functional expression and enzymatic characterization of Lactobacillus plantarum cyclomaltodextrinase catalyzing novel acarbose hydrolysis.
Jang, Myoung-Uoon; Kang, Hye-Jeong; Jeong, Chang-Ku; Kang, Yewon; Park, Ji-Eun; Kim, Tae-Jip.
Affiliation
  • Jang MU; Division of Animal, Horticultural and Food Sciences, Graduate School of Chungbuk National University, Cheongju, 28644, Republic of Korea.
  • Kang HJ; Chungcheongbuk-do Agricultural Research and Extension Services, Cheongju, 28130, Republic of Korea.
  • Jeong CK; Advanced Protein Technologies Co., Suwon, 16229, Republic of Korea.
  • Kang Y; Division of Animal, Horticultural and Food Sciences, Graduate School of Chungbuk National University, Cheongju, 28644, Republic of Korea.
  • Park JE; Division of Animal, Horticultural and Food Sciences, Graduate School of Chungbuk National University, Cheongju, 28644, Republic of Korea.
  • Kim TJ; Division of Animal, Horticultural and Food Sciences, Graduate School of Chungbuk National University, Cheongju, 28644, Republic of Korea. tjkim@cbnu.ac.kr.
J Microbiol ; 56(2): 113-118, 2018 Feb.
Article in En | MEDLINE | ID: mdl-29392561
ABSTRACT
Cyclomaltodextrinases (CDases) belong to Glycoside Hydrolases (GH) family 13, which show versatile hydrolyzing and/or transglycosylation activity against cyclodextrin (CD), starch, and pullulan. Especially, some CDases have been reported to hydrolyze acarbose, a potent α-glucosidase inhibitor, and transfer the resulting acarviosine-glucose to various acceptors. In this study, a novel CDase (LPCD) gene was cloned from Lactobacillus plantarum WCFS1, which encodes 574 amino acids (64.6 kDa) and shares less than 44% of identities with the known CDase-family enzymes. Recombinant LPCD with C-terminal six-histidines was produced and purified from Escherichia coli. It showed the highest activity on ß-CD at 45°C and pH 5.0, respectively. Gel permeation chromatography analysis revealed that LPCD exists as a dodecameric form (~826 kDa). Its hydrolyzing activity on ß- CD is almost same as that on starch, whereas it can hardly attack pullulan. Most interestingly, LPCD catalyzed the unique modes of action in acarbose hydrolysis to produce maltose and acarviosine, as well as to glucose and acarviosineglucose.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Acarbose / Lactobacillus plantarum / Glycoside Hydrolases Language: En Journal: J Microbiol Journal subject: MICROBIOLOGIA Year: 2018 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Acarbose / Lactobacillus plantarum / Glycoside Hydrolases Language: En Journal: J Microbiol Journal subject: MICROBIOLOGIA Year: 2018 Type: Article