Literature DB >> 10545215

Comparative study of the inhibition of alpha-glucosidase, alpha-amylase, and cyclomaltodextrin glucanosyltransferase by acarbose, isoacarbose, and acarviosine-glucose.

M J Kim1, S B Lee, H S Lee, S Y Lee, J S Baek, D Kim, T W Moon, J F Robyt, K H Park.   

Abstract

Bacillus stearothermophilus maltogenic amylase hydrolyzes the first glycosidic linkage of acarbose to give acarviosine-glucose. In the presence of carbohydrate acceptors, acarviosine-glucose is primarily transferred to the C-6 position of the acceptor. When d-glucose is the acceptor, isoacarbose is formed. Acarbose, acarviosine-glucose, and isoacarbose were compared as inhibitors of alpha-glucosidase, alpha-amylase, and cyclomaltodextrin glucanosyltransferase. The three inhibitors were found to be competitive inhibitors for alpha-glucosidase and mixed noncompetitive inhibitors for alpha-amylase and cyclomaltodextrin glucanosyltransferase. The K(i) values were dependent on the type of enzyme and their source. Acarviosine-glucose was a potent inhibitor for baker's yeast alpha-glucosidase, inhibiting 430 times more than acarbose, and was an excellent inhibitor for cyclomaltodextrin glucanosyltransferase, inhibiting 6 times more than acarbose. Isoacarbose was the most effective inhibitor of alpha-amylase and cyclomaltodextrin glucanosyltransferase, inhibiting 15.2 and 2.0 times more than acarbose, respectively. Copyright 1999 Academic Press.

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Year:  1999        PMID: 10545215     DOI: 10.1006/abbi.1999.1423

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  18 in total

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2.  Comparison of α-glucosidase inhibition by Cudrania tricuspidata according to harvesting time.

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Journal:  Biomed Rep       Date:  2013-05-22

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Journal:  Biochem J       Date:  2006-08-01       Impact factor: 3.857

4.  Structure-function analysis of silkworm sucrose hydrolase uncovers the mechanism of substrate specificity in GH13 subfamily 17 exo-α-glucosidases.

Authors:  Takatsugu Miyazaki; Enoch Y Park
Journal:  J Biol Chem       Date:  2020-05-07       Impact factor: 5.157

5.  Effects of extraction methods on physicochemical properties and hypoglycemic activities of polysaccharides from coarse green tea.

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Journal:  Glycoconj J       Date:  2020-01-08       Impact factor: 2.916

6.  Functional expression and enzymatic characterization of Lactobacillus plantarum cyclomaltodextrinase catalyzing novel acarbose hydrolysis.

Authors:  Myoung-Uoon Jang; Hye-Jeong Kang; Chang-Ku Jeong; Yewon Kang; Ji-Eun Park; Tae-Jip Kim
Journal:  J Microbiol       Date:  2018-02-02       Impact factor: 3.422

Review 7.  α-Glucosidases and α-1,4-glucan lyases: structures, functions, and physiological actions.

Authors:  Masayuki Okuyama; Wataru Saburi; Haruhide Mori; Atsuo Kimura
Journal:  Cell Mol Life Sci       Date:  2016-04-30       Impact factor: 9.261

8.  Bioactivity-guided isolation and purification of α-glucosidase inhibitor, 6-O-D-glycosides, from Tinta Cão grape pomace.

Authors:  Shi Sun; Hoda Chaouki Kadouh; Wenjun Zhu; Kequan Zhou
Journal:  J Funct Foods       Date:  2016-03-31       Impact factor: 4.451

9.  Breakdown of mucin as barrier to digestive enzymes in the ischemic rat small intestine.

Authors:  Marisol Chang; Tom Alsaigh; Erik B Kistler; Geert W Schmid-Schönbein
Journal:  PLoS One       Date:  2012-06-29       Impact factor: 3.240

10.  Influence of terpenoids and acarbose on glycosyltransferases produced by strain Leuconostoc mesenteroides URE 13.

Authors:  Veselin Bivolarski; Tonka Vasileva; Petko Bozov; Ilia Iliev
Journal:  Biotechnol Biotechnol Equip       Date:  2014-07-08       Impact factor: 1.632

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