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Study of the inhibition of two human maltase-glucoamylases catalytic domains by different α-glucosidase inhibitors

Authors :
Ren, Limei
Cao, Xiaofang
Geng, Peng
Bai, Fang
Bai, Gang
Source :
Carbohydrate Research. Dec2011, Vol. 346 Issue 17, p2688-2692. 5p.
Publication Year :
2011

Abstract

Abstract: In humans, both the N-terminal catalytic domain (NtMGAM) and the C-terminal catalytic domain (CtMGAM) of small intestinal maltase glucoamylase (MGAM) are α-glycosidases that catalyze the hydrolysis of α-(1→4) glycosidic linkages in the process of starch digestion, and are considered to be the main therapeutic targets for type 2 diabetes. In this work, recombinant human CtMGAM has been cloned for the first time, and this, combined with the expression of NtMGAM in Pichia pastoris, made it possible for us to study the catalytic mechanism of MGAM in a well-defined system. The enzymatic kinetic assays of the two catalytic domains suggest that CtMGAM has the higher affinity for longer maltose oligosaccharides. Kinetic studies of commercially-available drugs such as 1-deoxynojirimycin (DNJ), miglitol, voglibose, and acarbose along with a series of acarviosine-containing oligosaccharides we isolated from Streptomyces coelicoflavus against NtMGAM, CtMGAM, and human pancreatic α-amylase (HPA) provide us an overall profile of the inhibitory ability of these inhibitors. Of all the inhibitors used in this paper, DNJ was the most effective inhibitor against MGAM; the K i values for the two catalytic domains were 1.41 and 2.04μM for NtMGAM and CtMGAM, respectively. Acarviostatins 2-03 and 3-03 were the best inhibitors against HPA with relatively high inhibitory activity against CtMGAM. The acarviostatins 2-03 and 3-03 inhibition constants, K i, for HPA were 15 and 14.3nM, and those for CtMGAM were 6.02 and 6.08μM, respectively. These results suggest that NtMGAM and CtMGAM differ in their substrate specificities and inhibitor tolerance despite their structural relationship. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
00086215
Volume :
346
Issue :
17
Database :
Academic Search Index
Journal :
Carbohydrate Research
Publication Type :
Academic Journal
Accession number :
67324777
Full Text :
https://doi.org/10.1016/j.carres.2011.09.012