Contribution of mucosal maltase-glucoamylase activities to mouse small intestinal starch alpha-glucogenesis.
نویسندگان
چکیده
Digestion of starch requires activities provided by 6 interactive small intestinal enzymes. Two of these are luminal endo-glucosidases named alpha-amylases. Four are exo-glucosidases bound to the luminal surface of enterocytes. These mucosal activities were identified as 4 different maltases. Two maltase activities were associated with sucrase-isomaltase. Two remaining maltases, lacking other identifying activities, were named maltase-glucoamylase. These 4 activities are better described as alpha-glucosidases because they digest all linear starch oligosaccharides to glucose. Because confusion persists about the relative roles of these 6 enzymes, we ablated maltase-glucoamylase gene expression by homologous recombination in Sv/129 mice. We assayed the alpha-glucogenic activities of the jejunal mucosa with and without added recombinant pancreatic alpha-amylase, using a range of food starch substrates. Compared with wild-type mucosa, null mucosa or alpha-amylase alone had little alpha-glucogenic activity. alpha-Amylase amplified wild-type and null mucosal alpha-glucogenesis. alpha-Amylase amplification was most potent against amylose and model resistant starches but was inactive against its final product limit-dextrin and its constituent glucosides. Both sucrase-isomaltase and maltase-glucoamylase were active with limit-dextrin substrate. These mucosal assays were corroborated by a 13C-limit-dextrin breath test. In conclusion, the global effect of maltase-glucoamylase ablation was a slowing of rates of mucosal alpha-glucogenesis. Maltase-glucoamylase determined rates of digestion of starch in normal mice and alpha-amylase served as an amplifier for mucosal starch digestion. Acarbose inhibition was most potent against maltase-glucoamylase activities of the wild-type mouse. The consortium of 6 interactive enzymes appears to be a mechanism for adaptation of alpha-glucogenesis to a wide range of food starches.
منابع مشابه
Contribution of Mucosal Maltase-Glucoamylase Activities to Mouse Small Intestinal Starch a-Glucogenesis
Digestion of starch requires activities provided by 6 interactive small intestinal enzymes. Two of these are luminal endoglucosidases named a-amylases. Four are exo-glucosidases bound to the luminal surface of enterocytes. These mucosal activities were identified as 4 different maltases. Two maltase activities were associated with sucrase-isomaltase. Two remaining maltases, lacking other identi...
متن کاملDirect starch digestion by sucrase-isomaltase and maltase-glucoamylase.
1. Jane J, Chen YY, Lee LF, et al. Effects of amylopectin branch chain length and amylose content on the gelatinization and pasting properties of starch. Cereal Chem 1999;76:629–37. 2. Quezada-Calvillo R, Robayo-Torres CC, Opekum AR, et al. Contribution of mucosal maltase-glucoamylase activities to mouse small intestinal starch alpha-glucogenesis. J Nutr 2007;137:1725–33. 3. Nichols BL, Quezada...
متن کاملClinical aspects and treatment of congenital sucrase-isomaltase deficiency.
30. Chantret I, Lacasa M, Chevalier G, et al. Sequence of the complete cDNA and the 50 structure of the human sucrase-isomaltase gene. Possible homology with a yeast glucoamylase. Biochem J 1992; 285:915–23. 31. Nichols BL, Eldering J, Avery S, et al. Human small intestinal maltaseglucoamylase cDNA cloning. Homology to sucrase-isomaltase. J Biol Chem 1998;273:3076–81. 32. Nichols BL, Avery S, S...
متن کاملMucosal maltase-glucoamylase plays a crucial role in starch digestion and prandial glucose homeostasis of mice.
Starch is the major source of food glucose and its digestion requires small intestinal alpha-glucosidic activities provided by the 2 soluble amylases and 4 enzymes bound to the mucosal surface of enterocytes. Two of these mucosal activities are associated with sucrase-isomaltase complex, while another 2 are named maltase-glucoamylase (Mgam) in mice. Because the role of Mgam in alpha-glucogenic ...
متن کاملA comparison of the active site of maltase-glucoamylase from the brush border of rabbit small intestine and kidney by chemical modification studies.
The neutral maltase-glucoamylase complex has been purified to homogeneity from the brush-border membrane of rabbit intestine and kidney. Chemical modification of the amino acid side chains was carried out on the purified enzymes. Studies on the kidney enzyme revealed that tryptophan, histidine and cysteine were essential for both maltase and glucoamylase activities, whereas tryptophan, histidin...
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عنوان ژورنال:
- The Journal of nutrition
دوره 137 7 شماره
صفحات -
تاریخ انتشار 2007