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两种酵母α-葡萄糖苷酶合成反应的特异性

The specificity of the synthetic reaction of two yeast alpha-glucosidases.

作者信息

Lai H Y, Axelrod B

出版信息

Biochim Biophys Acta. 1975 May 23;391(1):121-8. doi: 10.1016/0005-2744(75)90158-8.

Abstract

The specificity of the hydrolytic reaction has been compared to that of the synthetic reaction for maltase and isomaltase (alpha-methyl-D-glucosidase) from Saccharomyces oviformis. Maltase which hydrolyzes the alpha-1,4-disaccharide, maltose, and the alpha-1,6-disaccharide, isomaltose, catalyzes the formation of both maltose and isomaltose from free glucose. Isomaltase, which hydrolyzes isomaltose but not maltose, catalyzes the formation only of isomaltose from glucose. Both enzymes hydrolyze p-nitrophenyl-alpha-D-glucoside releasing the alpha-anomer of glucose. The enzymes utilize the alpha-anomer but not the beta-anomer for the synthesis of the disaccharides. These results are consistent with the double displacement mechanism for glycosidases and with the proposal that the glucosyl-enzyme complex is an intermediate in the reaction. The competitive inhibition by D-glucose is independent of its anomeric form for both enzymes.

摘要

已将卵形酵母中麦芽糖酶和异麦芽糖酶(α-甲基-D-葡萄糖苷酶)水解反应的特异性与合成反应的特异性进行了比较。水解α-1,4-二糖麦芽糖和α-1,6-二糖异麦芽糖的麦芽糖酶,催化由游离葡萄糖形成麦芽糖和异麦芽糖。水解异麦芽糖而不水解麦芽糖的异麦芽糖酶,仅催化由葡萄糖形成异麦芽糖。两种酶都水解对硝基苯基-α-D-葡萄糖苷,释放出葡萄糖的α-异头物。这些酶利用α-异头物而非β-异头物来合成二糖。这些结果与糖苷酶的双置换机制以及葡萄糖基酶复合物是反应中间体的提议一致。D-葡萄糖对两种酶的竞争性抑制与其异头形式无关。

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