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首页> 外文期刊>Enzyme and Microbial Technology >Enzymatic properties of #alpha#-galactosidase from trichoderma reesei in the hydrolysis of galactooligosaccharides
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Enzymatic properties of #alpha#-galactosidase from trichoderma reesei in the hydrolysis of galactooligosaccharides

机译:里氏木霉的#alpha#-半乳糖苷酶在低聚半乳糖水解中的酶学性质

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摘要

Enzymatic properties of the #alpha#-galactosidase (#alpha#-galactoside galactohydrolase, EC 3.2.1.1.22) from Trichoderma resesei in the hydrolysis of natural galactooligosaccharides and #alpha#-O-methyl D-galactopyranoside have been investigated in a wide range of substrate concentrations. The hydrolyses of #alpha#-O-methyl D-galactopyranoside and melibiose were inhibited by substrate at concentrations higher than 100 mM while in the hydrolysis of raffinose and stachyose such an effect was not observed. It was shown by ~1H and ~(13)C NMR spectroscopy and HPLC techniques that inhibition by the excess of #alpha#-O-methyl D-galactopyranoside or melibiose strongly correlated with formation of transglycosylation products. the product of autocondensation reaction with #alpha#-O-methyl D-galactopyranoside as substrate was found to be #alpha#-O-methyl galctopyranosyl-1,6-D-galactopyranoside. The stereochemical course of stachyose hydrolysis has been determined. The enzyme catalyses the hydrolysis with retention of anomeric configuration and is assumed to operate via a double displacement mechanism. Simultaneous hydrolysis of stachyose and raffinose effected by the #alpha#-D-galactosidase was studied by direct ~1H NMR measurements. Cleavage of the terminal galactose residue of stachyose was found to be the rete-limitingstep. Formation constants of enzyme-substrate complex for stachyose and raffinose were calculated. The suggested model cna be used for simulating the two-substrate system and predicting the extent of stachyose hydrolysis.
机译:已经广泛研究了里氏木霉的#alpha#-半乳糖苷酶(#alpha#-半乳糖苷半乳糖水解酶,EC 3.2.1.1.22)在天然低聚半乳糖和#alpha#-O-甲基D-半乳糖吡喃糖苷水解中的酶学性质。底物浓度范围。浓度高于100 mM的底物抑制#alpha#-O-甲基D-吡喃半乳糖苷和美比糖的水解,而在棉子糖和水苏糖的水解中未观察到这种作用。通过〜1H和〜(13)C NMR光谱学和HPLC技术表明,过量的#alpha#-O-甲基D-吡喃半乳糖苷或蜜三糖的抑制作用与转糖基化产物的形成密切相关。发现以#α#-O-甲基D-吡喃半乳糖苷为底物的自缩合反应产物为#α#-O-甲基吡喃半乳糖基-1,6-D-吡喃半乳糖苷。已经确定了水苏糖水解的立体化学过程。该酶催化水解并保留端基异构体构型,并假定通过双重置换机制起作用。通过直接〜1H NMR测量研究了#alpha#-D-半乳糖苷酶对水苏糖和棉子糖的同时水解。发现水苏糖的末端半乳糖残基的切割是rete-limiting步骤。计算了水苏糖和棉子糖酶-底物复合物的形成常数。所建议的模型可用于模拟两底物系统并预测水苏糖的水解程度。

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