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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Preliminary Investigation on the Action Modes of an Oligosaccharide-Producing Multifunctional Amylase
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Preliminary Investigation on the Action Modes of an Oligosaccharide-Producing Multifunctional Amylase

机译:产生寡糖的多功能淀粉酶的作用方式的初步研究

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摘要

The action modes of an oligosaccharide-producing multifunctional amylase (OPMA) were investigated using glucose and some oligosaccharides as its substrates.OPMA did not cause the hydrolysis of maltose or isomaltose, but it catalyzed the a-1,6-transglycosylation of maltose to produce isomaltose or did the self-condensation of isomaltose to form isomaltotetraose and 4-O-α-isomaltosyl isomaltose. OPMA exhibited strong a-1,6-transglycosylation activity in addition to its α-1,4-hydrolytic activity on higher oligosaccharides substrates rather than bisaccharides. OPMA displayed high acceptor specificity in its transglycosylation or condensation reaction. OPMA seemed to only take glucose or isomaltose as the acceptor molecule in its transglycosylation or condensation reaction, which made glucose or isomaltose form higher products, and as a result, glucose or isomaltose were absent in the final products. In view of the simultaneously formation of several transglycosylation or condensation products, it was predicted that there might be separate donor and acceptor sites in OPMA’s active center and the fact that the catalytically active form of this enzyme included its homodimer or homotrimer supported this prediction. Accordingly, a special pathway, isomaltose pathway, for OPMA catalysis was proposed to emphasize the central or important signification of isomaltose in OPMA catalysis.
机译:以葡萄糖和一些寡糖为底物,研究了产生低聚糖的多功能淀粉酶(OPMA)的作用方式.OPMA不会引起麦芽糖或异麦芽糖的水解,但能催化麦芽糖的a-1,6-转糖基化反应或异麦芽糖的自缩合形成异麦芽四糖和4-O-α-异麦芽糖基异麦芽糖。除了在较高的寡糖底物而不是双糖上的α-1,4-水解活性外,OPMA还显示出很强的a-1,6-转糖基化活性。 OPMA在其转糖基化或缩合反应中显示出高受体特异性。 OPMA在其转糖基化或缩合反应中似乎仅以葡萄糖或异麦芽糖为受体分子,这使得葡萄糖或异麦芽糖形成更高的产物,结果最终产物中不存在葡萄糖或异麦芽糖。考虑到同时形成多个转糖基化或缩合产物,据预测在OPMA的活性中心可能有单独的供体和受体位点,并且该酶的催化活性形式包括其同二聚体或同三聚体这一事实支持了这一预测。因此,提出了用于OPMA催化的特殊途径,异麦芽糖途径,以强调异麦芽糖在OPMA催化中的中心或重要意义。

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