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甘薯β-淀粉酶和大豆β-淀粉酶对芳基β-麦芽三糖苷的水解作用。

Hydrolysis of aryl beta-maltotriosides by sweet potato beta-amylase and soybean beta-amylase.

作者信息

Suetsugu N, Takeo K, Sanai Y, Kuge T

出版信息

J Biochem. 1978 Feb;83(2):473-8. doi: 10.1093/oxfordjournals.jbchem.a131934.

Abstract

Sweet potato beta-amylase [EC 3.2.1.2, alpha 1,4-D-glucan maltohydrolase]-catalyzed hydrolyses of aryl beta-maltotriosides with substituents, NO2-, Cl-, and Br- at the o-, m-, and p-positions in the phenyl ring were studied at pH 4.8 and 25 degrees C. The hydrolyses of a few of the maltotriosides by soybean beta-amylase [EC 3.2.1.2, alpha-1,4-D-glucan maltohydrolase] were also studied at pH 5.4 and 25 degrees C. It was found that the aryl beta-maltotriosides were preferentially hydrolyzed into maltose and aryl beta-D-glucosides by both beta-amylases. The Michaelis constant Km and the molecular activity ko were determined for the hydrolyses of these maltotriosides and compared with those of maltotriose and maltotetraose. Aryl beta-maltotriosides were more rapidly hydrolyzed than maltotriose by a factor of 30--80, and more slowly hydrolyzed than maltotetraose by a factor of 10--30, depending on the kinds of substituents. The rapid hydrolysis of aryl beta-maltotrioside as compared with maltotriose may be due to the interaction of an aryl group with the subsite of beta-amylase. This is in contrast with glucoamylase [EC 3.2.1.3, alpha-1,4-D-glucan glucohydrolase] of Rhizopus niveus-catalyzed hydrolysis of phenyl beta-maltoside, whose phenyl group does not interact so much with the subsite of the enzyme.

摘要

在pH 4.8和25℃条件下,研究了甘薯β-淀粉酶[EC 3.2.1.2,α-1,4-D-葡聚糖麦芽糖水解酶]催化水解苯环邻、间、对位带有取代基(NO2-、Cl-和Br-)的芳基β-麦芽三糖苷。在pH 5.4和25℃条件下,还研究了大豆β-淀粉酶[EC 3.2.1.2,α-1,4-D-葡聚糖麦芽糖水解酶]对几种麦芽三糖苷的水解作用。结果发现,两种β-淀粉酶都能将芳基β-麦芽三糖苷优先水解为麦芽糖和芳基β-D-葡萄糖苷。测定了这些麦芽三糖苷水解反应的米氏常数Km和分子活性ko,并与麦芽三糖和麦芽四糖的相应值进行了比较。根据取代基种类的不同,芳基β-麦芽三糖苷的水解速度比麦芽三糖快30 - 80倍,比麦芽四糖慢10 - 30倍。与麦芽三糖相比,芳基β-麦芽三糖苷水解速度较快可能是由于芳基与β-淀粉酶的亚位点相互作用。这与雪白根霉的葡糖淀粉酶[EC 3.2.1.3,α-1,4-D-葡聚糖葡糖水解酶]催化水解苯基β-麦芽糖苷的情况形成对比,在后者中苯基与酶的亚位点相互作用较弱。

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