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通过使用脱支酶提高环糊精产量。

Enhancement of cyclodextrin production through use of debranching enzymes.

作者信息

Rendleman J A

机构信息

Biopolymer Research Unit, National Center for Agricultural Utilization Research, U.S. Department of Agriculture, Peoria, IL 61604, USA.

出版信息

Biotechnol Appl Biochem. 1997 Aug;26(1):51-61.

PMID:9262003
Abstract

In the presence of a complexant and a debranching enzyme capable of cleaving alpha-(1-->6) linkages in alpha-D-glucans, Bacillus mascerans cyclodextrin glucanotransferase (CGTase; EC 2.4.1.19) converted starch, maltodextrin and glycogen into cyclodextrin (CD) in yields higher than those obtainable in the absence of debranching enzyme. The extent of yield enhancement by pullulanase (EC 3.2.1.41; from Enterobacter aerogenes) was dependent upon temperature, type of substrate (including source of starch) and kind of complexant. Highest yields with pullulanase were attained generally by use of low temperature (15-25 degrees C) and starches of low amylose content. At 25 degrees C and pH 7, with cyclodecanone as complexant, 91-93% yields of beta-CD were obtainable from amylopectin, waxy-maize starch, and tapioca starch. With decan-I-ol as complexant, amylopectin was converted at 15 degrees C into alpha-CD in 84% yield. With cyclotridecanone as complexant, amylopectin was converted at 40 degrees C into gamma-CD in 72% yield. The debranching enzyme isoamylase (EC 3.2.1.68; from Pseudomonas amyloderamosa) was also employed successfully to achieve high beta-CD yields. A 90% yield of beta-CD from amylopectin was obtained by applying isoamylase, CGTase and cyclodecanone at pH 6 and 25 degrees C.

摘要

在存在络合剂和能够切割α-D-葡聚糖中α-(1→6)键的脱支酶的情况下,解淀粉芽孢杆菌环糊精葡糖基转移酶(CGTase;EC 2.4.1.19)将淀粉、麦芽糊精和糖原转化为环糊精(CD),其产率高于在没有脱支酶的情况下所能获得的产率。支链淀粉酶(EC 3.2.1.41;来自产气肠杆菌)提高产率的程度取决于温度、底物类型(包括淀粉来源)和络合剂种类。使用支链淀粉酶通常通过采用低温(15 - 25℃)和低直链淀粉含量的淀粉来获得最高产率。在25℃和pH 7条件下,以环癸酮作为络合剂,从支链淀粉、糯玉米淀粉和木薯淀粉中可获得91 - 93%产率的β-CD。以癸-1-醇作为络合剂,支链淀粉在15℃下转化为α-CD的产率为84%。以环十三酮作为络合剂,支链淀粉在40℃下转化为γ-CD的产率为72%。脱支酶异淀粉酶(EC 3.2.1.68;来自解淀粉假单胞菌)也成功用于实现高β-CD产率。在pH 6和25℃条件下,通过应用异淀粉酶、CGTase和环癸酮,从支链淀粉中获得了90%产率的β-CD。

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