Studies on the Fine Structure of Starch Molecules and Novel Starch Related Enzymes

K. Kainuma
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Abstract

Researches on structural analysis, physical properties of starch and discoveries of novel starch related enzymes are summarized in this paper as an award address. 1) Physical properties and utilization of various starches Starch phosphate derivatives obtained by chemical synthesis or simple cation substitution of naturally existing phosphate of potato starch are discussed in terms of physical properties and possible utilization. Sago starch as a. neglected starch resource in tropical area and newly developed methodology during the study such as photopastegraphy, Q-amylase/pullulanase method (BAP method) are also described. 2) Fine structure of amylopectin: Fine structures of waxy maize starch were analyzed by structure of a-limit dextrin, X-ray diffraction and enzymic structural analysis of Naegeli amylodextrin, transmission electron microscopy and computer modeling. From the results of these studies, French proposed?gcluster model?hfor amylopectin molecules and Kainuma and French proposed?gdouble helix?hconformation for crystalline part of amylopectin. In 1980, Kainuma represented schematic arrangement of amylopectin molecules within a growth ring. 3) Novel starch related enzymes and oligosaccharides: During structural analysis, exo-maltohexaohydrolase (E. C. 3.2.1.98) was unexpectedly discovered as a contaminant of A. aero genes pullulanase. Since this discovery, our research efforts were concentrated to screen new starch related enzymes and enzymatic preparation of oligosaccharides. As the results, cyclodextrins and branched cyclodextrins, isomaltose, maltohexaose, erythritol -a noncaloric sweetener-were already commercially manufactured. Raw starch hydrolyzing glucoamylase of Chalara paradoxa isolated from sago palm tree in Papua New Guinea is expected for energy-saving saccharification of starch.
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淀粉分子精细结构及新型淀粉相关酶的研究
本文对近年来在淀粉结构分析、淀粉物理性质和新型淀粉相关酶方面的研究进展进行了综述,并作为获奖致辞。1)讨论了马铃薯淀粉中天然存在的磷酸盐通过化学合成或简单阳离子取代得到的淀粉磷酸盐衍生物的物理性质和可能的利用。介绍了西米淀粉作为热带地区被忽视的一种淀粉资源,以及近年来在西米淀粉研究中的新方法,如光度计法、q -淀粉酶/葡聚糖酶法(BAP法)。2)支链淀粉的精细结构:通过a-极限糊精结构、x射线衍射和Naegeli淀粉糊精酶结构分析、透射电镜和计算机建模分析糯玉米淀粉的精细结构。从这些研究的结果来看,弗兰奇提出?gcluster模型?对于支链淀粉分子,Kainuma和French提出?gdouble螺旋?支链淀粉结晶部分的h构象。1980年,Kainuma展示了支链淀粉分子在生长环内的示意图。3)新的淀粉相关酶和低聚糖:在结构分析中,意外地发现外显麦芽己糖水解酶(e.c.3.2.1.98)是a . aero基因普鲁兰酶的污染物。自这一发现以来,我们的研究工作集中在筛选新的淀粉相关酶和酶促低聚糖制备上。结果,环糊精和支链环糊精、异麦芽糖、麦芽糖己糖、赤藓糖醇——一种无热量的甜味剂——已经被商业化生产。从巴布亚新几内亚西米棕榈树中分离得到的原淀粉水解糖淀粉酶有望用于淀粉的节能糖化。
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