Terashima M, Katoh S, Thomas B R, Rodriguez R L
Department of Synthetic Chemistry and Biological Chemistry, Kyoto University, Japan.
Appl Microbiol Biotechnol. 1995 Nov;43(6):1050-5. doi: 10.1007/BF00166924.
Two rice alpha-amylase isozymes, AmylA and Amy3D, were produced by secretion from genetically engineered strains of Saccharomyces cerevisiae. They have distinct differences in enzymatic characteristics that can be related to the physiology of the germinating rice seed. The rice isozymes were purified with immunoaffinity chromatography. The pH optima for Amy3D (pH optimum 5.5) and Amy1A (pH optimum 4.2) correlate with the pH of the endosperm tissue at the times in rice seedling development when these isozymes are produced. Amy3D showed 10-14 times higher reactivity to oligosaccharides than Amy1A. Amy1A, on the other hand, showed higher reactivity to soluble starch and starch granules than Amy3D. These results suggest that the isozyme Amy3D, which is expressed at an early stage of germination, produces sugars from soluble starch during the early stage of seed germination and that the isozyme Amy1A works to initiate hydrolysis of the starch granules.
两种水稻α-淀粉酶同工酶,即淀粉酶A(AmylA)和淀粉酶3D(Amy3D),是通过基因工程改造的酿酒酵母菌株分泌产生的。它们在酶学特性上有明显差异,这与发芽水稻种子的生理学相关。水稻同工酶通过免疫亲和色谱法进行纯化。淀粉酶3D(最适pH 5.5)和淀粉酶1A(最适pH 4.2)的最适pH与这些同工酶产生时水稻幼苗发育阶段胚乳组织的pH相关。淀粉酶3D对寡糖的反应活性比淀粉酶1A高10 - 14倍。另一方面,淀粉酶1A对可溶性淀粉和淀粉颗粒的反应活性比淀粉酶3D高。这些结果表明,在萌发早期表达的同工酶淀粉酶3D在种子萌发早期从可溶性淀粉产生糖类,而同工酶淀粉酶1A则致力于启动淀粉颗粒的水解。