Mitsui T, Yamaguchi J, Akazawa T
Department of Applied Biological Chemistry, Niigata University, Japan.
Plant Physiol. 1996 Apr;110(4):1395-404. doi: 10.1104/pp.110.4.1395.
We have identified, purified, and characterized 10 alpha-amylase isoforms from suspension-cultured rice (Oryza sativa L.) cells having different isoelectric point values. They had distinguishable optimum temperatures for enzymatic activity and molecular sizes. The results of immunoblotting indicated that polyclonal anti-A + B antibodies bound well to isoforms A, B, Y, and Z but weakly or not at all to E, F, G, H, I, and J. However, the anti-A + B antibodies inhibited the enzyme activities of only isoforms A and B. Polyclonal anti-H antibodies strongly bound to isoforms F, G, H, I, and J, whereas polyclonal anti-E antibodies preferentially recognized isoform E. A monoclonal antibody against isoform H (H-G49) inhibited the activities of isoforms E, G, H, I, and J, whereas it did not inhibit those of isoforms A, B, Y, and Z. Judging from their physicochemical and serological properties, we classified the rice alpha-amylase isoforms into two major classes, class I (A, B, Y, and Z) and class II (E, F, G, H, I, and J), and into four subgroups, group 1 (A and B), group 2 (Y and Z), group 3 (E), and group 4 (F, G, H, I, and J). Partial amino acid sequences for isoforms A, E, G, and H were also determined. In addition, the recombinant alpha-amylases expressed by plasmid pEno/103 containing the rice alpha-amylase gene RAmy1A in yeast were identified as both isoforms A and B. These analyses indicated that isoforms A and B were encoded by the gene RAmy1A, isoforms G and H were encoded by the gene RAmy3D, and isoform E was encoded by RAmy3E. The results strongly suggest that some isoforms within subgroups are formed by posttranslational modifications.
我们从悬浮培养的水稻(Oryza sativa L.)细胞中鉴定、纯化并表征了10种具有不同等电点值的α-淀粉酶同工型。它们具有不同的酶活性最佳温度和分子大小。免疫印迹结果表明,多克隆抗A + B抗体与同工型A、B、Y和Z结合良好,但与E、F、G、H、I和J结合较弱或根本不结合。然而,抗A + B抗体仅抑制同工型A和B的酶活性。多克隆抗H抗体与同工型F、G、H、I和J强烈结合,而多克隆抗E抗体优先识别同工型E。一种针对同工型H的单克隆抗体(H-G49)抑制同工型E、G、H、I和J的活性,但不抑制同工型A、B、Y和Z的活性。从它们的物理化学和血清学特性判断,我们将水稻α-淀粉酶同工型分为两大类,I类(A、B、Y和Z)和II类(E、F、G、H、I和J),并分为四个亚组,第1组(A和B)、第2组(Y和Z)、第3组(E)和第4组(F、G、H、I和J)。还测定了同工型A、E、G和H的部分氨基酸序列。此外,在酵母中由含有水稻α-淀粉酶基因RAmy1A的质粒pEno/103表达的重组α-淀粉酶被鉴定为同工型A和B。这些分析表明,同工型A和B由基因RAmy1A编码,同工型G和H由基因RAmy3D编码,同工型E由RAmy3E编码。结果强烈表明,亚组内的一些同工型是由翻译后修饰形成的。