Institut für Pflanzenbiologie, Physiologie, Universität Zürich, Zollikerstraße 107, CH-8008, Zürich, Switzerland.
Planta. 1981 May;151(6):549-54. doi: 10.1007/BF00387434.
Malic enzyme (ME=L-malate: NADP oxidoreductase; E.C. 1.1.1.40) was extracted by Triton X-100-induced resolubilization of enzyme proteins which denaturize spontaneously upon homogenization of grape berry material. The purification procedure included fractionating with (NH4)2SO4, preparative IEF, and Sephadex G-100 chromatography. ME was identified by TLC of the radioactive product after supplementing the assay mixture with [(14)C]malate. Cofactor dependence, pH-optimum and affinities for substrates and cosubstrates were determined. Enzymic pI was found to be 5.8, the Hill coefficients range from 1 to 3. In malate decarboxylating direction at pH 7.4, grape ME displayed positive cooperativity toward the substrate, the curve approaching normal Michaelis-Menten-kinetics at pH 7.0. Substituting Mn(2+) for Mg(2+) not only increased maximal turnover rates, but also enzymic affinity for malate. These features were considered indicative of the regulatory properties of the enzyme. Their relevance for grape malate metabolism and fruit ripening is discussed.
苹果酸酶(ME=L-苹果酸:NADP 氧化还原酶;EC 1.1.1.40)通过 Triton X-100 诱导的酶蛋白溶解重新溶解提取,这些酶蛋白在葡萄浆果材料匀浆时会自发变性。纯化程序包括(NH4)2SO4 分级、制备IEF 和 Sephadex G-100 色谱。通过在测定混合物中补充[(14)C]苹果酸,对放射性产物进行 TLC 鉴定 ME。测定了辅助因子依赖性、pH 最适值以及对底物和共底物的亲和力。发现酶的等电点为 5.8,Hill 系数范围为 1 至 3。在 pH 7.4 下的苹果酸脱羧方向,葡萄 ME 对底物表现出正向协同作用,在 pH 7.0 时曲线接近正常的米氏-门坦动力学。用 Mn(2+)代替 Mg(2+)不仅提高了最大周转率,而且还提高了酶对苹果酸的亲和力。这些特征被认为表明了该酶的调节特性。讨论了它们与葡萄苹果酸代谢和果实成熟的相关性。