Galina A, Reis M, Albuquerque M C, Puyou A G, Puyou M T, de Meis L
Departamento de Bioquimica, Universidade Federal do Rio de Janeiro, Brazil.
Biochem J. 1995 Jul 1;309 ( Pt 1)(Pt 1):105-12. doi: 10.1042/bj3090105.
After tissue homogenization, 43% of the total hexokinase activity found in maize radicles was recovered in the mitochondrial fraction and 35% was soluble, in the cytosol. The maize submitochondrial particles obtained after mitochondrial sonication retained a high hexokinase activity. The mitochondrial respiration (state 4 rate) was activated by glucose. This activation was blocked by carboxyatractyloside (0.5 mM) and by oligomycin (2 micrograms/ml). The affinities for ATP and glucose of both soluble and membrane-bound maize hexokinases are similar to those of yeast hexokinase. The Km for ATP of these different forms of hexokinase varied between 0.15 and 0.37 mM, and the Km for glucose between 0.05 and 0.13 mM. A major difference between the two maize hexokinase forms is that only the mitochondrial enzyme was strongly inhibited by ADP (Ki 0.04 mM). The soluble forms of hexokinase found both in the cytosol of maize radicles and in yeast are not inhibited by ADP. In a previous report [de Meis, Grieco and Galina (1992) FEBS Lett. 308, 197-201] it was shown that the mitochondrial F1-F0-ATPase can use glucose 6-phosphate and yeast hexokinase as an ATP regenerating system. We now show that the membrane-bound hexokinase and glucose 6-phosphate can also serve as an ATP regenerating system for the mitochondria of maize radicles provided that the ADP concentration is kept below 0.05 mM. Higher ADP concentrations inhibit the reverse reaction of the mitochondrial hexokinase.
组织匀浆后,玉米胚根中发现的总己糖激酶活性有43%在线粒体部分中回收,35%是可溶的,存在于胞质溶胶中。线粒体超声处理后获得的玉米亚线粒体颗粒保留了较高的己糖激酶活性。线粒体呼吸(状态4速率)被葡萄糖激活。这种激活被羧基苍术苷(0.5 mM)和寡霉素(2微克/毫升)阻断。玉米可溶性和膜结合己糖激酶对ATP和葡萄糖的亲和力与酵母己糖激酶相似。这些不同形式的己糖激酶对ATP的Km在0.15至0.37 mM之间变化,对葡萄糖的Km在0.05至0.13 mM之间变化。两种玉米己糖激酶形式之间的一个主要区别是,只有线粒体酶受到ADP的强烈抑制(Ki 0.04 mM)。在玉米胚根胞质溶胶和酵母中发现的可溶性己糖激酶形式不受ADP抑制。在之前的一份报告中[德梅斯、格里eco和加林娜(1992年)《欧洲生物化学学会联合会快报》308,197 - 201]表明,线粒体F1 - F0 - ATP酶可以使用6 - 磷酸葡萄糖和酵母己糖激酶作为ATP再生系统。我们现在表明,只要ADP浓度保持在0.05 mM以下,膜结合己糖激酶和6 - 磷酸葡萄糖也可以作为玉米胚根线粒体的ATP再生系统。较高的ADP浓度会抑制线粒体己糖激酶的逆反应。