Pfeiffer D R, Tchen T T
Biochemistry. 1975 Jan 14;14(1):89-96. doi: 10.1021/bi00672a015.
Adrenal cortex mitochondria prepared by a standard method do not exhibit malic enzyme activity. Addition of physiological concentrations of Ca2+ and Mg2+ enables these mitochondria to reduce added NADP+ by malate to form free NADPH. Half-maximum activation of the mitochondrial malic enzyme requires 0.3 mM Ca2+ and 1 mM Mg2+. Solubilized mitochondrial malic enzymes is independent of Ca2+ and has a K M of 0.2 mM for Mg2+. The Ca2+ effect is dependent on an initial period of active Ca2+ uptake which also causes other changes in respiratory properties similar to those observed with mitochondria from other tissues. After Ca2+ accumulation has taken place, free Ca2+, but not additional accumulation, is still required for malic enzyme activity. The requirement for Mg2+ can be met by Mn2+ (1 mM). This concentration of Mn2+ alone yielded only a slight activation of mitochondrial malic enzyme while higher concentrations of Mn2+ alone gave good activation of the mitochondrial malic enzy.e The NADPH generated by the Ca2+-Mg2+ activated malic enzyme effectively supports the 11beta-hydroxylation of deoxycorticosterone, whereas in the presence of malate, or malate plus Mg2+ but absence of Ca2+, the energy linked transhydrogenase supplies all the required NADPH. The activated malic enzyme appears to be more efficient than transhydrogenase in generating NADPH to support 11beta-hydroxylation. Cyanide and azide have been found to inhibit solubilized mitochondrial malic enzyme.
用标准方法制备的肾上腺皮质线粒体不表现出苹果酸酶活性。添加生理浓度的Ca2+和Mg2+可使这些线粒体通过苹果酸还原添加的NADP+以形成游离的NADPH。线粒体苹果酸酶的半最大激活需要0.3 mM Ca2+和1 mM Mg2+。溶解的线粒体苹果酸酶与Ca2+无关,对Mg2+的Km为0.2 mM。Ca2+的作用取决于最初的活跃Ca2+摄取期,这也会导致呼吸特性的其他变化,类似于在其他组织的线粒体中观察到的变化。在Ca2+积累发生后,苹果酸酶活性仍需要游离的Ca2+,但不需要额外的积累。Mg2+的需求可以由Mn2+(1 mM)满足。单独这种浓度的Mn2+仅产生线粒体苹果酸酶的轻微激活,而单独较高浓度的Mn2+则能很好地激活线粒体苹果酸酶。由Ca2+-Mg2+激活的苹果酸酶产生的NADPH有效地支持了脱氧皮质酮的11β-羟化,而在存在苹果酸或苹果酸加Mg2+但不存在Ca2+的情况下,能量偶联转氢酶提供了所有所需的NADPH。活化的苹果酸酶在产生NADPH以支持11β-羟化方面似乎比转氢酶更有效。已发现氰化物和叠氮化物可抑制溶解的线粒体苹果酸酶。