McKelvey J R, Fioravanti C F
Mol Biochem Parasitol. 1985 Nov;17(2):253-63. doi: 10.1016/0166-6851(85)90022-2.
The intramitochondrial localization of the fumarate reductase, NADPH----NAD transhydrogenase, 'malic' enzyme and fumarase was determined in adult Hymenolepis diminuta. The distribution of marker enzymes for the inner membrane, matrix, intermembrane space and outer membrane of H. diminuta mitochondria simulated that of the corresponding ascarid and mammalian organelles. The electron transport-coupled fumarate reductase and the NADPH----NAD transhydrogenase were components of the inner membrane whereas the 'malic' enzyme and fumarase were in the matrix soluble compartment. Assessments of NADH utilization, malate-dependent NADP reduction and NADPH----NAD transhydrogenation by presumedly intact and disrupted mitochondria supported the localization data. The findings presented indicate that in H. diminuta mitochondria (a) NADPH and fumarate are accumulated within the matrix compartment; (b) transhydrogenation between NADPH and NAD is an event associated with the matrix side of the inner membrane; and (c) electron transport-dependent NADH oxidation and fumarate reduction occur at sites on the matrix side of the inner membrane.
在成年微小膜壳绦虫中测定了延胡索酸还原酶、NADPH----NAD转氢酶、“苹果酸”酶和延胡索酸酶的线粒体内定位。微小膜壳绦虫线粒体的内膜、基质、膜间隙和外膜的标记酶分布情况与相应的蛔虫和哺乳动物细胞器相似。电子传递偶联的延胡索酸还原酶和NADPH----NAD转氢酶是内膜的组成成分,而“苹果酸”酶和延胡索酸酶存在于基质可溶性部分。对推测完整和破碎的线粒体进行的NADH利用、苹果酸依赖的NADP还原和NADPH----NAD转氢作用的评估支持了定位数据。所呈现的研究结果表明,在微小膜壳绦虫线粒体中:(a)NADPH和延胡索酸在基质部分积累;(b)NADPH和NAD之间的转氢作用是与内膜基质侧相关的事件;(c)电子传递依赖的NADH氧化和延胡索酸还原发生在内膜基质侧的位点。