Nalyvaĭko N V, Vovkanych L S, Dubyts'kyĭ L O
Ukr Biokhim Zh (1999). 2006 Sep-Oct;78(5):44-50.
Kinetic analysis reveals the mainly competitive inhibition of Na+-dependent Ca2+ efflux from mitochondria by cations of monovalent metals. Potency of the inhibitory effect of metals' cations on Na+-dependent Ca2+ efflux from mitochondria matrix increases in such an order (I50, mM): Cs+ (137.11) < Rb+ (122.63) < Li+ (24.59) < Tl+ (0.541). The results of correlation analysis show that sodium ions translocation by mitochondrial exchanger and its inhibition by the cations of monovalent metals is determined by their affinity for the oxygen-containing ligands and are accompanied with the ions dehydration. Inhibition of the mitochondrial Na+/Ca2+ exchanger by monovalent metal cations is also accompanied with the inhibition of cooperative interactions of metal ions with the ionbinding centers during transport cycle, which can be one of the mechanisms of the inhibition of ions translocation by this ion-transporting system.
动力学分析表明,单价金属阳离子对线粒体中钠依赖性钙外流主要起竞争性抑制作用。金属阳离子对线粒体基质中钠依赖性钙外流的抑制作用强度按以下顺序增加(半数抑制浓度,mM):Cs +(137.11)<Rb +(122.63)<Li +(24.59)<Tl +(0.541)。相关分析结果表明,线粒体交换体对钠离子的转运及其被单价金属阳离子抑制,取决于它们对含氧化合物配体的亲和力,并伴随着离子脱水。单价金属阳离子对线粒体钠/钙交换体的抑制还伴随着在转运循环中金属离子与离子结合中心协同相互作用的抑制,这可能是该离子转运系统抑制离子转运的机制之一。