Novgorodov S A, Yaguzhinsky L A
FEBS Lett. 1985 Apr 8;183(1):47-51. doi: 10.1016/0014-5793(85)80951-0.
A decrease in the incubation medium osmolarity from 320 to 120 mosM reverses the pH dependence of K+ efflux from rat liver mitochondria. The K+ efflux is no longer inhibited by oligomycin and a free radical scavenger butylhydroxytoluene. At 320 mosM, the addition of carbonyl cyanide 3-chlorophenylhydrazone (CCCP) accelerates the K+ efflux, while EGTA inhibits it. At 120 mosM these CCCP and EGTA effects are reversed. In either case the K+ efflux is inhibited by Mg2+. The decrease in osmolarity changes the ruthenium red-insensitive Ca2+ efflux in the same manner. It has thus been shown that the modification of the mitochondrial structure by changing the incubation medium osmolarity results in a qualitative alteration of the systems regulating the K+ and Ca2+ effluxes.
将孵育介质的渗透压从320 mosM降至120 mosM可逆转大鼠肝线粒体钾离子外流的pH依赖性。钾离子外流不再受寡霉素和自由基清除剂丁基羟基甲苯的抑制。在320 mosM时,添加羰基氰3-氯苯腙(CCCP)可加速钾离子外流,而乙二醇双四乙酸(EGTA)则抑制钾离子外流。在120 mosM时,CCCP和EGTA的这些作用则相反。在任何一种情况下,钾离子外流均受镁离子抑制。渗透压的降低以相同方式改变了钌红不敏感的钙离子外流。因此已经表明,通过改变孵育介质渗透压来改变线粒体结构会导致调节钾离子和钙离子外流的系统发生质的改变。