Vitorica J, Satrústegui J
Biochem J. 1985 Jan 1;225(1):41-9. doi: 10.1042/bj2250041.
The role of ADP in the regulation of Ca2+ efflux in rat brain mitochondria was investigated. ADP was shown to inhibit Ruthenium-Red-insensitive H+- and Na+-dependent Ca2+-efflux rates if Pi was present, but had no effect in the absence of Pi. The primary effect of ADP is an inhibition of Pi efflux, and therefore it allows the formation of a matrix Ca2+-Pi complex at concentrations above 0.2 mM-Pi and 25 nmol of Ca2+/mg of protein, which maintains a constant free matrix Ca2+ concentration. ADP inhibition of Pi and Ca2+ efflux is nucleotide-specific, since in the presence of oligomycin and an inhibitor of adenylate kinase ATP does not substitute for ADP, is dependent on the amount of ADP present, and requires ADP concentrations in excess of the concentrations of translocase binding sites. Brain mitochondria incubated with 0.2 mM-Pi and ADP showed Ca2+-efflux rates dependent on Ca2+ loads at Ca2+ concentrations below those required for the formation of a Pi-Ca2+ complex, and behaved as perfect cytosolic buffers exclusively at high Ca2+ loads. The possible role of brain mitochondrial Ca2+ in the regulation of the tricarboxylic acid-cycle enzymes and in buffering cytosolic Ca2+ is discussed.
研究了二磷酸腺苷(ADP)在调节大鼠脑线粒体中钙离子外流方面的作用。结果表明,如果存在无机磷酸(Pi),ADP会抑制对钌红不敏感的氢离子和钠离子依赖性钙离子外流速率,但在不存在Pi时则无作用。ADP的主要作用是抑制Pi外流,因此它能在Pi浓度高于0.2 mM以及钙离子浓度达到25 nmol/mg蛋白质以上时,促使基质钙离子 - Pi复合物的形成,从而维持基质游离钙离子浓度恒定。ADP对Pi和钙离子外流的抑制具有核苷酸特异性,因为在存在寡霉素和腺苷酸激酶抑制剂的情况下,三磷酸腺苷(ATP)不能替代ADP,这种抑制作用取决于ADP的存在量,且所需的ADP浓度超过了转位酶结合位点的浓度。用0.2 mM - Pi和ADP孵育的脑线粒体,在钙离子浓度低于形成Pi - 钙离子复合物所需浓度时,其钙离子外流速率取决于钙离子负荷,并且仅在高钙离子负荷时表现为完美的胞质缓冲剂。文中还讨论了脑线粒体钙离子在调节三羧酸循环酶以及缓冲胞质钙离子方面可能发挥的作用。