Midgley P J, Rutter G A, Thomas A P, Denton R M
Biochem J. 1987 Jan 15;241(2):371-7. doi: 10.1042/bj2410371.
Mitochondria from rat epididymal white adipose tissue were made permeable to small molecules by toluene treatment and were used to investigate the effects of Mg2+ and Ca2+ on the re-activation of pyruvate dehydrogenase phosphate by endogenous phosphatase. Re-activation of fully phosphorylated enzyme after addition of 0.18 mM-Mg2+ showed a marked lag of 5-10 min before a maximum rate of reactivation was achieved. Increasing the Mg2+ concentration to 1.8 mM (near saturating) or the addition of 100 microM-Ca2+ resulted in loss of the lag phase, which was also greatly diminished if pyruvate dehydrogenase was not fully phosphorylated. It is concluded that, within intact mitochondria, phosphatase activity is highly sensitive to the degree of phosphorylation of pyruvate dehydrogenase and that the major effect of Ca2+ may be to overcome the inhibitory effects of sites 2 and 3 on the dephosphorylation of site 1. Apparent K0.5 values for Mg2+ and Ca2+ were determined from the increases in pyruvate dehydrogenase activity observed after 5 min. The K0.5 for Mg2+ was diminished from 0.60 mM at less than 1 nM-Ca2+ to 0.32 mM at 100 microM-Ca2+; at 0.18 mM-Mg2+, the K0.5 for Ca2+ was 0.40 microM. Ca2+ had little or no effect at saturating Mg2+ concentrations. Since effects of Ca2+ are readily observed in intact coupled mitochondria, it follows that Mg2+ concentrations within mitochondria are sub-saturating for pyruvate dehydrogenase phosphate phosphatase and hence less than 0.5 mM.
通过甲苯处理使大鼠附睾白色脂肪组织的线粒体对小分子具有通透性,并用其研究镁离子(Mg2+)和钙离子(Ca2+)对内源性磷酸酶使磷酸化丙酮酸脱氢酶重新激活的影响。添加0.18 mM的Mg2+后,完全磷酸化的酶重新激活在达到最大重新激活速率之前显示出明显的5 - 10分钟的延迟。将Mg2+浓度增加到1.8 mM(接近饱和)或添加100 μM的Ca2+会导致延迟期消失,如果丙酮酸脱氢酶没有完全磷酸化,延迟期也会大大缩短。得出的结论是,在完整的线粒体内,磷酸酶活性对丙酮酸脱氢酶的磷酸化程度高度敏感,并且Ca2+的主要作用可能是克服位点2和位点3对位点1去磷酸化的抑制作用。从5分钟后观察到的丙酮酸脱氢酶活性增加来确定Mg2+和Ca2+的表观K0.5值。Mg2+的K0.5从低于1 nM Ca2+时的0.60 mM降至100 μM Ca2+时的0.32 mM;在0.18 mM Mg2+时,Ca2+的K0.5为0.40 μM。在饱和Mg2+浓度下,Ca2+几乎没有影响。由于在完整的偶联线粒体中很容易观察到Ca2+的作用,因此可以推断线粒体内的Mg2+浓度对于磷酸化丙酮酸脱氢酶磷酸酶来说是不饱和的,因此低于0.5 mM。