Masini A, Ceccarelli-Stanzani D, Muscatello U
Institute of Biological Chemistry, University of Modena, 41100 Modena, Italy.
J Bioenerg Biomembr. 1983 Aug;15(4):217-34. doi: 10.1007/BF00743942.
A possible relationship between mitochondrial Mg2+ levels, structural configurations, and functional steady states has been studied in rat liver mitochondria. The results show that the concentration of mitochondrial Mg2+ in respiratory state 4 is definitely higher than in respiratory state 3. The metabolic transition from state 3 to state 4 and vice-versa is associated with reversible influx-efflux of about 10 nmol of Mg2+ per mg protein. The net uptake of this aliquot of Mg2+ is a necessary condition in order for the metabolic transition to state 4, both structurally and functionally, to occur. This process requires a threshold concentration of external Mg2+ greater than 5 mM. The phosphorylative mechanism does not appear to depend on the presence or absence of external Mg2+. The role of Mg2+ on the attainment and maintenance of the structural and functional steady state 4 seems to be correlated with its regulatory effect on the concentration of the mitochondrial P(i).
在大鼠肝脏线粒体中,对线粒体镁离子(Mg2+)水平、结构构型和功能稳态之间的可能关系进行了研究。结果表明,呼吸状态4下线粒体Mg2+的浓度肯定高于呼吸状态3。从状态3到状态4以及反之的代谢转变与每毫克蛋白质约10纳摩尔Mg2+的可逆流入-流出相关。这部分Mg2+的净摄取是代谢转变至状态4在结构和功能上发生的必要条件。此过程需要大于5毫摩尔的外部Mg2+阈值浓度。磷酸化机制似乎不依赖于外部Mg2+的存在与否。Mg2+对结构和功能稳态4的实现和维持的作用似乎与其对线粒体无机磷酸(P(i))浓度的调节作用相关。