Jung D W, Panzeter E, Baysal K, Brierley G P
Department of Medical Biochemistry, Ohio State University, Columbus 43210-1218, USA.
Biochim Biophys Acta. 1997 Jul 4;1320(3):310-20. doi: 10.1016/s0005-2728(97)00036-4.
The matrix free magnesium ion concentration, [Mg2+]m, estimated using the fluorescent probe furaptra, averaged 0.67 mM in 15 preparations of beef heart mitochondria containing an average of 21 nmol total Mg2+ per mg protein. [Mg2+]m was compared with total Mg2+ during respiration-dependent uptake and efflux of Mg2+ and during osmotic swelling. In the absence of external Pi these mitochondria contain about 32 nmol/mg non-diffusible Mg-binding sites with an apparent Kd of 0.34 mM. [Mg2+]m depends on both the size of the total Mg2+ pool and the ability of matrix anions to provide Mg-ligands. Pi interacts strongly with Mg2+ to decrease [Mg2+]m and, in the absence of external Mg2+, promotes respiration-dependent Mg2+ efflux and a decrease in [Mg2+]m to very low levels. The uptake of Pi by respiring mitochondria converts delta pH to membrane potential (delta psi) and provides additional Mg-binding sites. This permits large accumulations of Mg2+ and Pi with little change in [Mg2+]m. Nigericin also converts delta pH to delta psi in respiring mitochondria and induces a large and rapid increase in both total Mg2+ and [Mg2+]m. Mersalyl increases the permeability of the mitochondrial membrane to cations and this also induces a marked increase in both total Mg2+ and [Mg2+]m. These results suggest that mitochondria take up Mg2+ by electrophoretic flux through membrane leak pathways, rather than via a specific Mg2+ transporter. Mitochondria swollen by respiration dependent uptake of potassium phosphate show decreased [Mg2+]m, whereas those swollen to the same extent in potassium acetate do not. This suggests that [Mg2+]m is well-buffered during osmotic volume changes unless there is also a change in ligand availability.
使用荧光探针呋喃甲酰三氟丙酮估算的无基质镁离子浓度[Mg2+]m,在15份牛心线粒体制剂中平均为0.67 mM,每毫克蛋白质中总镁离子平均含量为21 nmol。在镁离子的呼吸依赖性摄取和流出过程以及渗透肿胀过程中,将[Mg2+]m与总镁离子进行了比较。在没有外部无机磷酸盐(Pi)的情况下,这些线粒体含有约32 nmol/mg的非扩散性镁结合位点,其表观解离常数(Kd)为0.34 mM。[Mg2+]m既取决于总镁离子池的大小,也取决于基质阴离子提供镁配体的能力。Pi与镁离子强烈相互作用以降低[Mg2+]m,并且在没有外部镁离子的情况下,促进呼吸依赖性镁离子流出以及[Mg2+]m降低至极低水平。呼吸的线粒体对Pi的摄取将ΔpH转化为膜电位(Δψ)并提供额外的镁结合位点。这允许大量积累镁离子和Pi,而[Mg2+]m变化很小。尼日利亚菌素在呼吸的线粒体中也将ΔpH转化为Δψ,并导致总镁离子和[Mg2+]m大幅快速增加。汞撒利增加线粒体膜对阳离子的通透性,这也导致总镁离子和[Mg2+]m显著增加。这些结果表明,线粒体通过膜泄漏途径的电泳通量摄取镁离子,而不是通过特定的镁离子转运体。通过呼吸依赖性摄取磷酸钾而肿胀的线粒体显示[Mg2+]m降低,而在醋酸钾中肿胀至相同程度的线粒体则没有。这表明在渗透体积变化期间[Mg2+]m受到良好缓冲,除非配体可用性也发生变化。