Jeneson J A, Wiseman R W, Kushmerick M J
Department of Radiology, University of Washington Medical Center, Seattle 98195, USA.
Mol Cell Biochem. 1997 Sep;174(1-2):17-22.
A method for non-invasive, quantitative 31P NMR spectroscopic investigation of mitochondrial function in human skeletal muscle in situ is described. High time resolution 31P NMR measurements of phosphocreatine, inorganic phosphate and ATP resonances were conducted on human forearm flexor muscle during involuntary twitch contraction at eight different frequencies. Mitochondrial and glyco(geno)lytic ATP synthesis fluxes, and the cytosolic free energy of ATP hydrolysis (delta GP), were calculated at incremental steady-states of energy balance. The covariation of mitochondrial ATP synthesis flux, JPMOP, and delta GP was quasi-linear over the physiological range of free energy values. Curve-fit analysis of the covariation yielded a maximal sustainable JPMOP of 0.24 +/- 0.06 mmol ATP l-1.s-1 and a midpoint potential, (delta GP)0.5, of 58.1 +/- 1.2 kJ/mole in the muscle cells.
本文描述了一种用于原位非侵入性定量研究人体骨骼肌线粒体功能的31P核磁共振波谱法。在人体前臂屈肌非自主抽搐收缩过程中,以八个不同频率对磷酸肌酸、无机磷酸盐和ATP共振进行了高时间分辨率的31P NMR测量。在能量平衡的增量稳态下,计算了线粒体和糖(原)酵解ATP合成通量以及ATP水解的胞质自由能(δGP)。在自由能值的生理范围内,线粒体ATP合成通量JPMOP与δGP的协变呈准线性。协变的曲线拟合分析得出,肌肉细胞中最大可持续JPMOP为0.24±0.06 mmol ATP l-1·s-1,中点电位(δGP)0.5为58.1±1.2 kJ/摩尔。