Boska M
Department of Biochemistry, Wright State University, Kettering, Ohio.
Magn Reson Med. 1994 Jul;32(1):1-10. doi: 10.1002/mrm.1910320102.
Net forward adenosine triphosphate (ATP) production rates were calculated from 31P nuclear magnetic resonance spectroscopy (MRS) kinetic data collected with 1-8 s time resolution during isometric voluntary contractions of the human gastrocnemius/soleus muscle group. Volume normalized muscle output (Newtons/ml) was then divided by the calculated net ATP use (mM/s) to estimate the metabolic economy (ME) (Newtons.s/mumol ATP). The ATP production rates from anaerobic glycolysis (An Gly) and creatine kinase (CK) reactions are approximately half of the oxidative phosphorylation ATP production rates (Ox Phos) at the end of 90 s of isometric contractions for a series of force levels. However, ME was independent of the force level in these exercises. The correlation between MVC of healthy, trained subjects, and the maximal cross-sectional area of the gastrocnemius/soleus shows an average of 21.2 +/- 4.6 Newtons/cm2 (mean +/- SD, N = 15). This was measured using a foot pedal with a transducer measurement point 10.6 cm above the heel. [ADP] versus Ox Phos ATP production rate fits a Michaelis-Menten kinetic control equation with an offset (underestimation of Ox Phos) of 0.3 mM/s and a Km = 27 microM for ADP and a Vmax = 1.0 mM/s. This suggests that [ADP] is the controlling factor for mitochondrial function at the end of a 90 to 120 s isometric contraction in normal subjects at any force level. Quantitative measurements of the phosphorus metabolite concentrations were obtained from 20 individuals and these data are also reported.
通过在人体腓肠肌/比目鱼肌群等长自主收缩期间以1 - 8秒的时间分辨率收集的31P核磁共振波谱(MRS)动力学数据,计算净向前三磷酸腺苷(ATP)产生率。然后将体积标准化的肌肉输出(牛顿/毫升)除以计算出的净ATP使用量(毫摩尔/秒),以估算代谢经济性(ME)(牛顿·秒/微摩尔ATP)。对于一系列力水平,在等长收缩90秒结束时,无氧糖酵解(An Gly)和肌酸激酶(CK)反应产生的ATP速率约为氧化磷酸化ATP产生速率(Ox Phos)的一半。然而,在这些运动中,ME与力水平无关。健康、受过训练的受试者的最大自主收缩力量(MVC)与腓肠肌/比目鱼肌的最大横截面积之间的相关性显示平均为21.2 +/- 4.6牛顿/平方厘米(平均值 +/- 标准差,N = 15)。这是使用位于足跟上方10.6厘米处带有换能器测量点的脚踏板进行测量的。[ADP]与氧化磷酸化ATP产生速率符合米氏动力学控制方程,偏移量(氧化磷酸化的低估)为0.3毫摩尔/秒,ADP的米氏常数(Km) = 27微摩尔,最大反应速率(Vmax) = 1.0毫摩尔/秒。这表明在任何力水平下,正常受试者在90至120秒等长收缩结束时,[ADP]是线粒体功能的控制因素。从20名个体获得了磷代谢物浓度的定量测量值,并且这些数据也已报告。