CARLSON F D, SIGER A
J Gen Physiol. 1959 Nov;43(2):301-13. doi: 10.1085/jgp.43.2.301.
The iodoacetate-nitrogen-poisoned muscle offers the possibility of studying the stoichiometry of the single muscle twitch since metabolic resynthesis by glycolysis and oxidative phosphorylation are blocked, and there remains as an energy source only the creatine phosphoryltransfer system, creatine phosphate reacting with adenosinediphosphate to give the triphosphate and creatine. It is shown, preparatory to a determination of the amount of phosphocreatine split in a single twitch, that iodoacetate does not inhibit creatine phosphoryltransferase at concentrations which block glycolysis. An analysis is developed which assumes that the transferase maintains the creatine phosphoryl transfer reaction in equilibrium following contraction, and further that the creatine phosporyltransfer reaction and the myokinase reaction are isolated in muscle. On the basis of this analysis and the data obtained, an estimate of the equilibrium constant of the creatine phosphoryl reaction in muscle is obtained which agrees with values determined in vitro. Using the estimated equilibrium constant, and the concentrations of creatine, creatine phosphate, and adenosinetriphosphate found, a value for the concentration of free adenosinediphosphate is obtained which is considerably less than that found by direct chemical analysis.
碘乙酸 - 氮中毒的肌肉为研究单个肌肉抽搐的化学计量学提供了可能性,因为糖酵解和氧化磷酸化的代谢再合成被阻断,仅剩下肌酸磷酸转移系统作为能量来源,磷酸肌酸与二磷酸腺苷反应生成三磷酸腺苷和肌酸。在准备测定单个抽搐中磷酸肌酸的分解量时发现,在阻断糖酵解的浓度下,碘乙酸并不抑制肌酸磷酸转移酶。由此展开了一项分析,该分析假定转移酶在收缩后能使肌酸磷酸转移反应保持平衡,并且进一步假定肌酸磷酸转移反应和肌酸激酶反应在肌肉中是相互独立的。基于此分析以及所获得的数据,得出了肌肉中肌酸磷酸反应平衡常数的估计值,该值与体外测定的值相符。利用估计的平衡常数以及所测得的肌酸、磷酸肌酸和三磷酸腺苷的浓度,得出了游离二磷酸腺苷浓度的值,该值远低于直接化学分析所得到的值。