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Influence of inorganic phosphate and pH on ATP utilization in fast and slow skeletal muscle fibers.

机译:无机磷酸盐和pH值对快慢骨骼肌纤维中ATP利用率的影响。

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摘要

The influence of P(i) and pH was studied on myofibrillar ATP turnover and force development during maximally activated isometric contractions, in skinned single fibers from rabbit soleus and psoas muscle. ATP hydrolysis was coupled to the breakdown of NADH, which was monitored photometrically at 340 nm. In psoas the depression by phosphate of force is twice that of ATP turnover, but in soleus force and ATP turnover are depressed equally by P(i). Most, but not all, of the ATPase and force values observed for a combination of high P(i) and low pH could be explained by independent effects of P(i) and pH. The effects of P(i) and pH on ATP turnover can be understood by a three-state cross-bridge scheme. Mass action of phosphate on the reaction from the actomyosin(AM).ADP state to the AM.ADP.P(i) state may largely account for the phosphate dependencies of ATPase activity found. Protons affect cross-bridge detachment from the AM.ADP state and the rate of the AM.ADP.P(i)-to-AM.ADP transition. In this scheme, the effects of P(i) and pH on cross-bridge kinetics appeared to be largely independent.
机译:研究了P(i)和pH对兔比目鱼肌和腰大肌皮肤单纤维最大活化等距收缩过程中肌原纤维ATP转换和力量发展的影响。 ATP水解与NADH的分解有关,NADH的分解在340 nm处进行光度监测。在腰大肌中,受力磷酸盐的压抑是ATP转换的两倍,但是在比目鱼肌中,ATP的翻转被P(i)均等地抑制。对于高P(i)和低pH的组合,观察到的大多数(但不是全部)ATPase和作用力值可以通过P(i)和pH的独立作用来解释。 P(i)和pH对ATP转换的影响可以通过三态跨桥方案来理解。磷酸盐对肌动球蛋白(AM).ADP状态到AM.ADP.P(i)状态反应的质量作用可能很大程度上解释了所发现的ATPase活性的磷酸盐依赖性。质子影响从AM.ADP状态到AM.ADP.P(i)到AM.ADP过渡速率的跨桥分离。在此方案中,P(i)和pH对跨桥动力学的影响似乎在很大程度上是独立的。

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