首页> 美国卫生研究院文献>Biochemical Journal >Elementary processes of the magnesium ion-dependent adenosine triphosphatase activity of heavy meromysin. A transient kinetic approach to the study of kinases and adenosine triphosphatases and a colorimetric inorganic phosphate assay in situ
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Elementary processes of the magnesium ion-dependent adenosine triphosphatase activity of heavy meromysin. A transient kinetic approach to the study of kinases and adenosine triphosphatases and a colorimetric inorganic phosphate assay in situ

机译:重肌红素的镁离子依赖性腺苷三磷酸酶活性的基本过程。瞬时动力学方法研究激酶和腺苷三磷酸酶和比色无机磷酸盐原位测定

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摘要

Transient kinetic studies of Mg2+-dependent heavy-meromyosin ATPase (adenosine triphosphatase) were done by monitoring the release of both ADP and Pi into the reaction medium by using linked assay systems. The release of Pi was monitored by its quantitative transfer to ADP, with concomitant reduction of NAD+ in the presence of d-glyceraldehyde 3-phosphate, d-glyceraldehyde 3-phosphate dehydrogenase and phosphoglycerate kinase. The dissociation rates of the products, ADP and Pi, from heavy meromyosin were shown to be faster than the rate-controlling process, which occurs after the initial bond cleavage of ATP. The chromophoric ATP analogue, 6-mercapto-9-β-d-ribofuranosylpurine 5′-triphosphate (thioATP) was used as a substrate and spectral changes associated with a single turnover of heavy meromyosin could be assigned to elementary processes of the mechanism. It was shown that the dissociation rate of thioADP was not the rate-controlling process of the thioATPase, whose catalytic-centre activity was 7.6 times that of the ATPase at pH8. The dissociation rate of ADP from heavy meromyosin was measured by using thioATP as displacing agent and was found to be 2.3s−1, which is about 50 times the catalytic-centre activity of the ATPase at pH8. Transient kinetic studies with chromophoric adenosine phosphate analogues have general application for kinases and ATPases both in characterizing the chemical states of the intermediates and in delineating the elementary processes of the enzyme mechanism.
机译:Mg 2 + 依赖性重肌球蛋白ATP酶(腺苷三磷酸酶)的瞬态动力学研究是通过使用链接的测定系统监测ADP和Pi向反应介质中的释放来进行的。通过将其定量转移至ADP来监测Pi的释放,同时在3-磷酸d-甘油醛,3-磷酸d-甘油醛脱氢酶和磷酸甘油酸激酶的存在下,同时降低NAD + 。产物ADP和Pi从重的肌球蛋白的解离速率显示出比速率控制过程更快,该速率控制过程在ATP的初始键裂解之后发生。发色ATP类似物6-巯基9-β-d-呋喃核糖基嘌呤5'-三磷酸酯(thioATP)被用作底物,与单次重质肌球蛋白周转相关的光谱变化可归因于该机制的基本过程。结果表明,硫代ADP的解离速率不是硫代ATPase的速率控制过程,其催化中心活性是pH8时ATPase的7.6倍。用硫代ATP作为置换剂测定了ADP从重的肌球蛋白的解离速率,发现其为2.3s ,约为ATP酶在pH8下的催化中心活性的50倍。用发色性磷酸腺苷类似物进行的瞬态动力学研究在表征中间体的化学状态和描绘酶机理的基本过程中,都普遍应用于激酶和ATP酶。

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