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The characterization of myosin–product complexes and of product-release steps during the magnesium ion-dependent adenosine triphosphatase reaction

机译:镁离子依赖性腺苷三磷酸酶反应过程中肌球蛋白-产物复合物和产物释放步骤的表征

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摘要

Evidence is presented that the myosin subfragment-1–ADP complex, generated by the addition of Mg2+ and ADP to subfragment 1, is an intermediate within the myosin Mg2+-dependent adenosine triphosphatase (ATPase) turnover cycle. The existence of this species as a steady-state intermediate at pH8 and 5°C is demonstrated by fluorescence measurements, but its concentration becomes too low to measure at 21°C. This arises because there is a marked temperature-dependence on the rate of the process controlling ADP dissociation from subfragment 1 (rate=1.4s−1 at 21°C, 0.07s−1 at 5°C). In the ATPase pathway this reaction is in series with a relatively temperature-insensitive process, namely an isomerization of the subfragment-1–product complex (rate=0.055s−1 at 21°C, 0.036s−1 at 5°C). By means of studies on the Pi inhibition of nucleotide-association rates, a myosin subfragment-1–Pi complex was characterized with a dissociation equilibrium constant of 1.5mm. Pi appears to bind more weakly to the myosin subfragment-1–ADP complex. The studies indicate that Pi dissociates from subfragment 1 at a rate greater than 40s−1, and substantiates the existence of a myosin-product isomerization before product release in the elementary processes of the Mg2+-dependent ATPase. In this ATPase mechanism Mg2+ associates as a complex with ATP and is released as a complex with ADP. In 0.1m-KCl at pH8 1.0mol of H+ is released/mol of subfragment 1 concomitant with the myosin-product isomerization or Pi dissociation, and 0.23 mol of H+ is released/mol of subfragment when ATP binds to the protein, but 0.23 mol of H+ is taken up again from the medium when ADP dissociates. Within experimental sensitivity no H+ is released into the medium in the step involving ATP cleavage.
机译:有证据表明,通过在亚片段1中添加Mg 2 + 和ADP生成的肌球蛋白亚片段-1–ADP复合物是肌球蛋白Mg 2 + 的中间体依赖性腺苷三磷酸酶(ATPase)的转换周期。通过荧光测量证明了该物种在pH8和5°C下作为稳态中间体存在,但其浓度太低而无法在21°C下测量。出现这种情况的原因在于,温度对控制ADP从亚片段1解离的过程的速率有明显的依赖性(在21°C时速率为1.4s -1 ,0.07s -1 在5°C下)。在ATPase途径中,该反应与温度相对不敏感的过程有关,即亚片段1-产物复合物的异构化(在21°C时速率为0.055s -1 ,0.036s < sup> -1 在5°C下)。通过对Pi抑制核苷酸缔合速率的研究,确定了肌球蛋白亚片段1-Pi复合物的解离平衡常数为1.5mm。 Pi似乎与肌球蛋白亚片段1-ADP复合物的结合较弱。研究表明,Pi以大于40s -1 的速率从亚片段1解离,并证实了Mg 2+的基本过程中产物释放前肌球蛋白产物异构化的存在。 依赖的ATPase。在这种ATPase机制中,Mg 2 + 与ATP形成复合物,并与ADP形成复合物释放。在pH8的0.1m-KCl中,释放出1.0 mol H + / mol伴随着肌球蛋白产物异构化或Pi解离的亚片段1,以及0.23 mol H + 当ATP结合到蛋白质上时,H2 +被释放/亚片段的摩尔,但是当ADP解离时,从培养基中又吸收了0.23摩尔的H + 。在实验敏感性范围内,在涉及ATP裂解的步骤中,没有H + 释放到培养基中。

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