Takeuchi K
J Biochem. 1980 Dec;88(6):1693-702. doi: 10.1093/oxfordjournals.jbchem.a133144.
Myosin was prepared from arterial smooth muscle, and a hybrid actomyosin was formed from arterial myosin and rabbit skeletal muscle F-actin. We performed kinetics on the ATPase reaction [EC 3.6.1.3] of arterial myosin and the hybrid actomyosin at high ionic strength, and compared the kinetic properties of arterial myosin ATPase with those of skeletal muscle myosin ATPase. No significant difference was found between these two myosins in the size of the initial Pi burst, the amount of bound nucleotides, and the rates of various elementary steps in the ATPase reaction. On the other hand, two important differences were observed between the hybrid actomyosin and skeletal muscle actomyosin: (i) The amounts of ATP necessary for complete dissociation of the hybrid and skeletal muscle actomyosins were 2 and 1 mol/mol of myosin, respectively. (ii) The rate of dissociation of the hybrid actomyosin induced by ATP was much lower than that of skeletal muscle actomyosin and also was lower than that of fluorescence enhancement.
肌球蛋白从动脉平滑肌中制备,并且由动脉肌球蛋白和兔骨骼肌F - 肌动蛋白形成杂种肌动球蛋白。我们在高离子强度下对动脉肌球蛋白和杂种肌动球蛋白的ATP酶反应[EC 3.6.1.3]进行了动力学研究,并将动脉肌球蛋白ATP酶的动力学性质与骨骼肌肌球蛋白ATP酶的动力学性质进行了比较。在这两种肌球蛋白之间,在初始无机磷酸(Pi)爆发的大小、结合核苷酸的量以及ATP酶反应中各种基本步骤的速率方面未发现显著差异。另一方面,在杂种肌动球蛋白和骨骼肌肌动球蛋白之间观察到两个重要差异:(i)杂种和骨骼肌肌动球蛋白完全解离所需的ATP量分别为每摩尔肌球蛋白2摩尔和1摩尔。(ii)ATP诱导的杂种肌动球蛋白的解离速率远低于骨骼肌肌动球蛋白的解离速率,并且也低于荧光增强的速率。