Taylor R S, Weeds A G
Biochem J. 1976 Nov;159(2):301-15. doi: 10.1042/bj1590301.
The kinetics of the Mg2+-dependent ATPase (adenosine triphosphatase) activity of bovine cardiac myosin and its papain subfragment-1 were studied by using steady-state and pre-steady-state techniques, and results were compared with published values for the corresponding processes in the ATPase mechanism of rabbit skeletal-muscle myosin subfragment-1. The catalytic-centreactivity for cardiac subfragment-1 is 0.019s-1, which is less than one-third of that determined for the rabbit protein. The ATP-induced isomerization process, measured from enhancement of protein fluorescence on substrate binding, is similarly decreased in rate, as is also the isomerization process associated with ADP release. However, the equilibrium constant for ATP cleavage, measured by quenched-flow by using [gamma-32P]ATP, shows little difference in the two species. Other experiments were carried out to investigate the rate of association of actin with subfragment-1 by light-scattering changes and also the rate of dissociation of the complex by ATP. The dissociation rate increases with increasing substrate concentration, to a maximum at high ATP concentrations, with a rate constant of about 2000s-1. It appears that isomerization processes which may involve conformational changes have substantially lower rate constants for the cardiac proteins, whereas equilibrium constants for substrate binding and cleavage are not significantly different. These differences may be related to the functional properties of these myosins in their different muscle types. Kinetic heterogeneity has been detected in both steady-state and transient processes, and this is discussed in relation to the apparent chemical homogeneity of cardiac myosin.
运用稳态和预稳态技术研究了牛心肌肌球蛋白及其木瓜蛋白酶亚片段-1的Mg2+依赖性ATP酶(腺苷三磷酸酶)活性动力学,并将结果与已发表的兔骨骼肌肌球蛋白亚片段-1的ATP酶机制中相应过程的值进行了比较。心肌亚片段-1的催化中心反应性为0.019s-1,不到兔蛋白所测定值的三分之一。从底物结合时蛋白质荧光增强测得的ATP诱导异构化过程,其速率同样降低,与ADP释放相关的异构化过程也是如此。然而,通过使用[γ-32P]ATP的猝灭流动法测定的ATP裂解平衡常数,在这两种物种中几乎没有差异。还进行了其他实验,通过光散射变化研究肌动蛋白与亚片段-1的结合速率,以及ATP对复合物的解离速率。解离速率随底物浓度增加而增加,在高ATP浓度下达到最大值,速率常数约为2000s-1。看来,可能涉及构象变化的异构化过程,心肌蛋白的速率常数要低得多,而底物结合和解离的平衡常数没有显著差异。这些差异可能与这些肌球蛋白在不同肌肉类型中的功能特性有关。在稳态和瞬态过程中均检测到动力学异质性,并结合心肌肌球蛋白明显的化学同质性进行了讨论。