Nyitrai Miklós, Szent-Györgyi Andrew G, Geeves Michael A
Department of Biosciences, University of Kent at Canterbury, Canterbury, Kent, CT2 7NJ, UK.
Biochem J. 2002 Jul 1;365(Pt 1):19-30. doi: 10.1042/BJ20020099.
Analysis of the kinetics of ATP and ADP binding to scallop (Argopecten irradians) heavy meromyosin (HMM) showed that the only calcium-dependent process is the rate of ADP release. At physiological ionic strength calcium accelerated ADP release about 20-fold. Notably in the absence of calcium only one ADP bound HMM, with an affinity of 0.5-1 microM. The second nucleotide site remained unoccupied at up to 50 microM ADP yet could bind ATP rapidly. The calcium dependence of ADP-release rates showed that calcium binds co-operatively to scallop HMM with an affinity of 0.78 microM and a Hill coefficient of 1.9. Detailed interpretation of the data suggests that HMM exists in equilibrium between the on and off states and that calcium and ADP modulate the equilibrium between the two states. The on state is favoured in the presence of calcium and in the absence of both calcium and nucleotide. The off state is favoured by ADP (or ADP * P(i)) in the absence of calcium. A detailed co-operative model of the interaction of ADP and calcium with HMM is presented.
对ATP和ADP与扇贝(海湾扇贝)重酶解肌球蛋白(HMM)结合动力学的分析表明,唯一依赖钙的过程是ADP的释放速率。在生理离子强度下,钙使ADP的释放加速约20倍。值得注意的是,在没有钙的情况下,只有一个ADP结合到HMM上,亲和力为0.5 - 1微摩尔。在高达50微摩尔的ADP浓度下,第二个核苷酸位点仍未被占据,但能快速结合ATP。ADP释放速率对钙的依赖性表明,钙以协同方式与扇贝HMM结合,亲和力为0.78微摩尔,希尔系数为1.9。对数据的详细解释表明,HMM在开启和关闭状态之间存在平衡,并且钙和ADP调节这两种状态之间的平衡。在有钙存在以及没有钙和核苷酸的情况下,开启状态占优势。在没有钙的情况下,ADP(或ADP * Pi)有利于关闭状态。本文提出了ADP和钙与HMM相互作用的详细协同模型。