Davis J S
Biochemistry. 1985 Sep 10;24(19):5263-9. doi: 10.1021/bi00340a046.
Earlier work on the length regulation mechanism of synthetic myosin filaments generated at pH 8.2 showed the process to be mediated through the dissociation rate constant which had an increasing and apparently monophasic exponential dependence on filament length and an association rate constant that was length independent, filament growth ceasing at the point of equilibrium [Davis, J.S. (1981) Biochem. J. 197, 309-314]. In this work, the exponential dependence of the dissociation rate constant on thick filament length was shown to be more complex than originally thought. Two phases were resolved, one of which correlated with the dissociation of parallel-packed myosin and the other with that of antiparallel-packed material. The pressure dependence of the dissociation reaction for the parallel-packed material showed that the activation volume decreased linearly with length while the Gibbs energy increased. This was interpreted as indicating that the weakening of the interaction between dimer and filament with length was accompanied by a decrease in the extent of ionic bonding. The case in the antiparallel-packed region was quite different, with the activation volume and the Gibbs energy both increasing linearly. The contribution from ionic bonding thus rises counter to the change in Gibbs energy, presumably at the expense of other noncovalent interactions. The relationship between the synthetic thick filaments and their in vivo counterparts is also considered in some detail.
早期关于在pH 8.2条件下合成肌球蛋白丝长度调节机制的研究表明,该过程是通过解离速率常数介导的,解离速率常数对丝长度呈增加且明显单相指数依赖性,而缔合速率常数与长度无关,丝生长在平衡点停止[戴维斯,J.S.(1981年)《生物化学杂志》197,309 - 314]。在这项工作中,解离速率常数对粗丝长度的指数依赖性比最初认为的更为复杂。分辨出两个阶段,其中一个与平行排列的肌球蛋白的解离相关,另一个与反平行排列物质的解离相关。平行排列物质解离反应的压力依赖性表明,活化体积随长度线性减小,而吉布斯自由能增加。这被解释为表明二聚体与丝之间的相互作用随长度减弱伴随着离子键合程度的降低。反平行排列区域的情况则大不相同,活化体积和吉布斯自由能都呈线性增加。因此,离子键合的贡献与吉布斯自由能的变化相反增加,大概是以其他非共价相互作用为代价。还详细考虑了合成粗丝与其体内对应物之间的关系。