Pearson David S, Swartz Darl R, Geeves Michael A
Department of Biosciences, University of Kent, Canterbury CT2 7NJ, UK.
Biochemistry. 2008 Nov 18;47(46):12146-58. doi: 10.1021/bi801150w. Epub 2008 Oct 23.
We have used rapid pressure jump and stopped-flow fluorometry to investigate calcium and magnesium binding to F29W chicken skeletal troponin C. Increased pressure perturbed calcium binding to the N-terminal sites in the presence and absence of magnesium and provided an estimate for the volume change upon calcium binding (-12 mL/mol). We observed a biphasic response to a pressure change which was characterized by fast and slow reciprocal relaxation times of the order 1000/s and 100/s. Between pCa 8-5.4 and at troponin C concentrations of 8-28 muM, the slow relaxation times were invariant, indicating that a protein isomerization was rate-limiting. The fast event was only detected over a very narrow pCa range (5.6-5.4). We have devised a model based on a Monod-Wyman-Changeux cooperative mechanism with volume changes of -9 and +6 mL/mol for the calcium binding to the regulatory sites and closed to open protein isomerization steps, respectively. In the absence of magnesium, we discovered that calcium binding to the C-terminal sites could be detected, despite their position distal to the calcium-sensitive tryptophan, with a volume change of +25 mL/mol. We used this novel observation to measure competitive magnesium binding to the C-terminal sites and deduced an affinity in the range 200-300 muM (and a volume change of +35 mL/mol). This affinity is an order of magnitude tighter than equilibrium fluorescence data suggest based on a model of direct competitive binding. Magnesium thus indirectly modulates binding to the N-terminal sites, which may act as a fine-tuning mechanism in vivo.
我们利用快速压力跃变和停流荧光法研究了钙和镁与F29W鸡骨骼肌肌钙蛋白C的结合。在有镁和无镁的情况下,压力增加都会干扰钙与N端位点的结合,并提供了钙结合时体积变化的估计值(-12 mL/mol)。我们观察到对压力变化的双相响应,其特征是快速和慢速的互易弛豫时间分别为1000/s和100/s左右。在pCa 8 - 5.4之间以及肌钙蛋白C浓度为8 - 28 μM时,慢速弛豫时间不变,表明蛋白质异构化是限速步骤。快速事件仅在非常窄的pCa范围内(5.6 - 5.4)被检测到。我们设计了一个基于Monod-Wyman-Changeux协同机制的模型,钙与调节位点结合以及蛋白质从关闭到开放的异构化步骤的体积变化分别为-9和+6 mL/mol。在没有镁的情况下,我们发现尽管C端位点位于对钙敏感的色氨酸远端,但仍能检测到钙与它们的结合,体积变化为+25 mL/mol。我们利用这一新发现来测量竞争性镁与C端位点的结合,并推断出亲和力在200 - 300 μM范围内(体积变化为+35 mL/mol)。这种亲和力比基于直接竞争结合模型的平衡荧光数据所表明的要强一个数量级。因此,镁间接调节与N端位点的结合,这可能是体内的一种微调机制。