Valeyev Najl V, Bates Declan G, Heslop-Harrison Pat, Postlethwaite Ian, Kotov Nikolay V
Systems Biology Lab, Department of Engineering, University of Leicester, University Road, Leicester, LE1 7RH, UK.
BMC Syst Biol. 2008 Jun 2;2:48. doi: 10.1186/1752-0509-2-48.
Calmodulin is an important multifunctional molecule that regulates the activities of a large number of proteins in the cell. Calcium binding induces conformational transitions in calmodulin that make it specifically active to particular target proteins. The precise mechanisms underlying calcium binding to calmodulin are still, however, quite poorly understood.
In this study, we adopt a structural systems biology approach and develop a mathematical model to investigate various types of cooperative calcium-calmodulin interactions. We compare the predictions of our analysis with physiological dose-response curves taken from the literature, in order to provide a quantitative comparison of the effects of different mechanisms of cooperativity on calcium-calmodulin interactions. The results of our analysis reduce the gap between current understanding of intracellular calmodulin function at the structural level and physiological calcium-dependent calmodulin target activation experiments.
Our model predicts that the specificity and selectivity of CaM target regulation is likely to be due to the following factors: variations in the target-specific Ca2+ dissociation and cooperatively effected dissociation constants, and variations in the number of Ca2+ ions required to bind CaM for target activation.
钙调蛋白是一种重要的多功能分子,可调节细胞内大量蛋白质的活性。钙结合会诱导钙调蛋白的构象转变,使其对特定靶蛋白具有特异性活性。然而,钙与钙调蛋白结合的精确机制仍知之甚少。
在本研究中,我们采用结构系统生物学方法并开发了一个数学模型,以研究各种类型的协同钙 - 钙调蛋白相互作用。我们将分析预测结果与文献中的生理剂量 - 反应曲线进行比较,以便对不同协同机制对钙 - 钙调蛋白相互作用的影响进行定量比较。我们的分析结果缩小了目前在结构水平上对细胞内钙调蛋白功能的理解与生理钙依赖性钙调蛋白靶标激活实验之间的差距。
我们的模型预测,钙调蛋白靶标调节的特异性和选择性可能归因于以下因素:靶标特异性Ca2+解离和协同作用的解离常数的变化,以及激活靶标所需结合钙调蛋白的Ca2+离子数量的变化。