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Effect of Calcium Ion Removal Ionic Strength and Temperature on the Conformation Change in Calmodulin Protein at Physiological pH

机译:钙离子去除离子强度和温度对生理pH下钙调蛋白蛋白构象变化的影响

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摘要

The response of the calmodulin (CaM) protein as a function of calcium ion removal, ionic strength, and temperature at physiological pH condition was investigated using classical molecular dynamics simulations. Changing the ionic strength and temperature came out to be two of the possible routes for observing a conformation change in the protein. This behavior is similar to the conformation change observed in our previous study where a change in the pH was observed to trigger a conformation change in this protein. In the present study, as the calcium ions are removed from the protein, the protein is observed to acquire more flexibility. This flexibility is observed to be more prominent at a higher ionic strength. At a lower ionic strength of 150 mM with all the four calcium ions intact, the N- and C-lobes are observed to come close to a distance of 30 Å starting from an initial separation distance of 48 Å. This conformation change is observed to take place around 50 ns in a simulation of 100 ns. As a second parameter, temperature is observed to play a key role in the conformation change of the protein. With an increase in the temperature, the protein is observed to acquire a more compact form with the formation of different salt bridges between the residues of the N- and the C-lobes. The salt bridge formation leads to an overall lowering of the energy of the protein thus favoring the bending of the two lobes towards each other. The improper and dihedral terms show a significant shift thus leading to a more compact form on increasing the temperature. Another set of simulations is also performed at an increased temperature of 500 K to verify the reproducibility of the results. Thus a set of three possible alterations in the environmental conditions of the protein CaM are studied, with two of them giving rise to a conformation change and one adding flexibility to the protein.
机译:使用经典的分子动力学模拟研究了钙调蛋白(CaM)蛋白在生理pH条件下作为钙离子去除,离子强度和温度的函数。改变离子强度和温度是观察蛋白质构象变化的两种可能途径。此行为类似于我们先前的研究中观察到的构象变化,在该研究中观察到pH值变化可触发该蛋白质的构象变化。在本研究中,由于从蛋白质中去除了钙离子,因此观察到该蛋白质具有更大的柔韧性。观察到在较高的离子强度下这种柔韧性更加突出。在所有四个钙离子都完整的情况下,在较低的离子强度150µmM处,观察到N瓣和C瓣从初始间隔48?Å开始接近30?Å的距离。在100 ns的模拟中,观察到这种构象变化发生在50 ns左右。作为第二个参数,观察到温度在蛋白质的构象变化中起关键作用。随着温度的升高,观察到蛋白质获得更紧密的形式,在N-和C-叶的残基之间形成不同的盐桥。盐桥的形成导致蛋白质能量的整体降低,因此有利于两个凸角彼此相对弯曲。不适当和二面角项显示出明显的变化,因此导致温度升高时形式更加紧凑。还在500 K的升高温度下进行了另一组仿真,以验证结果的可重复性。因此,研究了蛋白质CaM的环境条件中的三种可能的变化,其中两种引起构象变化,而一种则增加了蛋白质的柔韧性。

著录项

  • 期刊名称 Journal of Biophysics
  • 作者

    Sunita Negi;

  • 作者单位
  • 年(卷),期 2014(2014),-1
  • 年度 2014
  • 页码 329703
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类 生物学;
  • 关键词

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