温度变化对碳纳米管与蛋白质相互作用动力学的影响

Sandeep Kumar, Dwij Mehta, S. Negi
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引用次数: 0

摘要

3CLN (Calcium modululated Protein)蛋白在真核细胞结构内的钙信号传导中起着重要作用[1,2]。利用VMD和NAMD软件对钙调素蛋白的温度依赖性构象变化进行了详细的分子动力学模拟研究。仿真数据与分析数据的定量比较表明,折叠过程的不同方面有助于计算的正确性。它还可以为实验观测提供详细的结构解释,也可以为不需要实际实验的理论概念提供物理解释。早期这类研究也在实验中使用荧光测量进行,如[3]。之前采用动力学方法研究了钙调蛋白的温度依赖性构象变化[4]。在这项工作中,我们分别进行了100 ns的分子动力学模拟,研究了3CLN与碳纳米管在300、500K、550K、600K和650 K下的相互作用。碳纳米管(CNT)具有纳米级直径的圆柱形结构,看起来像卷曲的石墨烯片[7,8]。在我们早期的研究中发现,温度对蛋白质和碳纳米管的整体动力学有显著的依赖性[5,6]。这种相互作用将有助于给药。这种相互作用的需要将为进一步的研究提供途径,也将有助于研究环境条件对特定蛋白质动力学的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of temperature variation on the dynamics of carbon nanotube and protein interactions
3CLN (Calcium Modulated Protein) protein plays an important role in the calcium signalling inside the eukaryotic cell structure [1, 2]. Temperature dependent conformation changes in the Calmodulin protein are studied with detailed molecular dynamics simulations by using VMD and NAMD software. The quantitative comparison of the simulation data with analysis shows the different aspects of the folding process can help with correctness of the calculations. It can also provide a detailed structural interpretation for the experimental observations as well as physical interpretation for theoretical concept without actual experimentation. Earlier these kinds of studies were also performed experimentally using fluorescence measurements as in [3]. Dynamics approach was used before the time to study the temperature dependent conformation change of Calmodulin protein [4]. In this work, we perform molecular dynamics simulations of 100 ns each to study the interaction of 3CLN with carbon nanotube at 300 K, 500K, 550K, 600K and 650 K. A carbon nanotube (CNT) has a cylindrical structure with a nanoscale diameter and appears like a rolled graphene sheet [7, 8]. A remarkable dependence of the temperature is observed on the overall dynamics of the protein and carbon nanotube as found in our earlier study [5, 6]. This interaction will be helpful in drug delivery. Need of this interaction will give a pathway for further research and also it will help to study the role of environmental conditions on the dynamics of a specified protein.
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