Ab'/> Dynamics of flexible peptides under the action of an electrostatic field in the gas phase
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Dynamics of flexible peptides under the action of an electrostatic field in the gas phase

机译:气相静电场静电场作用下柔性肽的动态

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AbstractThe Ion Mobility Spectrometry data of flexible peptides have been found to depend on the temperature of the buffer gas. It has been observed that the number of the peaks of the arrival time distribution may vary, while the position of the peaks may shift with temperature. Such changes depend on the emerging conformers at the experimental conditions. The motion and the dynamics of the peptide are reproduced here through a Nonequilibrium Molecular Dynamics Simulation procedure that depends on the structure of the bending macromolecule. A specific molecular model of one bending mode is considered that depends on an angular interaction potential. The observed conformations are introduced through the consideration of local minima in the model potential. As the molecular dynamics simulation proceeds, the population of the metastable structures is changing in time due to energy exchange during the ion-atom interactions. The corresponding angle distributions depend on the temperature and the field strength. We find that the observed motion of the peptide conformers can be reproduced accurately with the use of empirical model potentials and further predict the behavior of the ions at strong electric fields. The procedure can produce mean properties, such as the ion velocity and energy, as well as molecular distributions and dynamic properties, such as velocity correlation functions. We expect the method to apply to similar flexible macromolecules that acquire one bending mode.
机译:<![cdata [ 抽象 已发现柔性肽的离子迁移光谱测定数据取决于缓冲气体的温度。已经观察到,到达时间分布的峰的数量可以变化,而峰的位置可能与温度转化。这种变化取决于实验条件下的新兴符合子。肽的运动和动力学通过非正质纤维分子动力学模拟程序再现,这取决于弯曲致密的结构。认为一种弯曲模式的特定分子模型取决于角度相互作用电位。通过考虑模型潜力中的局部最小值来引入观察到的构象。随着分子动力学模拟所需的,亚稳结构的群体由于离子原子相互作用期间的能量交换而在时间上变化。相应的角度分布取决于温度和场强。我们发现,通过使用经验模型电位,可以准确地再现肽整形剂的观察到的运动,并进一步预测了在强电场处的离子的行为。该过程可以产生平均性质,例如离子速度和能量,以及分子分布和动态性质,例如速度相关函数。我们预计该方法将应用于获得一个弯曲模式的类似柔性宏观分子。

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