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Temporal and steric analysis of ionic permeation and binding in SERCA via molecular dynamic simulations

机译:通过分子动力学模拟对SERCA中离子渗透和结合的时空分析

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摘要

The availability of the crystal structure of the sarco(endo)plasmic reticulum calcium ATPase (SERCA) has allowed atomic-level molecular dynamic (MD) simulations of this membrane transport protein to be done. The biomedical and nanotechnological implications of this work are discussed as well as the methods of performing the simulations and analysis. We have performed nanosecond timescale simulations of SERCA for several of its known conformations in a lipid/water environment. One simulation contained Ca~(2+) ions, while others without ions were analyzed by techniques such as steric pathway determination. We discuss details of the resulting putative cytoplasmic and lumenal pathways, along with experimental evidence from the literature to support our conclusions. Finally, we give a brief overview of future research directions, as they pertain to MD simulations and their analysis. The methodology used in this work shows that significant insight into the structure-function relationship of ion-motive transmembrane pumps can be derived by a combination of simulation tools and analysis techniques including MD trajectories, steric analysis and electrostatic potentials.
机译:肌(内)质网钙ATP酶(SERCA)的晶体结构的可用性已允许此膜转运蛋白的原子级分子动力学(MD)模拟。讨论了这项工作的生物医学和纳米技术意义,以及进行模拟和分析的方法。我们已经对脂质/水环境中的几种已知构象进行了SERCA的纳秒级时标仿真。一种模拟包含Ca〜(2+)离子,而另一种不含离子的模拟则通过空间途径测定等技术进行分析。我们讨论了推定的细胞质和内腔途径的细节,以及来自文献的实验证据来支持我们的结论。最后,我们简要概述了未来的研究方向,因为它们与MD模拟及其分析有关。这项工作中使用的方法学表明,可以通过结合仿真工具和分析技术(包括MD轨迹,空间分析和静电势)来获得对离子动力跨膜泵的结构-功能关系的深入了解。

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