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Coarse-grained simulation: a high-throughput computational approach to membrane proteins.

机译:粗粒度模拟:膜蛋白的高通量计算方法。

摘要

An understanding of the interactions of membrane proteins with a lipid bilayer environment is central to relating their structure to their function and stability. A high-throughput approach to prediction of membrane protein interactions with a lipid bilayer based on coarse-grained Molecular Dynamics simulations is described. This method has been used to develop a database of CG simulations (coarse-grained simulations) of membrane proteins (http://sbcb.bioch.ox.ac.uk/cgdb). Comparison of CG simulations and AT simulations (atomistic simulations) of lactose permease reveals good agreement between the two methods in terms of predicted lipid headgroup contacts. Both CG and AT simulations predict considerable local bilayer deformation by the voltage sensor domain of the potassium channel KvAP.
机译:对膜蛋白与脂质双层环境相互作用的理解是将其结构与其功能和稳定性联系起来的关键。描述了一种基于粗粒分子动力学模拟预测膜蛋白与脂质双层相互作用的高通量方法。此方法已用于开发膜蛋白CG模拟(粗粒模拟)的数据库(http://sbcb.bioch.ox.ac.uk/cgdb)。乳糖通透酶的CG模拟和AT模拟(原子模拟)比较表明,两种方法在预测脂类首基接触方面有很好的一致性。 CG和AT模拟都通过钾通道KvAP的电压传感器域预测了相当大的局部双层变形。

著录项

  • 作者

    Sansom MS; Scott KA; Bond PJ;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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