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g_membed:最小干扰下将膜蛋白有效插入平衡脂质双层。

g_membed: Efficient insertion of a membrane protein into an equilibrated lipid bilayer with minimal perturbation.

机构信息

Computational Biomolecular Chemistry Group, Max-Planck-Institute for Biophysical Chemistry, Göttingen D-37077, Germany.

出版信息

J Comput Chem. 2010 Aug;31(11):2169-74. doi: 10.1002/jcc.21507.

Abstract

To efficiently insert a protein into an equilibrated and fully hydrated membrane with minimal membrane perturbation we present a computational tool, called g_membed, which is part of the Gromacs suite of programs. The input consists of an equilibrated membrane system, either flat or curved, and a protein structure in the right position and orientation with respect to the lipid bilayer. g_membed first decreases the width of the protein in the xy-plane and removes all molecules (generally lipids and waters) that overlap with the narrowed protein. Then the protein is grown back to its full size in a short molecular dynamics simulation (typically 1000 steps), thereby pushing the lipids away to optimally accommodate the protein in the membrane. After embedding the protein in the membrane, both the lipid properties and the hydration layer are still close to equilibrium. Thus, only a short equilibration run (less then 1 ns in the cases tested) is required to re-equilibrate the membrane. Its simplicity makes g_membed very practical for use in scripting and high-throughput molecular dynamics simulations.

摘要

为了高效地将蛋白质插入到平衡且充分水合的膜中,同时尽量减少对膜的干扰,我们提出了一种名为 g_membed 的计算工具,它是 Gromacs 程序套件的一部分。该工具的输入包括一个平衡的膜系统,无论是平面的还是弯曲的,以及一个相对于脂质双层处于正确位置和方向的蛋白质结构。g_membed 首先在 xy 平面上减小蛋白质的宽度,并移除与变窄的蛋白质重叠的所有分子(通常是脂质和水)。然后,在一个短的分子动力学模拟(通常是 1000 步)中,将蛋白质恢复到其全尺寸,从而将脂质推开,以最佳地将蛋白质容纳在膜中。将蛋白质嵌入膜中后,脂质性质和水合层仍接近平衡。因此,只需要进行短时间的平衡运行(在测试的情况下小于 1 ns)即可重新平衡膜。其简单性使 g_membed 非常适合在脚本和高通量分子动力学模拟中使用。

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