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细菌视紫红质折叠中跨膜螺旋的堆积:结构与热力学

Packing of transmembrane helices in bacteriorhodopsin folding: structure and thermodynamics.

作者信息

Chen C-C, Wei C-C, Sun Y-C, Chen C-M

机构信息

Department of Physics, National Taiwan Normal University, 88 sec. 4, Ting-Chou Road, Taipei, Taiwan.

出版信息

J Struct Biol. 2008 May;162(2):237-47. doi: 10.1016/j.jsb.2008.01.003. Epub 2008 Jan 11.

Abstract

We propose a coarse-grained (CG) model to study the native structure and physical properties of helical membrane proteins (HMPs) using off-lattice computer simulations. Instead of considering sequence heterogeneity explicitly, we model its effect on the packing of helices by employing a mean packing parameter r(0), which is calculated from an all-atom (AA) model. Specifically, this CG model is applied to investigate the packing of helices in bacteriorhodopsin (BR), and predicts the seven helix bundle structure of BR with a root mean square deviation (RMSD) in coordinates of helix backbone atoms (N, C, C(alpha)) of 3.99 A from its crystal structure. This predicted structure is further refined in an AA model by Amber and the refined structure has a RMSD (in coordinates of helix backbone atoms) of 2.64 A. The predicted packing position, tilting angle, and orientation angle of each helix in the refined structure are consistent with experimental data and their physical origins can be well understood in our model. Our results show that a reasonably good structure of BR can be predicted by using such a dual-scale approach, provided that its secondary structure is known. Starting from a random initial configuration, the folded structure can be obtained in days using a regular desktop computer. Various thermodynamic properties of helix packing of BR are also investigated in this CG model.

摘要

我们提出了一种粗粒度(CG)模型,通过无晶格计算机模拟来研究螺旋膜蛋白(HMPs)的天然结构和物理性质。我们没有明确考虑序列异质性,而是通过使用一个平均堆积参数r(0)来模拟其对螺旋堆积的影响,该参数是根据全原子(AA)模型计算得出的。具体而言,此CG模型用于研究细菌视紫红质(BR)中螺旋的堆积情况,并预测BR的七螺旋束结构,其螺旋主链原子(N、C、Cα)坐标的均方根偏差(RMSD)相对于其晶体结构为3.99 Å。该预测结构在AA模型中通过Amber进一步优化,优化后的结构的RMSD(螺旋主链原子坐标)为2.64 Å。预测结构中每个螺旋的堆积位置、倾斜角度和取向角度与实验数据一致,并且在我们的模型中可以很好地理解其物理起源。我们的结果表明,只要已知BR的二级结构,使用这种双尺度方法就可以预测出相当不错的BR结构。从随机的初始构型开始,使用普通台式计算机在数天内即可获得折叠结构。在此CG模型中还研究了BR螺旋堆积的各种热力学性质。

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