首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Efficient Calculation of Two-Dimensional Adiabatic and Free Energy Maps: Application to the Isomerization of the C13 = C14 and C15 = N16 Bonds in the Retinal of Bacteriorhodopsin
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Efficient Calculation of Two-Dimensional Adiabatic and Free Energy Maps: Application to the Isomerization of the C13 = C14 and C15 = N16 Bonds in the Retinal of Bacteriorhodopsin

机译:二维绝热和自由能图的有效计算:在细菌视紫红质的视网膜中C13 = C14和C15 = N16键的异构化中的应用

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Accurate calculation of potential energy and free-energy profiles along reaction coordinates of biological processes such as enzymatic reactions or conformational changes is fundamental to the obtention of theoretical insight into protein function. We describe here the practical implementation of the Automatic Map Refinement Procedure (AMRP) and two-dimensional Weighted Histogram Analysis Method (WHAM) for efficient computation of adiabatic potential energy and free-energy maps, respectively. Methods for efficiently sampling configuration space with high-energy barriers and for removing hysteresis in the case of periodic reaction coordinates are presented. The application of these techniques to the isomerization of the C13 = C14 and C15 = N16 bonds in the retinal of bacteriorhodopsin is described. In dark-adapted bacteriorhodopsin (bR), the retinal moiety exists in two conformers, all-trans and (13,15)cis, with the latter making approx= 67% of the population. This experimental free energy difference is reproduced here to within k_BT.
机译:沿着生物过程的反应坐标(例如酶促反应或构象变化)准确计算势能和自由能分布对于获得对蛋白质功能的理论了解至关重要。我们在这里描述自动映射细化程序(AMRP)和二维加权直方图分析方法(WHAM)的实际实现,分别用于有效计算绝热势能图和自由能图。提出了有效采样具有高能垒的配置空间并在周期性反应坐标的情况下消除滞后的方法。描述了这些技术在细菌视紫红质的视网膜中C13 = C14和C15 = N16键的异构化中的应用。在暗适应的细菌视紫红质(bR)中,视网膜部分以两个构象存在,即全反式和(13,15)顺式,后者占总人口的67%。这个实验性的自由能差在此处重现到k_BT以内。

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