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视觉视紫红质的红/绿颜色调谐:静电理论提供了定量解释。

Red/Green Color Tuning of Visual Rhodopsins: Electrostatic Theory Provides a Quantitative Explanation.

机构信息

Institut für Theoretische Physik , Johannes Kepler University Linz , Altenberger Strasse 69 , 4040 Linz , Austria.

出版信息

J Phys Chem B. 2018 May 10;122(18):4828-4837. doi: 10.1021/acs.jpcb.8b02702. Epub 2018 Apr 26.

Abstract

We present a structure-based theory of the long-wavelength (red/green) color tuning in visual rhodopsins and its application to the analysis of site-directed mutagenesis experiments. Using a combination of electrostatic and molecular-mechanics methods, we explain the measured mutant-minus-wild-type absorption shifts and conclude that the dominant mechanism of the color tuning in these systems is electrostatic pigment-protein coupling. An important element of our analysis is the independent determination of protonation states of titratable residues in the wild type and the mutant protein as well as the self-consistent reoptimization of hydrogen atom positions, which includes the relaxation of the hydrogen bonding network and the reorientation of water molecules. On the basis of this analysis, we propose a "dipole-orientation rule" according to which both the position and the orientation of a polar group introduced in the protein environment determine the direction of the transition energy shift of the retinal chromophore.

摘要

我们提出了一个基于结构的视觉视紫红质长波长(红/绿)调谐理论及其在定点突变实验分析中的应用。我们结合静电和分子力学方法,解释了测量的突变体与野生型的吸收位移,并得出结论,在这些系统中,颜色调谐的主要机制是静电色素-蛋白偶联。我们分析的一个重要元素是独立确定野生型和突变蛋白中可质子化残基的质子化状态以及氢原子位置的自洽重新优化,其中包括氢键网络的弛豫和水分子的重定向。在此基础上,我们提出了一个“偶极取向规则”,根据该规则,引入蛋白质环境中的极性基团的位置和取向决定了视黄醛发色团的跃迁能量位移的方向。

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