Biophysics Group, Department of Physics and Astronomy, Faculty of Sciences, Vrije Universiteit Amsterdam, Netherlands ; Institut für Biologie/Experimentelle Biophysik, Humboldt Universität zu Berlin Berlin, Germany.
School of Chemistry, University of St Andrews St Andrews, UK.
Front Mol Biosci. 2015 Nov 3;2:62. doi: 10.3389/fmolb.2015.00062. eCollection 2015.
The resting and signaling structures of the blue-light sensing using flavin (BLUF) photoreceptor domains are still controversially debated due to differences in the molecular models obtained by crystal and NMR structures. Photocycles for the given preferred structural framework have been established, but a unifying picture combining experiment and theory remains elusive. We summarize present work on the AppA BLUF domain from both experiment and theory. We focus on IR and UV/vis spectra, and to what extent theory was able to reproduce experimental data and predict the structural changes upon formation of the signaling state. We find that the experimental observables can be theoretically reproduced employing any structural model, as long as the orientation of the signaling essential Gln63 and its tautomer state are a choice of the modeler. We also observe that few approaches are comparative, e.g., by considering all structures in the same context. Based on recent experimental findings and a few basic calculations, we suggest the possibility for a BLUF activation mechanism that only relies on electron transfer and its effect on the local electrostatics, not requiring an associated proton transfer. In this regard, we investigate the impact of dispersion correction on the interaction energies arising from weakly bound amino acids.
由于晶体和 NMR 结构获得的分子模型存在差异,蓝光照感使用黄素(BLUF)光受体结构域的静止和信号结构仍然存在争议。已经确定了给定首选结构框架的光循环,但实验和理论相结合的统一图像仍然难以捉摸。我们总结了来自实验和理论的 AppA BLUF 结构域的现有工作。我们专注于 IR 和 UV/vis 光谱,以及在何种程度上理论能够重现实验数据并预测信号状态形成时的结构变化。我们发现,只要信号必需 Gln63 的取向及其互变异构状态是模型构建者的选择,任何结构模型都可以理论上重现实验观察结果。我们还观察到,很少有方法具有可比性,例如,通过在相同的上下文中考虑所有结构。基于最近的实验发现和一些基本计算,我们提出了一种 BLUF 激活机制的可能性,该机制仅依赖于电子转移及其对局部静电的影响,而不需要相关的质子转移。在这方面,我们研究了分散校正对弱结合氨基酸产生的相互作用能的影响。