Li Zhuo, Hirst Jonathan D
School of Chemistry , University of Nottingham , University Park , Nottingham NG7 2RD , UK . Email:
Chem Sci. 2017 Jun 1;8(6):4318-4333. doi: 10.1039/c7sc00586e. Epub 2017 Mar 24.
Vibrational structure in the near-UV circular dichroism (CD) spectra of proteins is an important source of information on protein conformation and can be exploited to study structure and folding. A fully quantitative theory of the relationship between protein conformation and optical spectroscopy would facilitate deeper interpretation of and insight into biophysical and simulation studies of protein dynamics and folding. We have developed new models of the aromatic side chain chromophores toluene, -cresol and 3-methylindole, which incorporate calculations of the Franck-Condon effect into first principles calculations of CD using an exciton approach. The near-UV CD spectra of 40 proteins are calculated with the new parameter set and the correlation between the computed and the experimental intensity from 270 to 290 nm is much improved. The contribution of individual chromophores to the CD spectra has been calculated for several mutants and in many cases helps rationalize changes in their experimental spectra. Considering conformational flexibility by using families of NMR structures leads to further improvements for some proteins and illustrates an informative level of sensitivity to side chain conformation. In several cases, the near-UV CD calculations can distinguish the native protein structure from a set of computer-generated misfolded decoy structures.
蛋白质近紫外圆二色性(CD)光谱中的振动结构是有关蛋白质构象的重要信息来源,可用于研究蛋白质的结构和折叠。关于蛋白质构象与光谱学之间关系的完整定量理论将有助于更深入地解释和洞察蛋白质动力学和折叠的生物物理及模拟研究。我们开发了芳香族侧链发色团甲苯、对甲酚和3-甲基吲哚的新模型,这些模型使用激子方法将弗兰克-康登效应的计算纳入CD的第一性原理计算中。用新的参数集计算了40种蛋白质的近紫外CD光谱,在270至290nm范围内,计算强度与实验强度之间的相关性有了很大改善。已针对几种突变体计算了各个发色团对CD光谱的贡献,在许多情况下有助于解释其实验光谱的变化。通过使用NMR结构家族来考虑构象灵活性,对某些蛋白质有进一步的改进,并说明了对侧链构象的信息敏感程度。在几种情况下,近紫外CD计算可以将天然蛋白质结构与一组计算机生成的错误折叠诱饵结构区分开来。