Department of Chemistry, Lomonosov Moscow State University , Moscow, 119991, Russia.
Emanuel Institute of Biochemical Physics, Russian Academy of Sciences , Moscow, 119991, Russia.
J Phys Chem B. 2017 Nov 30;121(47):10602-10609. doi: 10.1021/acs.jpcb.7b07517. Epub 2017 Nov 15.
We characterize computationally a red fluorescent protein (RFP) with the chromophore (Chro) sandwiched between two aromatic tyrosine rings in a triple-decker motif. According to the original proposal [ J. Phys. Chem. Lett. 2013 , 4 , 1743 ], such a tyrosine-chromophore-tyrosine π-stacked construct can be accommodated in the green fluorescent protein (GFP). A recent study [ ACS Chem. Biol. 2016 , 11 , 508 ] attempted to realize the triple-decker motif and obtained an RFP variant called mRojoA-VYGV with two tyrosine residues surrounding the chromophore. The crystal structure showed that only a tyrosine-chromophore pair was involved in π-stacking, whereas the second tyrosine was oriented perpendicularly, edge-to-face with respect to the chromophore. We propose a more promising variant of this RFP with a perfect triple-decker unit achieved by introducing additional mutations in mRojoA-VYGV. The structures and optical properties of model proteins based on the structures of mCherry and mRojoA are characterized computationally by QM(DFT)/MM. The electronic transitions in the protein-bound chromophores are computed by high-level quantum chemical methods. According to our calculations, the triple-decker chromophore unit in the new RFP variant is stable within the protein and its optical bands are red-shifted with respect to the parent mCherry and mRojoA species.
我们通过计算对一种红色荧光蛋白(RFP)进行了研究,该蛋白的发色团(Chro)被夹在三重堆积基序中的两个芳香酪氨酸环之间。根据最初的提议[J. Phys. Chem. Lett. 2013, 4, 1743],这样的酪氨酸-发色团-酪氨酸π堆积结构可以被容纳在绿色荧光蛋白(GFP)中。最近的一项研究[ACS Chem. Biol. 2016, 11, 508]试图实现三重堆积基序,并获得了一种名为 mRojoA-VYGV 的 RFP 变体,其中两个酪氨酸残基围绕发色团。晶体结构表明,只有一个酪氨酸-发色团对参与了π堆积,而第二个酪氨酸则垂直于,相对于发色团的面对面取向。我们提出了这个 RFP 的一个更有前途的变体,通过在 mRojoA-VYGV 中引入额外的突变,实现了一个完美的三重堆积单元。基于 mCherry 和 mRojoA 结构的模型蛋白的结构和光学性质通过 QM(DFT)/MM 进行了计算研究。通过高级量子化学方法计算了蛋白质结合发色团中的电子跃迁。根据我们的计算,新 RFP 变体中的三重堆积发色团单元在蛋白质内是稳定的,并且其光学带相对于母体 mCherry 和 mRojoA 物种发生了红移。