Nienhaus Karin, Renzi Fabiana, Vallone Beatrice, Wiedenmann Jörg, Nienhaus G Ulrich
Department of Biophysics, University of Ulm, 89069 Ulm, Germany.
Biophys J. 2006 Dec 1;91(11):4210-20. doi: 10.1529/biophysj.106.087411. Epub 2006 Sep 15.
Despite their similar fold topologies, anthozoan fluorescent proteins (FPs) can exhibit widely different optical properties, arising either from chemical modification of the chromophore itself or from specific interactions of the chromophore with the surrounding protein moiety. Here we present a structural and spectroscopic investigation of the green FP asFP499 from the sea anemone Anemonia sulcata var. rufescens to explore the effects of the protein environment on the chromophore. The optical absorption and fluorescence spectra reveal two discrete species populated in significant proportions over a wide pH range. Moreover, multiple protonation reactions are evident from the observed pH-dependent spectral changes. The x-ray structure of asFP499, determined by molecular replacement at a resolution of 1.85 A, shows the typical beta-barrel fold of the green FP from Aequorea victoria (avGFP). In its center, the chromophore, formed from the tripeptide Gln(63)-Tyr(64)-Gly(65), is tightly held by multiple hydrogen bonds in a polar cage that is structurally quite dissimilar to that of avGFP. The x-ray structure provides interesting clues as to how the spectroscopic properties are fine tuned by the chromophore environment.
尽管珊瑚虫荧光蛋白(FPs)具有相似的折叠拓扑结构,但它们的光学性质却可能有很大差异,这要么源于发色团本身的化学修饰,要么源于发色团与周围蛋白质部分的特定相互作用。在此,我们展示了对来自红海葵(Anemonia sulcata var. rufescens)的绿色荧光蛋白asFP499的结构和光谱研究,以探究蛋白质环境对发色团的影响。光学吸收光谱和荧光光谱显示,在很宽的pH范围内有两种离散的物种以显著比例存在。此外,从观察到的pH依赖光谱变化中可以明显看出多个质子化反应。通过分子置换法以1.85 Å的分辨率测定的asFP499的X射线结构,显示出维多利亚多管水母绿色荧光蛋白(avGFP)典型的β桶折叠结构。在其中心,由三肽Gln(63)-Tyr(64)-Gly(65)形成的发色团,通过多个氢键紧密地保持在一个极性笼中,该极性笼在结构上与avGFP的极性笼有很大不同。X射线结构为发色团环境如何微调光谱性质提供了有趣的线索。