School of Molecular Sciences and Biodesign Institute, Arizona State University, Tempe, AZ 85287, United States of America.
Methods Appl Fluoresc. 2018 Jul 26;6(4):045004. doi: 10.1088/2050-6120/aad20f.
Rhodamine dyes in aqueous solution form non-fluorescent dimers with a plane-to-plane stacking geometry (H-dimers). The self-quenching properties of these dimers have been exploited to probe the conformation and dynamics of proteins using a variety of fluorescence approaches that require the interpretation of fluorescence intensities, lifetimes and fluctuations. Here, we report on a systematic study of the photophysical properties of three rhodamine dyes (tetramethylrhodamine, Alexa 488 and Alexa 546) covalently bound to the E. coli sliding clamp (β clamp) with emphasis on the properties of the H-dimers that form when the dimeric protein is labeled with one dye at each side of the dimer interface. Overall, results are consistent with an equilibrium between non-emissive dimers and unstacked monomers that experience efficient dynamic quenching Protein constructs labeled with tetramethylrhodamine show the characteristic features of H-dimers in their absorption spectra and a c.a. 40-fold quenching of fluorescence intensity. The degree of quenching decreases when samples are labeled with a tetramethylrhodamine derivative bearing a six-carbon linker. H-dimers do not form in samples labeled with Alexa 488 and A546, but fluorescence is still quenched in these samples through a dynamic mechanism. These results should help researchers design and interpret fluorescence experiments that take advantage of the properties of rhodamine dimers in protein research.
在水溶液中,若丹明染料形成具有面-面堆积几何形状(H-二聚体)的非荧光二聚体。这些二聚体的自猝灭特性已被用于使用各种荧光方法来探测蛋白质的构象和动力学,这些方法需要解释荧光强度、寿命和波动。在这里,我们报告了对三种若丹明染料(四甲基罗丹明、Alexa 488 和 Alexa 546)与大肠杆菌滑动夹(β 夹)共价结合的光物理性质的系统研究,重点是当二聚体蛋白在二聚体界面的每一侧用一种染料标记时形成的 H-二聚体的性质。总的来说,结果与非发射二聚体和未堆积单体之间的平衡一致,这些单体经历有效的动态猝灭。用四甲基罗丹明标记的蛋白质结构在其吸收光谱中表现出 H-二聚体的特征,并且荧光强度猝灭约 40 倍。当用带有六碳连接子的四甲基罗丹明衍生物标记样品时,猝灭程度降低。在用 Alexa 488 和 A546 标记的样品中,H-二聚体不会形成,但在这些样品中,荧光仍通过动态机制猝灭。这些结果应该有助于研究人员设计和解释荧光实验,利用若丹明二聚体在蛋白质研究中的特性。