Laboratory for Nanobiology, Department of Chemistry, KU Leuven, Celestijnenlaan 200G, 3001 Leuven, Belgium.
Int J Mol Sci. 2017 Sep 20;18(9):2015. doi: 10.3390/ijms18092015.
Reversibly switchable fluorescent proteins (RSFPs) enable advanced fluorescence imaging, though the performance of this imaging crucially depends on the properties of the labels. We report on the use of an existing small binding peptide, named Enhancer, to modulate the spectroscopic properties of the recently developed rsGreen series of RSFPs. Fusion constructs of Enhancer with rsGreen1 and rsGreenF revealed an increased molecular brightness and pH stability, although expression in living or HeLa cells resulted in a decrease of the overall emission. Surprisingly, Enhancer binding also increased off-switching speed and resistance to switching fatigue. Further investigation suggested that the RSFPs can interconvert between fast- and slow-switching emissive states, with the overall protein population gradually converting to the slow-switching state through irradiation. The Enhancer modulates the spectroscopic properties of both states, but also preferentially stabilizes the fast-switching state, supporting the increased fatigue resistance. This work demonstrates how the photo-physical properties of RSFPs can be influenced by their binding to other small proteins, which opens up new horizons for applications that may require such modulation. Furthermore, we provide new insights into the photoswitching kinetics that should be of general consideration when developing new RSFPs with improved or different photochromic properties.
可还原荧光蛋白(RSFP)可实现高级荧光成像,但其成像性能主要取决于标签的特性。我们报告了一种现有的小结合肽,称为 Enhancer,用于调节最近开发的 rsGreen 系列 RSFPs 的光谱特性。Enhancer 与 rsGreen1 和 rsGreenF 的融合构建体显示出分子亮度和 pH 稳定性的增加,尽管在活细胞或 HeLa 细胞中的表达导致整体发射减少。令人惊讶的是,Enhancer 结合还增加了关闭切换速度和抗切换疲劳。进一步的研究表明,RSFPs 可以在快速和慢速发射状态之间相互转换,整个蛋白质群体通过照射逐渐转换为慢速发射状态。Enhancer 调节两种状态的光谱特性,但也优先稳定快速切换状态,支持增加的抗疲劳性。这项工作展示了 RSFPs 的光物理特性如何受到与其结合的其他小蛋白的影响,这为可能需要这种调制的应用开辟了新的前景。此外,我们提供了对光开关动力学的新见解,在开发具有改进或不同光致变色特性的新 RSFPs 时应考虑这些动力学。