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Bistable isoelectric point photoswitching in green fluorescent proteins observed by dynamic immunoprobed isoelectric focusing

机译:通过动态观察到绿色荧光蛋白的双稳态等电点光控immunoprobed等电聚焦

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摘要

We describe a novel isoelectric point photoswitching phenomenon in both wild-type Aequorea victoria (av) GFP and the E222G mutant Aequorea coerulescens (ac) GFP. A combination of time-resolved microfluidic isoelectric focusing (IEF) and in situ antibody blotting IEF were employed to monitor dark (non-fluorescent) and bright (fluorescent) GFP populations. Through IEF, each population was observed to exhibit distinct isoelectric points (pI) and, thus, distinct formal electrostatic charges. Experimentally observed interconversion between the dark, higher pI and bright, lower pI GFP populations is tightly controlled by differential UV and blue light exposure. The stoichiometry and kinetics of charge transfer tied to this reversible photobleaching process are deduced. In concert with a reaction-transport model of bistable reversible charge and fluorescence photoswitching, the on-chip measurements of population interconversion rates suggest the potential for both rheostatic and discrete switch-like modulation of the electrostatic charge of GFPs depending on the illumination profile. We estimate that 3–4 formal charges distinguish the bright and dark populations of avGFP, compared to one charge for those of acGFP. Given the proposed role of E222 as a bridge between internal and exit hydrogen bond clusters within the GFP β-barrel, the difference in charge switching magnitude between the two mutants provides intriguing evidence for the proton wire hypothesis of proton transport within the GFP structure, and of proton exchange with the bulk solvent. Our facile dynamic and probed IEF assays should find widespread use in analytical screening and quantitative kinetic analysis of photoswitching and other charge switching processes in response to stimuli including light, temperature, or binding/cleavage events.
机译:我们描述了在野生型维多利亚水母(av)GFP和E222G突变蓝藻(ac)GFP中的新型等电点光电转换现象。时间分辨的微流体等电聚焦(IEF)和原位抗体印迹IEF的组合用于监测暗(非荧光)和亮(荧光)GFP种群。通过IEF,观察到每个种群都表现出不同的等电点(pI),因此,表现出不同的形式静电荷。实验观察到的深色,较高pI和明亮,较低pI GFP种群之间的相互转化受到紫外线和蓝光暴露程度的严格控制。推论出与这种可逆的光漂白过程有关的电荷转移的化学计量和动力学。与双稳态可逆电荷和荧光光开关的反应运输模型相一致,在芯片上进行的人口互变速率测量表明,GFP静电荷的变位和离散开关样调制都可能取决于照明分布。我们估计,与acGFP的一种电荷相比,3-4种形式的电荷可以区分avGFP的明亮种群和黑暗种群。考虑到E222作为GFPβ-桶内部和外部氢键簇之间的桥梁的作用,两个突变体之间电荷转换幅度的差异为GFP结构内质子传输的质子线假说提供了有趣的证据,并且与本体溶剂交换质子。我们的简便的动态和探测式IEF分析应在光开关和其他电荷开关过程对光,温度或结合/裂解事件的刺激响应的分析筛选和定量动力学分析中得到广泛应用。

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