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Structure of a LOV protein in apo-state and implications for construction of LOV-based optical tools

机译:脱脂状态的LOV蛋白结构及其对基于LOV的光学工具构建的意义

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摘要

Unique features of Light-Oxygen-Voltage (LOV) proteins like relatively small size (~12–19 kDa), inherent modularity, highly-tunable photocycle and oxygen-independent fluorescence have lately been exploited for the generation of optical tools. Structures of LOV domains reported so far contain a flavin chromophore per protein molecule. Here we report two new findings on the short LOV protein W619_1-LOV from Pseudomonas putida. First, the apo-state crystal structure of W619_1-LOV at 2.5 Å resolution reveals conformational rearrangements in the secondary structure elements lining the chromophore pocket including elongation of the Fα helix, shortening of the Eα-Fα loop and partial unfolding of the Eα helix. Second, the apo W619_1-LOV protein binds both natural and structurally modified flavin chromophores. Remarkably different photophysical and photochemical properties of W619_1-LOV bound to 7-methyl-8-chloro-riboflavin (8-Cl-RF) and lumichrome imply application of these variants as novel optical tools as they offer advantages such as no adduct state formation, and a broader choice of wavelengths for in vitro studies.
机译:轻氧电压(LOV)蛋白的独特功能,例如相对较小的尺寸(〜12–19 kDa),固有的模块性,高度可调节的光循环和与氧无关的荧光,最近已被用于光学工具的开发。迄今为止报道的LOV结构域的结构每个蛋白分子均含有黄素发色团。在这里,我们报告关于恶臭假单胞菌的短LOV蛋白W619_1-LOV的两个新发现。首先,W619_1-LOV在2.5Å分辨率下的脱辅基态晶体结构揭示了生色团口袋内衬的二级结构元素的构象重排,包括Fα螺旋的延长,Eα-Fα环的缩短和Eα螺旋的部分展开。其次,载脂蛋白W619_1-LOV蛋白结合天然和结构修饰的黄素发色团。与6-甲基-8-氯核黄素(8-Cl-RF)结合的W619_1-LOV的光物理和光化学性质显着不同,而光致变色剂则将这些变体应用为新型光学工具,因为它们具有不形成加合物状态等优点,以及用于体外研究的更多波长选择。

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