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Recording of Blue Light-Induced Energy and Volume Changes within the Wild-Type and Mutated Phot-LOV1 Domain from Chlamydomonas reinhardtii

机译:记录了莱茵衣藻野生型和突变的Phot-LOV1域内的蓝光诱导的能量和体积变化。

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摘要

The time-resolved thermodynamics of the flavin mononucleotide (FMN)-binding LOV1 domain of Chlamydomonas reinhardtii phot (phototropin homolog) was studied by means of laser-induced optoacoustic spectroscopy. In the wild-type protein the early red-shifted intermediate LOV715 exhibits a small volume contraction, ΔV715 = −1.50 ml/mol, with respect to the parent state. LOV715 decays within few μs into the covalent FMN-Cys-57 adduct LOV390, that shows a larger contraction, ΔV390 = −8.8 ml/mol, suggesting a loss of entropy and conformational flexibility. The high energy content of LOV390, E390 = 180 kJ/mol, ensures the driving force for the completion of the photocycle and points to a strained photoreceptor conformation. In the LOV-C57S mutated protein the photoadduct is not formed and ΔV390 is undetected. Large effects on the measured ΔVs are observed in the photochemically competent R58K and R58K/D31Q mutated proteins, with ΔV390 = −2.0 and −1.9 ml/mol, respectively, and ΔV715 ≈ 0. The D31Q and D31N substitutions exhibit smaller but well-detectable effects. These results show that the photo-induced volume changes involve the protein region comprising Arg-58, which tightly interacts with the FMN phosphate group.
机译:通过激光诱导的光声光谱法研究了莱茵衣藻黄素单核苷酸(FMN)结合LOV1域(光养蛋白同系物)的时间分辨热力学。在野生型蛋白质中,相对于亲本状态,早期红移的中间体LOV715表现出小的体积收缩,ΔV715= -1.50 ml / mol。 LOV715在几微秒内衰减成共价FMN-Cys-57加合物LOV390,表现出较大的收缩,ΔV390= -8.8 ml / mol,表明熵和构象柔韧性下降。 LOV390的高能量含量E390 = 180 kJ / mol,可确保完成光循环的驱动力,并指向应变的感光受体构象。在LOV-C57S突变的蛋白中,未形成光加合物,并且未检测到ΔV390。在具有光化学活性的R58K和R58K / D31Q突变蛋白中观察到了对测得的ΔV的较大影响,ΔV390分别为-2.0和-1.9 ml / mol,ΔV715≈0。效果。这些结果表明,光诱导的体积变化涉及包含Arg-58的蛋白质区域,该蛋白质区域与FMN磷酸基团紧密相互作用。

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