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Conformational differences between the Pfr and Pr states in Pseudomonas aeruginosa bacteriophytochrome

机译:铜绿假单胞菌细菌植物色素中Pfr和Pr状态的构象差异

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摘要

Phytochromes are red-light photoreceptors that regulate light responses in plants, fungi, and bacteria by means of reversible photoconversion between red (Pr) and far-red (Pfr) light-absorbing states. Here, we report the crystal structure of the Q188L mutant of Pseudomonas aeruginosa bacteriophytochrome (PaBphP) photosensory core module, which exhibits altered photoconversion behavior and different crystal packing from wild type. We observe two distinct chromophore conformations in the Q188L crystal structure that we identify with the Pfr and Pr states. The Pr/Pfr compositions, varying from crystal to crystal, seem to correlate with light conditions under which the Q188L crystals are cryoprotected. We also compare all known Pr and Pfr structures. Using site-directed mutagenesis, we identify residues that are involved in stabilizing the 15Ea (Pfr) and 15Za (Pr) configurations of the biliverdin chromophore. Specifically, Ser-261 appears to be essential to form a stable Pr state in PaBphP, possibly by means of its interaction with the propionate group of ring C. We propose a “flip-and-rotate” model that summarizes the major conformational differences between the Pr and Pfr states of the chromophore and its binding pocket.
机译:植物色素是红光感光体,它通过在红色(Pr)和远红色(Pfr)吸光状态之间可逆的光转换来调节植物,真菌和细菌中的光响应。在这里,我们报告铜绿假单胞菌细菌植物光色素(PaBphP)光感官核心模块Q188L突变体的晶体结构,表现出改变的光转换行为和与野生型不同的晶体堆积。我们在Q188L晶体结构中观察到两个不同的生色团构象,我们将其鉴定为Pfr和Pr状态。 Pr / Pfr的组成因晶体而异,似乎与Q188L晶体受到冷冻保护的光照条件有关。我们还比较了所有已知的Pr和Pfr结构。使用定点诱变,我们确定了稳定biliverdin发色团的15Ea(Pfr)和15Za(Pr)构型所涉及的残基。具体而言,Ser-261似乎对于在PaBphP中形成稳定的Pr状态必不可少,可能是通过与环C的丙酸酯基相互作用而实现的。我们提出了一种“翻转-旋转”模型,该模型总结了两者之间的主要构象差异发色团及其结合口袋的Pr和Pfr态。

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