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Solid-state NMR spectroscopic study of chromophore-protein interactions in the Pr ground state of plant phytochrome A.

机译:固态NMR光谱研究植物光色素A的Pr基态下的发色团-蛋白质相互作用。

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Despite extensive study, the molecular structure of the chromophore-binding pocket of phytochrome A (phyA), the principal photoreceptor controlling photomorphogenesis in plants, has not yet been successfully resolved. Here, we report a series of two-dimensional (2-D) magic-angle spinning solid-state NMR experiments on the recombinant N-terminal, 65-kDa PAS-GAF-PHY light-sensing module of phytochrome A3 from oat (Avena sativa), assembled with uniformly 13C- and 15N-labeled phycocyanobilin (u-[13C,15N]-PCB-As.phyA3). The Pr state of this protein was studied regarding the electronic structure of the chromophore and its interactions with the proximal amino acids. Using 2-D 13C-13C and 1H-15N experiments, a complete set of 13C and 15N assignments for the chromophore were obtained. Also, a large number of 1H-13C distance restraints between the chromophore and its binding pocket were revealed by interfacial heteronuclear correlation spectroscopy. 13C doublings of the chromophore A-ring region and the C-ring carboxylate moiety, together with the observation of two Pr isoforms, Pr-I and Pr-II, demonstrate the local mobility of the chromophore and the plasticity of its protein environment. It appears that the interactions and dynamics in the binding pocket of phyA in the Pr state are remarkably similar to those of cyanobacterial phytochrome (Cph1). The N-terminus of the region modeled (residues 56-66 of phyA) is highly mobile. Differences in the regulatory processes involved in plant and Cph1 phytochromes are discussed.
机译:尽管进行了广泛的研究,但尚未成功解决植物色素A(phyA)的发色团结合袋的分子结构,植物色素是控制植物光形态发生的主要光感受器。在这里,我们报道了来自燕麦的植物色素A3的重组N末端65 kDa PAS-GAF-PHY光传感模块的一系列二维(2-D)幻角旋转固态NMR实验(< i> Avena sativa ),与统一的 13 C-和 15 N标记的藻蓝素( u -[ 13 C, 15 N] -PCB-As.phyA3)。关于发色团的电子结构及其与近端氨基酸的相互作用,研究了该蛋白的Pr状态。使用二维 13 C- 13 C和 1 H- 15 N实验,完整的<获得了发色团的​​sup> 13 C和 15 N分配。此外,界面异核相关光谱显示了发色团与其结合口袋之间的大量 1 H- 13 C距离限制。发色团 A -环区域和 C -环羧酸酯部分的 13 C加倍,以及观察到两个Pr异构体Pr- I和Pr-II证明了生色团的局部迁移及其蛋白环境的可塑性。看来,在Pr状态下phyA的结合口袋中的相互作用和动力学与蓝细菌植物色素(Cph1)的相互作用和动力学非常相似。建模区域的N端(phyA的56-66位残基)具有很高的移动性。讨论了涉及植物和Cph1植物色素的调控过程的差异。

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