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光依赖和 pH 值依赖的蓝藻菌视紫红质 AnPixJg2 的结构变化。

Light- and pH-dependent structural changes in cyanobacteriochrome AnPixJg2.

机构信息

Institut Für Analytische Chemie, Universität Leipzig, Linnéstraße 3, 04103, Leipzig, Germany.

Leibniz-Institut Für Oberflächenmodifizierung, Permoserstraße 15, 04318, Leipzig, Germany.

出版信息

Photochem Photobiol Sci. 2022 Apr;21(4):447-469. doi: 10.1007/s43630-022-00204-4. Epub 2022 Apr 8.

Abstract

Cyanobacteriochromes (CBCRs) are phytochrome-related photosensory proteins that play an essential role in regulating phototaxis, chromatic acclimation, and cell aggregation in cyanobacteria. Here, we apply solid-state NMR spectroscopy to the red/green GAF2 domain of the CBCR AnPixJ assembled in vitro with a uniformly C- and N-labeled bilin chromophore, tracking changes in electronic structure, geometry, and structural heterogeneity of the chromophore as well as intimate contacts between the chromophore and protein residues in the photocycle. Our data confirm that the bilin ring D is strongly twisted with respect to the B-C plane in both dark and photoproduct states. We also identify a greater structural heterogeneity of the bilin chromophore in the photoproduct than in the dark state. In addition, the binding pocket is more hydrated in the photoproduct. Observation of interfacial H contacts of the photoproduct chromophore, together with quantum mechanics/molecular mechanics (QM/MM)-based structural models for this photoproduct, clearly suggests the presence of a biprotonated (cationic) imidazolium side-chain for a conserved histidine residue (322) at a distance of ~2.7 Å, generalizing the recent theoretical findings that explicitly link the structural heterogeneity of the dark-state chromophore to the protonation of this specific residue. Moreover, we examine pH effects on this in vitro assembled holoprotein, showing a substantially altered electronic structure and protonation of the photoproduct chromophore even with a small pH drop from 7.8 to 7.2. Our studies provide further information regarding the light- and pH-induced changes of the chromophore and the rearrangements of the hydrogen-bonding and electrostatic interaction network around it. Possible correlations between structural heterogeneity of the chromophore, protonation of the histidine residue nearby, and hydration of the pocket in both photostates are discussed.

摘要

蓝藻藻青蛋白(CBCRs)是与植物色素相关的感光蛋白,在调节蓝藻的趋光性、变色适应和细胞聚集方面发挥着重要作用。在这里,我们应用固态 NMR 光谱学研究了在体外组装的带有均匀 C 和 N 标记的辅发色团的 CBCR AnPixJ 的红/绿 GAF2 结构域,跟踪发色团的电子结构、几何形状和结构异质性以及在光循环中发色团与蛋白残基之间的紧密接触的变化。我们的数据证实,在黑暗和光产物状态下,双氢吡咯环 D 相对于 B-C 平面都强烈扭曲。我们还发现,在光产物中,发色团的结构异质性比在黑暗状态下更大。此外,在光产物中结合口袋的水合程度更高。光产物发色团的界面 H 接触的观察结果,以及基于量子力学/分子力学(QM/MM)的该光产物结构模型,清楚地表明,在距离为~2.7 Å 的位置存在保守组氨酸残基(322)的双质子化(阳离子)咪唑侧链,这一发现推广了最近的理论研究结果,这些结果明确将黑暗状态发色团的结构异质性与该特定残基的质子化联系起来。此外,我们研究了 pH 对这种体外组装的完整蛋白的影响,结果表明,即使 pH 值从 7.8 下降到 7.2,光产物发色团的电子结构和质子化也会发生显著改变。我们的研究提供了有关发色团的光诱导和 pH 诱导变化以及围绕它的氢键和静电相互作用网络的重排的进一步信息。讨论了在两种光态下,发色团的结构异质性、附近组氨酸残基的质子化以及口袋的水合之间可能存在的相关性。

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