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Characterization of Two Thermostable Cyanobacterial Phytochromes Reveals Global Movements in the Chromophore-binding Domain during Photoconversion

机译:揭示了两种热稳定蓝藻细胞色素的表征 发色团结合域中的全球运动 光电转换

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摘要

Photointerconversion between the red light-absorbing (Pr) form and the far-red light-absorbing (Pfr) form is the central feature that allows members of the phytochrome (Phy) superfamily to act as reversible switches in light perception. Whereas the chromophore structure and surrounding binding pocket of Pr have been described, those for Pfr have remained enigmatic for various technical reasons. Here we describe a novel pair of Phys from two thermophilic cyanobacteria, Synechococcus sp. OS-A and OS-B′, that overcome several of these limitations. Like other cyanobacterial Phys, SyA-Cph1 and SyB-Cph1 covalently bind the bilin phycocyanobilin via their cGMP phosphodiesterase/adenyl cyclase/FhlA (GAF) domains and then assume the photointerconvertible Pr and Pfr states with absorption maxima at 630 and 704 nm, respectively. However, they are naturally missing the N-terminal Per/Arndt/Sim domain common to others in the Phy superfamily. Importantly, truncations containing only the GAF domain are monomeric, photochromic, and remarkably thermostable. Resonance Raman and NMR spectroscopy show that all four pyrrole ring nitrogens of phycocyanobilin are protonated both as Pr and following red light irradiation, indicating that the GAF domain by itself can complete the Pr to Pfr photocycle. 1H-15N two-dimensional NMR spectra of isotopically labeled preparations of the SyB-Cph1 GAF domain revealed that a number of amino acids change their environment during photoconversion of Pr to Pfr, which can be reversed by subsequent photoconversion back to Pr. Through three-dimensional NMR spectroscopy before and after light photoexcitation, it should now be possible to define the movements of the chromophore and binding pocket during photoconversion. We also generated a series of strongly red fluorescent derivatives of SyB-Cph1, which based on their small size and thermostability may be useful as cell biological reporters.
机译:红光吸收(Pr)形式和远红光吸收(Pfr)形式之间的光电转换是使植物色素(Phy)超家族成员在光感知中可逆转换的主要特征。尽管已经描述了Pr的发色团结构和周围的结合口袋,但是由于各种技术原因,Pfr的发色团结构和结合口袋仍然是令人困惑的。在这里,我们描述了来自两个嗜热蓝细菌Synechococcus sp。的一对新的Phys。 OS-A和OS-B',克服了其中一些限制。像其他蓝细菌Phys一样,SyA-Cph1和SyB-Cph1通过其cGMP磷酸二酯酶/腺苷酸环化酶/ FhlA(GAF)域共价结合Bilin藻蓝素,然后呈现光互转换的Pr和Pfr状态,吸收最大值分别在630和704 nm。但是,他们自然会缺少Phy超家族其他成员共有的N末端Per / Arndt / Sim域。重要的是,仅包含GAF结构域的截短是单体的,光致变色的,并且明显是热稳定的。共振拉曼光谱和NMR光谱表明,藻蓝藻素的所有四个吡咯环氮都质子化为Pr和红光照射,表明 GAF域本身可以完成Pr到Pfr的光循环。 同位素的 1 H- 15 N二维NMR谱 SyB-Cph1 GAF域的标记制剂显示, Pr转化为Pr时,许多氨基酸改变了它们的环境 Pfr,可以通过后续的光转换将其反转回Pr。通过 光激发前后的三维核磁共振波谱 现在应该可以定义生色团和结合的运动 光转换过程中的口袋。我们还产生了一系列的强烈红色 SyB-Cph1的荧光衍生物,基于它们的小尺寸 热稳定性可能可用作细胞生物学的报道分子。

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