首页> 美国卫生研究院文献>other >A second conserved GAF domain cysteine is required for the blue/green photoreversibility of cyanobacteriochrome Tlr0924 from Thermosynechococcus elongatus.
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A second conserved GAF domain cysteine is required for the blue/green photoreversibility of cyanobacteriochrome Tlr0924 from Thermosynechococcus elongatus.

机译:第二个保守的GAF域半胱氨酸对于来自嗜热嗜热球菌的蓝细菌色素Tlr0924的蓝/绿光可逆性是必需的。

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摘要

Phytochromes are widely occurring red/far-red photoreceptors that utilize a linear tetrapyrrole (bilin) chromophore covalently bound within a knotted PAS-GAF domain pair. Cyanobacteria also contain more distant relatives of phytochromes that lack this knot, such as the phytochrome-related cyanobacteriochromes implicated to function as blue/green switchable photoreceptors. In this study, we characterize the cyanobacteriochrome Tlr0924 from the thermophilic cyanobacterium Thermosynechococcus elongatus. Full-length Tlr0924 exhibits blue/green photoconversion across a broad range of temperatures, including physiologically relevant temperatures for this organism. Spectroscopic characterization of Tlr0924 demonstrates that its green-absorbing state is in equilibrium with a labile, spectrally distinct blue-absorbing species. The photochemically generated blue-absorbing state is in equilibrium with another species absorbing at longer wavelengths, giving a total of 4 states. Cys499 is essential for this behavior, because mutagenesis of this residue results in red-absorbing mutant biliproteins. Characterization of the C499D mutant protein by absorbance and CD spectroscopy supports the conclusion that its bilin chromophore adopts a similar conformation to the red-light-absorbing Pr form of phytochrome. We propose a model photocycle in which Z/E photoisomerization of the 15/16 bond modulates formation of a reversible thioether linkage between Cys499 and C10 of the chromophore, providing the basis for the blue/green switching of cyanobacteriochromes.
机译:植物色素是广泛使用的红色/远红色感光体,它们利用在打结的PAS-GAF结构域对中共价结合的线性四吡咯(bilin)生色团。蓝细菌还包含缺乏这种结的植物色素的较远亲属,例如与植物色素相关的蓝细菌色素有牵连作用,可以用作蓝/绿可切换的感光体。在这项研究中,我们从嗜热的嗜蓝细菌嗜热长球嗜热菌中鉴定出了蓝细菌色素Tlr0924。全长Tlr0924在很宽的温度范围内都表现出蓝/绿光转换,包括该生物的生理相关温度。 Tlr0924的光谱表征表明,其绿色吸收状态与不稳定的,光谱上不同的蓝色吸收物质处于平衡状态。光化学产生的蓝光吸收态与另一种在更长波长处吸收的蓝光处于平衡状态,共有4种态。 Cys499对于这种行为至关重要,因为对该残基的诱变会导致吸收红光的突变型胆管蛋白。 C499D突变蛋白的吸光度和CD光谱表征表明,其Bilin生色团具有与吸收红光的Pr形式的植物色素相似的构象。我们提出了一个模型光周期,其中15/16键的Z / E光异构化可调节发色团Cys499和C10之间可逆硫醚键的形成,为蓝/绿转换蓝藻细菌色素提供了基础。

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