首页> 外文期刊>The Journal of biological chemistry >Structure of the Cyanobacterial Phytochrome 2 Photosensor Implies a Tryptophan Switch for Phytochrome Signaling
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Structure of the Cyanobacterial Phytochrome 2 Photosensor Implies a Tryptophan Switch for Phytochrome Signaling

机译:蓝藻植物植物2光电子的结构意味着用于Phytochrome信号的色氨酸开关

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摘要

Phytochromes are highly versatile photoreceptors, which occur ubiquitously in plants as well as in many light-responsive microorganisms. Here, photosynthetic cyanobacteria utilize up to three different phytochrome architectures, where only the plant-like and the single-domain cyanobacteriochromes are structurally characterized so far. Cph2 represents a third group in Synechocystis species and affects their capability of phototaxis by controlling c-di-GMP synthesis and degradation. The 2.6-? crystal structure of its red/far-red responsive photosensory module in the Pr state reveals a tandem-GAF bidomain that lacks the figure-of-eight knot of the plant/cph1 subfamily. Its covalently attached phycocyanobilin chromophore adopts a highly tilted ZZZssa conformation with a novel set of interactions between its propionates and the GAF1 domain. The tongue-like protrusion from the GAF2 domain interacts with the GAF1-bound chromophore via its conserved PRXSF, WXE, and W(G/A)G motifs. Mutagenesis showed that the integrity of the tongue is indispensable for Pr → Pfr photoconversion and involves a swap of the motifs' tryptophans within the tongue-GAF1 interface. This “Trp switch” is supposed to be a crucial element for the photochromicity of all multidomain phytochromes.
机译:Phytochromes是高度通用的光感受器,其在植物中与许多轻响应的微生物一起出现。在这里,光合紫杉clacteria利用多达三种不同的植物型架构,其中仅植物和单畴内肌肌瘤的结构表征到目前为止。 CPH2代表了SyneChocystis物种中的第三组,通过控制C-Di-GMP合成和降解来影响它们的光刻能力。 2.6-?其红色/远红色响应光敏模块的晶体结构揭示了串联 - GAF突出的植物/ CPH1亚家族的八个结。其共价连接的植物色团采用高度倾斜的ZZZSSA构象,其丙酸盐与GAF1结构域之间的新型相互作用。来自GAF2结构域的舌状突起通过其保守的PRXSF,WXE和W(G / A)G基序与GAF1结合的发色团相互作用。诱变表明,舌头的完整性对于PR→PFR光电转换是必不可少的,并且涉及舌内-GAF1接口内的基序的色氨酸的交换。该“TRP开关”应该是所有多源植物植物植物的光学变色的关键因素。

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