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Distinct classes of red/far-red photochemistry within the phytochrome superfamily

机译:植物色素超家族中不同类别的红色/远红色光化学

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摘要

Phytochromes are a widespread family of photosensory proteins first discovered in plants, which measure the ratio of red to far-red light to control many aspects of growth and development. Phytochromes interconvert between red-absorbing Pr and far-red-absorbing Pfr states via photoisomerization of a covalently-bound linear tetrapyrrole (bilin) chromophore located in a conserved photosensory core. From recent crystal structures of this core region, it has been inferred that the chromophore structures of Pr and Pfr are conserved in most phytochromes. Using circular dichroism spectroscopy and ab initio calculations, we establish that the Pfr states of the biliverdin-containing bacteriophytochromes DrBphP and PaBphP are structurally dissimilar from those of the phytobilin-containing cyanobacterial phytochrome Cph1. This conclusion is further supported by chromophore substitution experiments using semisynthetic bilin monoamides, which indicate that the propionate side chains perform different functional roles in the 2 classes of phytochromes. We propose that different directions of bilin D-ring rotation account for these distinct classes of red/far-red photochemistry.
机译:植物色素是在植物中首次发现的广泛的光敏蛋白家族,其测量红光与远红光的比率以控制生长和发育的许多方面。植物色素通过位于保守的光敏核中的共价键合的线性四吡咯(比林)发色团的光异构化,在吸收红光的Pr和吸收远红光的Pfr状态之间相互转换。从该核心区域的最新晶体结构可以推断出,Pr和Pfr的生色团结构在大多数植物色素中都是保守的。使用圆二色性光谱和从头算计算,我们确定了含biliverdin的细菌植物色素DrBphP和PaBphP的Pfr状态与含植物胆素的植物色素Cph1的Pfr状态在结构上有所不同。使用半合成联蛋白单酰胺的生色团取代实验进一步支持了这一结论,这表明丙酸酯侧链在2类植物色素中起着不同的功能作用。我们提出,Bilin D环旋转的不同方向可解释红色/远红色光化学的这些不同类别。

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