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Dynamics and mechanism of light harvesting in UV photoreceptor UVR8

机译:紫外线照相器UVR8中光收割机的动态及机制

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Photosynthetic pigments form light-harvesting networks to enable nearly perfect quantum efficiency in photosynthesis via excitation energy transfer. However, similar light-harvesting mechanisms have not been reported in light sensing processes in other classes of photoreceptors during light-mediated signaling. Here, based on our earlier report, we mapped out a striking energy-transfer network composed of 26 structural tryptophan residues in the plant UV-B photoreceptor UVR8. The spectra of the tryptophan chromophores are tuned by the protein environments, funneling all excitation energy to a cluster of four tryptophan residues, a pyramid center, where the excitation-induced monomerization is initiated for cell signaling. With extensive site-directed mutagenesis, various time-resolved fluorescence techniques, and combined QM/MM simulations, we determined the energy-transfer rates for all donor–acceptor pairs, revealing the time scales from tens of picoseconds to nanoseconds. The overall light harvesting quantum efficiency by the pyramid center is significantly increased to 73%, compared to a direct excitation probability of 35%. UVR8 is the only photoreceptor discovered so far using a natural amino-acid tryptophan without utilizing extrinsic chromophores to form a network to carry out both light harvesting and light perception for biological functions.
机译:光合色素形成光收获网络,以通过激励能量转移实现光合作用的几乎完美的量子效率。然而,在光介导的信号传导期间,尚未在其他类别的光感受器中的光传感过程中报道类似的光收集机制。在此,根据我们的早期报告,我们映射了由植物UV-B感光体UVR8中的26个结构色氨酸残留物组成的醒目能量转移网络。色氨酸色团的光谱由蛋白质环境调节,汇集到四个色氨酸残留物,金字塔中心的簇,其中引发诱导的单体化用于细胞信号传导。通过广泛的站点定向诱变,各种时间分辨荧光技术和组合的QM / MM模拟,我们确定了所有供体接受器对的能量传递速率,将时间尺度从十几个皮秒到纳秒展示。金字塔中心的整体光线收获量子效率明显增加至73%,而直接励磁概率为35%。 UVR8是迄今为止发现的唯一使用天然氨基酸色氨酸的光感受器,而不利用外本发色团形成网络以实现对生物功能的光收获和光照感。

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