Phytochromes are red/far-red light photoreceptors in bacteria to plants, which elicit a variety of important physiological responses. They display a reversible photocycle between the resting Pr state and the light-activated Pfr state. Light signals are transduced as structural change through the entire protein to modulate its activity. It is unknown how the Pr-to-Pfr interconversion occurs, as the structure of intermediates remains notoriously elusive. Here, we present short-lived crystal structures of the photosensory core modules of the bacteriophytochrome from myxobacterium Stigmatella aurantiaca captured by an X-ray free electron laser 5Â ns and 33Â ms after light illumination of the Pr state. We observe large structural displacements of the covalently bound bilin chromophore, which trigger a bifurcated signaling pathway that extends through the entire protein. The snapshots show with atomic precision how the signal progresses from the chromophore, explaining how plants, bacteria, and fungi sense red light.
High-resolution crystal structures of transient intermediates in the phytochrome photocycle.
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作者:Carrillo Melissa, Pandey Suraj, Sanchez Juan, Noda Moraima, Poudyal Ishwor, Aldama Luis, Malla Tek Narsingh, Claesson Elin, Wahlgren Weixiao Yuan, Feliz Denisse, Å rajer Vukica, Maj MichaÅ, Castillon Leticia, Iwata So, Nango Eriko, Tanaka Rie, Tanaka Tomoyuki, Fangjia Luo, Tono Kensuke, Owada Shigeki, Westenhoff Sebastian, StojkoviÄ Emina A, Schmidt Marius
| 期刊: | Structure | 影响因子: | 4.300 |
| 时间: | 2021 | 起止号: | 2021 Jul 1; 29(7):743-754 |
| doi: | 10.1016/j.str.2021.03.004 | ||
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