Department of Chemistry and ‡Department of Molecular and Cell Biology, University of California , One Shields Avenue, Davis, California 95616, United States.
Biochemistry. 2014 Jul 22;53(28):4601-11. doi: 10.1021/bi5005359. Epub 2014 Jul 8.
Femtosecond photodynamics of the Pfr form of the red/far-red phytochrome N-terminal PAS-GAF-PHY photosensory core module of the cyanobacterial phytochrome Cph1 (termed Cph1Δ) from Synechocystis were resolved with visible broadband transient absorption spectroscopy. Multiphasic generation dynamics via global target analysis revealed parallel evolution of two pathways with distinct excited- and ground-state kinetics. These measurements resolved two subpopulations: a majority subpopulation with fast excited-state decay and slower ground-state dynamics, corresponding to previous descriptions of Pfr dynamics, and a minority subpopulation with slower excited-state decay and faster ground-state primary dynamics. Both excited-state subpopulations generated the isomerized, red-shifted Lumi-Ff photoproduct (715 nm); subsequent ground-state evolution to a blue-shifted Meta-Fr population (635 nm) proceeded on 3 ps and 1.5 ns time scales for the two subpopulations. Meta-Fr was spectrally similar to a recently described photoinactive fluorescent subpopulation of Pr ((Fluor)Pr). Thus, the reverse Pfr to Pr photoconversion of Cph1Δ involves minor structural deformation of Meta-Fr to generate the fluorescent, photochemically refractory form of Pr, with slower subsequent equilibration with the photoactive Pr subpopulation ((Photo)Pr).
利用可见宽带瞬态吸收光谱解析了来自集胞藻的红/远红型光敏色素 N 端 PAS-GAF-PHY 光感受核心模块(称为 Cph1Δ)的 Pfr 形式的飞秒光动力学。通过全局目标分析的多相生成动力学揭示了具有不同激发态和基态动力学的两条途径的平行进化。这些测量结果解析了两个亚群:具有快速激发态衰减和较慢基态动力学的大多数亚群,对应于以前对 Pfr 动力学的描述,以及具有较慢激发态衰减和较快基态初始动力学的少数亚群。两个激发态亚群都生成了异构化的、红移的 Lumi-Ff 光产物(715nm);随后,对于两个亚群,基态演化到蓝移的 Meta-Fr 群体(635nm)的过程分别在 3 ps 和 1.5 ns 时间尺度上进行。Meta-Fr 与最近描述的 Pr 的非活性荧光亚群(Fluor)Pr 光谱相似。因此,Cph1Δ 的反向 Pfr 到 Pr 的光致转换涉及到 Meta-Fr 的微小结构变形,以产生荧光、光化学不可逆转的 Pr 形式,随后与光活性 Pr 亚群(Photo)Pr 的平衡速度较慢。