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亚皮秒红外光谱揭示原叶绿素酸酯的激发态动力学。

Excited-state dynamics of protochlorophyllide revealed by subpicosecond infrared spectroscopy.

机构信息

Department of Physics, Technical University Kaiserslautern, Kaiserslautern, Germany.

出版信息

Biophys J. 2011 Jan 5;100(1):260-7. doi: 10.1016/j.bpj.2010.11.054.

Abstract

To gain a better understanding of the light-induced reduction of protochlorophyllide (PChlide) to chlorophyllide as a key regulatory step in chlorophyll synthesis, we performed transient infrared absorption measurements on PChlide in d4-methanol. Excitation in the Q-band at 630 nm initiates dynamics characterized by three time constants: τ₁ = 3.6 ± 0.2, τ₂ = 38 ± 2, and τ₃ = 215 ± 8 ps. As indicated by the C13'=O carbonyl stretching mode in the electronic ground state at 1686 cm⁻¹, showing partial ground-state recovery, and in the excited electronic state at 1625 cm⁻¹, showing excited-state decay, τ₂ describes the formation of a state with a strong change in electronic structure, and τ₃ represents the partial recovery of the PChlide electronic ground state. Furthermore, τ₁ corresponds with vibrational energy relaxation. The observed kinetics strongly suggest a branched reaction scheme with a branching ratio of 0.5 for the path leading to the PChlide ground state on the 200 ps timescale and the path leading to a long-lived state (>>700 ps). The results clearly support a branched reaction scheme, as proposed previously, featuring the formation of an intramolecular charge transfer state with ∼25 ps, its decay into the PChlide ground state with 200 ps, and a parallel reaction path to the long-lived PChlide triplet state.

摘要

为了更好地理解原叶绿素酸酯(PChlide)在光诱导下还原为叶绿素酸酯这一叶绿素合成中的关键调控步骤,我们在 d4-甲醇中对 PChlide 进行了瞬态红外吸收测量。在 630nm 的 Q 带激发引发了三个时间常数的动力学:τ₁=3.6±0.2,τ₂=38±2,和 τ₃=215±8 ps。正如电子基态下 1686cm⁻¹处的 C13'=O 羰基伸缩模式所表明的那样,显示出部分基态恢复,以及在激发电子态下 1625cm⁻¹处,显示出激发态衰减,τ₂描述了一个电子结构发生强烈变化的状态的形成,而 τ₃代表 PChlide 电子基态的部分恢复。此外,τ₁对应于振动能量弛豫。观察到的动力学强烈表明存在一个分支反应方案,其中在 200ps 时间尺度上导致 PChlide 基态的路径和导致长寿命状态(>>700 ps)的路径的分支比为 0.5。结果清楚地支持了一个分支反应方案,如先前提出的那样,其特征在于形成具有约 25 ps 的分子内电荷转移态,其在 200 ps 内衰减为 PChlide 基态,以及平行的长寿命 PChlide 三重态反应途径。

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