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Y16F 突变的绿菌(Chlorobium tepidum)Fenna-Matthews-Olson(FMO)复合物的激子能量景观:高分辨率光谱学和建模研究。

Excitonic Energy Landscape of the Y16F Mutant of the Chlorobium tepidum Fenna-Matthews-Olson (FMO) Complex: High Resolution Spectroscopic and Modeling Studies.

机构信息

Departments of Biology and Chemistry , Washington University in St. Louis , Saint Louis , Missouri 63130 , United States.

出版信息

J Phys Chem B. 2018 Apr 12;122(14):3734-3743. doi: 10.1021/acs.jpcb.7b11763. Epub 2018 Apr 3.

Abstract

We report high-resolution (low-temperature) absorption, emission, and nonresonant/resonant hole-burned (HB) spectra and results of excitonic calculations using a non-Markovian reduced density matrix theory (with an improved algorithm for parameter optimization in heterogeneous samples) obtained for the Y16F mutant of the Fenna-Matthews-Olson (FMO) trimer from the green sulfur bacterium Chlorobium tepidum. We show that the Y16F mutant is a mixture of FMO complexes with three independent low-energy traps (located near 817, 821, and 826 nm), in agreement with measured composite emission and HB spectra. Two of these traps belong to mutated FMO subpopulations characterized by significantly modified low-energy excitonic states. Hamiltonians for the two major subpopulations (Sub and Sub) provide new insight into extensive changes induced by the single-point mutation in the vicinity of BChl 3 (where tyrosine Y16 was replaced with phenylalanine F16). The average decay time(s) from the higher exciton state(s) in the Y16F mutant depends on frequency and occurs on a picosecond time scale.

摘要

我们报告了高分辨率(低温)吸收、发射和非共振/共振空穴烧蚀(HB)光谱,以及使用非马尔可夫约化密度矩阵理论(具有改进的异质样品参数优化算法)获得的绿硫细菌 Fenna-Matthews-Olson(FMO)三聚体 Y16F 突变体的激子计算结果。我们表明,Y16F 突变体是具有三个独立低能陷阱(位于 817、821 和 826nm 附近)的 FMO 复合物的混合物,这与测量的复合发射和 HB 光谱一致。其中两个陷阱属于突变 FMO 亚群,其特征是低能激子态发生了显著修饰。两个主要亚群(Sub 和 Sub)的哈密顿量提供了对 BChl 3 附近单点突变(其中酪氨酸 Y16 被苯丙氨酸 F16 取代)引起的广泛变化的新见解。Y16F 突变体中来自较高激子态的平均衰减时间(s)取决于频率,并在皮秒时间尺度上发生。

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