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类胡萝卜素和叶绿素之间的能量转移产率在多甲藻叶绿素蛋白中是稳定的,不受突变影响。

The Energy Transfer Yield between Carotenoids and Chlorophylls in Peridinin Chlorophyll Protein Is Robust against Mutations.

机构信息

Department of Chemical Sciences, University of Padova, Via F. Marzolo 1, 35131 Padova, Italy.

Faculty of Biology and Biotechnology, Ruhr-University Bochum, D-44780 Bochum, Germany.

出版信息

Int J Mol Sci. 2022 May 3;23(9):5067. doi: 10.3390/ijms23095067.

Abstract

The energy transfer (ET) from carotenoids (Cars) to chlorophylls (Chls) in photosynthetic complexes occurs with almost unitary efficiency thanks to the synergistic action of multiple finely tuned channels whose photophysics and dynamics are not fully elucidated yet. We investigated the energy flow from the Car peridinin (Per) to Chl in the peridinin chlorophyll protein (PCP) from marine algae by using two-dimensional electronic spectroscopy (2DES) with a 10 fs temporal resolution. Recently debated hypotheses regarding the S-to-S relaxation of the Car via a conical intersection and the involvement of possible intermediate states in the ET were examined. The comparison with an N89L mutant carrying the Per donor in a lower-polarity environment helped us unveil relevant details on the mechanisms through which excitation was transferred: the ET yield was conserved even when a mutation perturbed the optimization of the system thanks to the coexistence of multiple channels exploited during the process.

摘要

得益于多个精细调节通道的协同作用,类胡萝卜素(Cars)向光合作用复合物中的叶绿素(Chls)的能量转移(ET)几乎具有单位效率,但其光物理和动力学尚未完全阐明。我们通过使用具有 10 fs 时间分辨率的二维电子光谱(2DES),研究了海洋藻类中 的 多甲藻叶绿素蛋白(PCP)中从类胡萝卜素 原藻紫素(Per)到 Chl 的能量流动。最近关于 Car 通过锥形交叉进行 S 到 S 弛豫的假设以及可能的中间状态在 ET 中的参与的假设进行了检验。与在较低极性环境中携带 Per 供体的 N89L 突变体进行比较,有助于我们揭示激发转移机制的相关细节:即使突变体通过过程中利用的多个通道的共存来破坏系统的优化,ET 产率也得以保持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bd8/9099807/207a8592cf81/ijms-23-05067-g001.jpg

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