Sequential energy transfer driven by monoexponential dynamics in a biohybrid light-harvesting complex 2 (LH2)

被引:0
作者
Yusuke Yoneda
Daiji Kato
Masaharu Kondo
Kenji V. P. Nagashima
Hiroshi Miyasaka
Yutaka Nagasawa
Takehisa Dewa
机构
[1] Osaka University,Graduate School of Engineering Science
[2] Nagoya Institute of Technology,Department of Life Science and Applied Chemistry, Graduate School of Engineering
[3] Kanagawa University,Research Institute for Integrated Science
[4] Ritsumeikan University,Department of Applied Chemistry, College of Life Sciences
来源
Photosynthesis Research | 2020年 / 143卷
关键词
Biohybrid antenna; Light-harvesting complex 2 (LH2); Sequential energy transfer; Monoexponential dynamics; Lipid bilayer; Femtosecond transient absorption spectroscopy;
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学科分类号
摘要
Enhancing the light-harvesting potential of antenna components in a system of solar energy conversion is an important topic in the field of artificial photosynthesis. We constructed a biohybrid light-harvesting complex 2 (LH2) engineered from Rhodobacter sphaeroides IL106 strain. An artificial fluorophore Alexa Fluor 647 maleimide (A647) was attached to the LH2 bearing cysteine residue at the N-terminal region (LH2-NC) near B800 bacteriochlorophyll a (BChl) assembly. The A647-attached LH2-NC conjugate (LH2-NC-A647) preserved the integrity of the intrinsic chromophores, B800- and B850-BChls, and carotenoids. Femtosecond transient absorption spectroscopy revealed that the sequential energy transfer A647 → B800 → B850 occurs at time scale of 9–10 ps with monoexponential dynamics in micellar and lipid bilayer systems. A B800-removed conjugate (LH2-NC[B800(−)]-A647) exhibited a significant decrease in energy transfer efficiency in the micellar system; however, surprisingly, direct energy transfer from A647 to B850 was observed at a rate comparable to that for LH2-NC-A647. This result implies that the energy transfer pathway is modified after B800 removal. The results obtained suggested that a LH2 complex is a potential platform for construction of biohybrid light-harvesting materials with simple energy transfer dynamics through the site-selective attachment of the external antennae and the modifiable energy-funnelling pathway.
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页码:115 / 128
页数:13
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