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类胡萝卜素到(细菌)叶绿素能量转移在 Rba. sphaeroides 的 LH2 天线复合物中与非天然(细菌)叶绿素重组。

Carotenoid-to-(bacterio)chlorophyll energy transfer in LH2 antenna complexes from Rba. sphaeroides reconstituted with non-native (bacterio)chlorophylls.

机构信息

Center for Solar Energy and Energy Storage, Washington University, St. Louis, MO, 63130, USA.

Department of Energy, Environmental & Chemical Engineering, Washington University, St. Louis, MO, 63130, USA.

出版信息

Photosynth Res. 2020 May;144(2):155-169. doi: 10.1007/s11120-019-00661-6. Epub 2019 Jul 26.

Abstract

Six variants of the LH2 antenna complex from Rba. sphaeroides, comprising the native B800-B850, B800-free LH2 (B850) and four LH2s with various (bacterio)chlorophylls reconstituted into the B800 site, have been investigated with static and time-resolved optical spectroscopies at room temperature and at 77 K. The study particularly focused on how reconstitution of a non-native (bacterio)chlorophylls affects excitation energy transfer between the naturally bound carotenoid spheroidene and artificially substituted pigments in the B800 site. Results demonstrate there is no apparent trend in the overall energy transfer rate from spheroidene to B850 bacteriochlorophyll a; however, a trend in energy transfer rate from the spheroidene S state to Q of the B800 (bacterio)chlorophylls is noticeable. These outcomes were applied to test the validity of previously proposed energy values of the spheroidene S state, supporting a value in the vicinity of 13,400 cm (746 nm).

摘要

六种来自 Rba. sphaeroides 的 LH2 天线复合物变体,包括天然的 B800-B850、无 B800 的 LH2(B850)以及四种在 B800 位用各种(细菌)叶绿素重构的 LH2,已经在室温下和 77 K 下通过静态和时间分辨光学光谱进行了研究。该研究特别关注了非天然(细菌)叶绿素的重组如何影响天然结合的类胡萝卜素球形烯和人工取代色素之间在 B800 位的激发能量转移。结果表明,从球形烯到 B850 细菌叶绿素 a 的整体能量转移率没有明显的趋势;然而,从球形烯 S 态到 B800(细菌)叶绿素 Q 的能量转移率趋势是明显的。这些结果被应用于测试先前提出的球形烯 S 态能量值的有效性,支持了接近 13400 cm-1(746nm)的能量值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ec8/7203092/8c7e18134519/11120_2019_661_Fig1_HTML.jpg

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