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通过将各种合成发色团掺入脂质体来扩展植物和细菌光捕获色素-蛋白质复合物的光谱范围。

Enhancing the spectral range of plant and bacterial light-harvesting pigment-protein complexes with various synthetic chromophores incorporated into lipid vesicles.

作者信息

Hancock Ashley M, Swainsbury David J K, Meredith Sophie A, Morigaki Kenichi, Hunter C Neil, Adams Peter G

机构信息

School of Physics and Astronomy, University of Leeds, Leeds LS2 9JT, UK; Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds LS2 9JT, UK.

School of Biosciences, University of Sheffield, Sheffield S10 2TN, UK; School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, UK.

出版信息

J Photochem Photobiol B. 2022 Dec;237:112585. doi: 10.1016/j.jphotobiol.2022.112585. Epub 2022 Oct 15.

Abstract

The Light-Harvesting (LH) pigment-protein complexes found in photosynthetic organisms have the role of absorbing solar energy with high efficiency and transferring it to reaction centre complexes. LH complexes contain a suite of pigments that each absorb light at specific wavelengths, however, the natural combinations of pigments within any one protein complex do not cover the full range of solar radiation. Here, we provide an in-depth comparison of the relative effectiveness of five different organic "dye" molecules (Texas Red, ATTO, Cy7, DiI, DiR) for enhancing the absorption range of two different LH membrane protein complexes (the major LHCII from plants and LH2 from purple phototrophic bacteria). Proteoliposomes were self-assembled from defined mixtures of lipids, proteins and dye molecules and their optical properties were quantified by absorption and fluorescence spectroscopy. Both lipid-linked dyes and alternative lipophilic dyes were found to be effective excitation energy donors to LH protein complexes, without the need for direct chemical or generic modification of the proteins. The Förster theory parameters (e.g., spectral overlap) were compared between each donor-acceptor combination and found to be good predictors of an effective dye-protein combination. At the highest dye-to-protein ratios tested (over 20:1), the effective absorption strength integrated over the full spectral range was increased to ∼180% of its natural level for both LH complexes. Lipophilic dyes could be inserted into pre-formed membranes although their effectiveness was found to depend upon favourable physicochemical interactions. Finally, we demonstrated that these dyes can also be effective at increasing the spectral range of surface-supported models of photosynthetic membranes, using fluorescence microscopy. The results of this work provide insight into the utility of self-assembled lipid membranes and the great flexibility of LH complexes for interacting with different dyes.

摘要

光合生物中发现的光捕获(LH)色素 - 蛋白复合物具有高效吸收太阳能并将其传递至反应中心复合物的作用。LH复合物包含一组色素,每种色素在特定波长吸收光,然而,任一蛋白复合物中色素的天然组合并未覆盖太阳辐射的全光谱范围。在此,我们深入比较了五种不同有机“染料”分子(德克萨斯红、ATTO、Cy7、DiI、DiR)增强两种不同LH膜蛋白复合物(植物中的主要LHCII和紫色光合细菌中的LH2)吸收范围的相对有效性。蛋白脂质体由脂质、蛋白质和染料分子的特定混合物自组装而成,其光学性质通过吸收光谱和荧光光谱进行定量。脂质连接染料和替代亲脂性染料均被发现是LH蛋白复合物有效的激发能量供体,无需对蛋白质进行直接化学或一般修饰。比较了每种供体 - 受体组合之间的福斯特理论参数(例如光谱重叠),发现它们是有效染料 - 蛋白组合的良好预测指标。在测试的最高染料与蛋白质比例(超过20:1)下,两种LH复合物在整个光谱范围内积分的有效吸收强度增加至其天然水平的约180%。亲脂性染料可插入预先形成的膜中,尽管发现其有效性取决于有利的物理化学相互作用。最后,我们使用荧光显微镜证明,这些染料在增加光合膜表面支持模型的光谱范围方面也有效。这项工作的结果为自组装脂质膜的效用以及LH复合物与不同染料相互作用的极大灵活性提供了见解。

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