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在过量光照下,从硅藻三角褐指藻中分离出的岩藻黄质叶绿素a/c结合蛋白中激发能猝灭的增强。

Enhancement of excitation-energy quenching in fucoxanthin chlorophyll a/c-binding proteins isolated from a diatom Phaeodactylum tricornutum upon excess-light illumination.

作者信息

Nagao Ryo, Yokono Makio, Ueno Yoshifumi, Suzuki Takehiro, Kumazawa Minoru, Kato Ka-Ho, Tsuboshita Naoki, Dohmae Naoshi, Ifuku Kentaro, Shen Jian-Ren, Akimoto Seiji

机构信息

Research Institute for Interdisciplinary Science and Graduate School of Natural Science and Technology, Okayama University, Okayama 700-8530, Japan.

Institute of Low Temperature Science, Hokkaido University, Hokkaido 060-0819, Japan.

出版信息

Biochim Biophys Acta Bioenerg. 2021 Feb 1;1862(2):148350. doi: 10.1016/j.bbabio.2020.148350. Epub 2020 Dec 4.

DOI:10.1016/j.bbabio.2020.148350
PMID:33285102
Abstract

Photosynthetic organisms regulate pigment composition and molecular oligomerization of light-harvesting complexes in response to solar light intensities, in order to improve light-harvesting efficiency. Here we report excitation-energy dynamics and relaxation of fucoxanthin chlorophyll a/c-binding protein (FCP) complexes isolated from a diatom Phaeodactylum tricornutum grown under high-light (HL) illumination. Two types of FCP complexes were prepared from this diatom under the HL condition, whereas one FCP complex was isolated from the cells grown under a low-light (LL) condition. The subunit composition and oligomeric states of FCP complexes under the HL condition are different from those under the LL condition. Absorption and fluorescence spectra at 77 K of the FCP complexes also vary between the two conditions, indicating modifications of the pigment composition and arrangement upon the HL illumination. Time-resolved fluorescence curves at 77 K of the FCP complexes under the HL condition showed shorter lifetime components compared with the LL condition. Fluorescence decay-associated spectra at 77 K showed distinct excitation-energy-quenching components and alterations of energy-transfer pathways in the FCP complexes under the HL condition. These findings provide insights into molecular and functional mechanisms of the dynamic regulation of FCPs in this diatom under excess-light conditions.

摘要

光合生物会根据太阳光强度调节捕光复合物的色素组成和分子寡聚化,以提高捕光效率。在此,我们报告了从高光(HL)光照下生长的硅藻三角褐指藻中分离出的岩藻黄素叶绿素a/c结合蛋白(FCP)复合物的激发能动力学和弛豫情况。在HL条件下从这种硅藻制备了两种类型的FCP复合物,而从低光(LL)条件下生长的细胞中分离出了一种FCP复合物。HL条件下FCP复合物的亚基组成和寡聚状态与LL条件下的不同。两种条件下FCP复合物在77K时的吸收光谱和荧光光谱也有所不同,表明HL光照后色素组成和排列发生了改变。与LL条件相比,HL条件下FCP复合物在77K时的时间分辨荧光曲线显示出更短的寿命成分。77K时的荧光衰减相关光谱显示,HL条件下FCP复合物中存在明显的激发能猝灭成分以及能量转移途径的改变。这些发现为该硅藻在过量光照条件下FCP动态调节的分子和功能机制提供了见解。

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