Structural and spectroscopic insights into fucoxanthin chlorophyll a/c-binding proteins of diatoms in diverse oligomeric states.

IF 9.4 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Communications Pub Date : 2024-11-11 Epub Date: 2024-07-18 DOI:10.1016/j.xplc.2024.101041
Cuicui Zhou, Yue Feng, Zhenhua Li, Lili Shen, Xiaoyi Li, Yumei Wang, Guangye Han, Tingyun Kuang, Cheng Liu, Jian-Ren Shen, Wenda Wang
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Abstract

Diatoms, a group of prevalent marine algae, contribute significantly to global primary productivity. Their substantial biomass is linked to enhanced absorption of blue-green light underwater, facilitated by fucoxanthin chlorophyll (Chl) a/c-binding proteins (FCPs), which exhibit oligomeric diversity across diatom species. Using mild clear native PAGE analysis of solubilized thylakoid membranes, we displayed monomeric, dimeric, trimeric, tetrameric, and pentameric FCPs in diatoms. Mass spectrometry analysis revealed that each oligomeric FCP has a specific protein composition, and together they constitute a large Lhcf family of FCP antennas. In addition, we resolved the structures of the Thalassiosira pseudonana FCP (Tp-FCP) homotrimer and the Chaetoceros gracilis FCP (Cg-FCP) pentamer by cryoelectron microscopy at 2.73-Å and 2.65-Å resolution, respectively. The distinct pigment compositions and organizations of various oligomeric FCPs affect their blue-green light-harvesting, excitation energy transfer pathways. Compared with dimeric and trimeric FCPs, the Cg-FCP tetramer and Cg-FCP pentamer exhibit stronger absorption by Chl c, redshifted and broader Chl a fluorescence emission, and more robust circular dichroism signals originating from Chl a-carotenoid dimers. These spectroscopic characteristics indicate that Chl a molecules in the Cg-FCP tetramer and Cg-FCP pentamer are more heterogeneous than in both dimers and the Tp-FCP trimer. The structural and spectroscopic insights provided by this study contribute to a better understanding of the mechanisms that empower diatoms to adapt to fluctuating light environments.

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硅藻中不同寡聚状态的叶绿素 a/c 结合蛋白的结构和光谱学研究。
硅藻是一类普遍存在的海洋藻类,对全球初级生产力做出了重大贡献。硅藻的大量生物量与它们对水下蓝绿光的吸收能力增强有关,而叶绿素 a/c 结合蛋白(FCPs)则促进了对蓝绿光的吸收。通过对溶解的类叶绿体膜进行温和的 CN-PAGE 分析,我们在硅藻中发现了单体、二聚体、三聚体、四聚体和五聚体 FCPs。质谱分析表明,每种寡聚 FCP 都有特定的蛋白质组成,构成了一个庞大的 FCP 天线 Lhcf 家族。此外,我们还通过冷冻电镜分别以2.73埃和2.65埃的分辨率解析了Thalassiosira pseudonana FCP(Tp-FCP)同源三聚体和Chaetoceros gracilis FCP(Cg-FCP)五聚体的结构。各种低聚物 FCP 中不同的色素组成和组织改变了它们的蓝绿光收集和激发能量转移途径。与二聚体和三聚体 FCP 相比,Cg-FCP 四聚体和 Cg-FCP 五聚体表现出更强的 Chls c 吸收、红移和更宽的 Chl a 荧光发射,以及源自 Chl a 类胡萝卜素二聚体的更强的圆二色性信号。这些光谱特征表明,与二聚体和 Tp-FCP 三聚体相比,Cg-FCP 四聚体和 Cg-FCP 五聚体中的 Chl a 分子更具异质性。本研究提供的结构和光谱学见解有助于更好地理解硅藻适应波动光环境的机制。
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来源期刊
Plant Communications
Plant Communications Agricultural and Biological Sciences-Plant Science
CiteScore
15.70
自引率
5.70%
发文量
105
审稿时长
6 weeks
期刊介绍: Plant Communications is an open access publishing platform that supports the global plant science community. It publishes original research, review articles, technical advances, and research resources in various areas of plant sciences. The scope of topics includes evolution, ecology, physiology, biochemistry, development, reproduction, metabolism, molecular and cellular biology, genetics, genomics, environmental interactions, biotechnology, breeding of higher and lower plants, and their interactions with other organisms. The goal of Plant Communications is to provide a high-quality platform for the dissemination of plant science research.
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