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菠菜基粒类囊体膜中细胞色素b6f和光系统II复合物的纳米结构域

Nanodomains of cytochrome b6f and photosystem II complexes in spinach grana thylakoid membranes.

作者信息

Johnson Matthew P, Vasilev Cvetelin, Olsen John D, Hunter C Neil

机构信息

Department of Molecular Biology and Biotechnology, University of Sheffield, Sheffield S10 2TN, United Kingdom

Department of Molecular Biology and Biotechnology, University of Sheffield, Sheffield S10 2TN, United Kingdom.

出版信息

Plant Cell. 2014 Jul;26(7):3051-61. doi: 10.1105/tpc.114.127233. Epub 2014 Jul 17.

Abstract

The cytochrome b6f (cytb6f) complex plays a central role in photosynthesis, coupling electron transport between photosystem II (PSII) and photosystem I to the generation of a transmembrane proton gradient used for the biosynthesis of ATP. Photosynthesis relies on rapid shuttling of electrons by plastoquinone (PQ) molecules between PSII and cytb6f complexes in the lipid phase of the thylakoid membrane. Thus, the relative membrane location of these complexes is crucial, yet remains unknown. Here, we exploit the selective binding of the electron transfer protein plastocyanin (Pc) to the lumenal membrane surface of the cytb6f complex using a Pc-functionalized atomic force microscope (AFM) probe to identify the position of cytb6f complexes in grana thylakoid membranes from spinach (Spinacia oleracea). This affinity-mapping AFM method directly correlates membrane surface topography with Pc-cytb6f interactions, allowing us to construct a map of the grana thylakoid membrane that reveals nanodomains of colocalized PSII and cytb6f complexes. We suggest that the close proximity between PSII and cytb6f complexes integrates solar energy conversion and electron transfer by fostering short-range diffusion of PQ in the protein-crowded thylakoid membrane, thereby optimizing photosynthetic efficiency.

摘要

细胞色素b6f(cytb6f)复合体在光合作用中起着核心作用,它将光系统II(PSII)和光系统I之间的电子传递与用于ATP生物合成的跨膜质子梯度的产生相耦合。光合作用依赖于质体醌(PQ)分子在类囊体膜脂质相中在PSII和cytb6f复合体之间快速穿梭电子。因此,这些复合体的相对膜位置至关重要,但仍不清楚。在这里,我们利用电子传递蛋白质体蓝素(Pc)与cytb6f复合体的腔面膜表面的选择性结合,使用功能化Pc的原子力显微镜(AFM)探针来确定菠菜(Spinacia oleracea)基粒类囊体膜中cytb6f复合体的位置。这种亲和映射AFM方法直接将膜表面形貌与Pc-cytb6f相互作用相关联,使我们能够构建基粒类囊体膜图谱,揭示共定位的PSII和cytb6f复合体的纳米结构域。我们认为,PSII和cytb6f复合体之间的紧密接近通过促进PQ在蛋白质密集的类囊体膜中的短程扩散来整合太阳能转化和电子传递,从而优化光合效率。

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