Hellmich Julia, Bommer Martin, Burkhardt Anja, Ibrahim Mohamed, Kern Jan, Meents Alke, Müh Frank, Dobbek Holger, Zouni Athina
Institut für Biologie, Humboldt-Universität zu Berlin, Unter den Linden 6, 10095 Berlin, Germany.
Institut für Biologie, Humboldt-Universität zu Berlin, Unter den Linden 6, 10095 Berlin, Germany.
Structure. 2014 Nov 4;22(11):1607-15. doi: 10.1016/j.str.2014.09.007. Epub 2014 Oct 30.
Photosystem II (PSII) catalyzes a key step in photosynthesis, the oxidation of water to oxygen. Excellent structural models exist for the dimeric PSII core complex of cyanobacteria, but higher order physiological assemblies readily dissociate when solubilized from the native thylakoid membrane with detergent. Here, we describe the crystallization of PSII from Thermosynechococcus elongatus with a postcrystallization treatment involving extraction of the detergent C12E8. This resulted in a transition from Type II to Type I-like membrane protein crystals and improved diffraction to 2.44 Å resolution. The obtained PSII packing in precise rows, interconnected by specific pairs of galactolipids and a loop in the PsbO subunit specific to cyanobacteria, is superimposable with previous electron microscopy images of the thylakoid membrane. The study provides a detailed model of such a superstructure and its organization of light-harvesting pigments with possible implications for the understanding of their efficient use of solar energy.
光系统II(PSII)催化光合作用中的关键步骤,即将水氧化为氧气。对于蓝细菌的二聚体PSII核心复合物,已经存在出色的结构模型,但当用去污剂从天然类囊体膜中溶解时,高阶生理组装体很容易解离。在此,我们描述了来自嗜热栖热放线菌的PSII的结晶过程,以及一种结晶后处理方法,该方法涉及提取去污剂C12E8。这导致了从II型到I型样膜蛋白晶体的转变,并将衍射分辨率提高到2.44 Å。所获得的PSII以精确的行排列,由特定的半乳糖脂对和蓝细菌特有的PsbO亚基中的一个环相互连接,与先前类囊体膜的电子显微镜图像重叠。该研究提供了这样一种超结构及其光捕获色素组织的详细模型,可能对理解它们对太阳能的有效利用具有启示意义。