Key Laboratory of Biomacromolecules (CAS), National Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2024 Aug 9;15(1):6812. doi: 10.1038/s41467-024-51206-y.
Photosystem II (PSII) catalyzes the light-driven charge separation and water oxidation reactions of photosynthesis. Eukaryotic PSII core is usually associated with membrane-embedded light-harvesting antennae, which greatly increase the absorbance cross-section of the core. The peripheral antennae in different phototrophs vary considerably in protein composition and arrangement. Photosynthetic cryptophytes possess chlorophyll a/c binding proteins (CACs) that serve as their antennae. How these CACs assemble with the PSII core remains unclear. Here, we report the 2.57-Å resolution structure of cryptophyte PSII-CAC purified from cells at nitrogen-limited stationary growth phase. We show that each monomer of the PSII homodimer contains a core complex, six chlorophyll a/c binding proteins (CACs) and a previously unseen chlorophyll-binding protein (termed CAL-II). Six CACs are arranged as a double-layered arc-shaped non-parallel belt, and two such belts attach to the dimeric core from opposite sides. The CAL-II simultaneously interacts with a number of core subunits and five CACs. The distinct organization of CACs and the presence of CAL-II may play a critical role in stabilizing the dimeric PSII-CAC complex under stress conditions. Our study provides mechanistic insights into the assembly and function of the PSII-CAC complex as well as the possible adaptation of cryptophytes in response to environmental stresses.
光系统 II(PSII)催化光合作用中的光驱动电荷分离和水氧化反应。真核 PSII 核心通常与膜嵌入的光捕获天线相关联,这大大增加了核心的吸收截面。不同光养生物的外围天线在蛋白质组成和排列上有很大的差异。光合隐藻具有叶绿素 a/c 结合蛋白(CACs),作为它们的天线。这些 CACs 如何与 PSII 核心组装仍然不清楚。在这里,我们报道了从氮限制静止生长阶段的细胞中纯化的隐藻 PSII-CAC 的 2.57 Å 分辨率结构。我们表明,PSII 同源二聚体的每个单体都包含一个核心复合物、六个叶绿素 a/c 结合蛋白(CACs)和一个以前未见的叶绿素结合蛋白(称为 CAL-II)。六个 CAC 排列成双层弧形非平行带,并且两个这样的带从相对侧附接到二聚体核心上。CAL-II 同时与许多核心亚基和五个 CAC 相互作用。CAC 的独特组织和 CAL-II 的存在可能在应激条件下稳定二聚体 PSII-CAC 复合物中发挥关键作用。我们的研究为 PSII-CAC 复合物的组装和功能以及隐藻对环境应激的可能适应提供了机制上的见解。