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光合作用 II 复合物的结构揭示了其对环境胁迫的保护机制。

Structure of Photosystem II Reveals Protective Mechanisms against Environmental Stress.

机构信息

Department of Biochemistry and Molecular Biology, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Cells. 2023 Jul 31;12(15):1971. doi: 10.3390/cells12151971.

Abstract

Green alga is known for its ability to carry out photosynthesis under harsh conditions. Using cryogenic electron microscopy (cryoEM), we obtained a high-resolution structure of PSII at 2.72 Å. This structure revealed 64 subunits, which encompassed 386 chlorophylls, 86 carotenoids, four plastoquinones, and several structural lipids. At the luminal side of PSII, a unique subunit arrangement was observed to protect the oxygen-evolving complex. This arrangement involved PsbO (OEE1), PsbP (OEE2), PsbB, and PsbU (a homolog of plant OEE3). PsbU interacted with PsbO, PsbC, and PsbP, thereby stabilizing the shield of the oxygen-evolving complex. Significant changes were also observed at the stromal electron acceptor side. PsbY, identified as a transmembrane helix, was situated alongside PsbF and PsbE, which enclosed cytochrome . Supported by the adjacent C-terminal helix of Psb10, these four transmembrane helices formed a bundle that shielded cytochrome from the surrounding solvent. Moreover, the bulk of Psb10 formed a protective cap, which safeguarded the quinone site and likely contributed to the stacking of PSII complexes. Based on our findings, we propose a protective mechanism that prevents Q (plastoquinone B) from becoming fully reduced. This mechanism offers insights into the regulation of electron transfer within PSII.

摘要

绿藻以其在恶劣条件下进行光合作用的能力而闻名。我们使用低温电子显微镜(cryoEM)获得了 PSII 在 2.72 Å 的高分辨率结构。该结构揭示了 64 个亚基,其中包含 386 个叶绿素、86 个类胡萝卜素、4 个质体醌和几种结构脂质。在 PSII 的腔侧,观察到一种独特的亚基排列方式来保护放氧复合物。这种排列涉及 PsbO(OEE1)、PsbP(OEE2)、PsbB 和 PsbU(植物 OEE3 的同源物)。PsbU 与 PsbO、PsbC 和 PsbP 相互作用,从而稳定了放氧复合物的护盾。在基质电子受体侧也观察到了显著的变化。PsbY 被鉴定为跨膜螺旋,位于 PsbF 和 PsbE 旁边,它们包围着细胞色素 c 6 。由 Psb10 的相邻 C 端螺旋支撑,这四个跨膜螺旋形成了一个束,将细胞色素 c 6 与周围溶剂隔离开来。此外,Psb10 的大部分形成了一个保护性帽,保护醌结合位点,并可能有助于 PSII 复合物的堆叠。基于我们的发现,我们提出了一种保护机制,防止 Q(质体醌 B)完全还原。这种机制为 PSII 中电子转移的调节提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8101/10416949/903bf350b450/cells-12-01971-g001.jpg

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