四聚体
类囊体
随机六聚体
光系统II
二聚体
藻胆体
生物物理学
光抑制
化学
结晶学
光合作用
光化学
生物
叶绿体
生物化学
蓝藻
遗传学
有机化学
细菌
基因
酶
作者
Jianghao Wu,Cang Wu,Shuaijiabin Chen,Chao Huang,Quan Wen,Weijun Lin,Chao Wang,Dexian Han,Dandan Lu,Xiumei Xu,Jun Gao,Sen‐Fang Sui,Lixin Zhang
摘要
ABSTRACT Photosystem II (PSII) comprises reaction centers and light‐harvesting complexes of the major and minor antennas, forming diverse supercomplexes with varying antenna sizes and are organized as PSII arrays in grana thylakoids to respond to fluctuating light. However, the assembly mechanism of PSII arrays, excitation energy transfer and its regulation mechanisms in vascular plants remain poorly understood. Here, we report the cryo‐electron microscopy structures of a 1.4‐MDa PSII‐LHCII (light‐harvesting complex II) dimer and a 2.8‐MDa tetramer, and present an initial model of hexamer from Arabidopsis. Structural and genetic analyses reveals that the tetramer is formed by two C 2 S 2 M 2 dimers arranged side by side through interactions between CP26/PsbZ and moderate (M)‐LHCII within PSII arrays in the grana thylakoid. Furthermore, conformational changes of M‐LHCII and CP24 facilitate the assembly transition from dimer to tetramer/hexamer. Chlorophyll rearrangement, supported by computational calculations and spectral analysis, suggests enhanced energy transfer efficiency in the tetramer compared to the dimer. Therefore, our findings provide new insights into the dynamic assembly and excitation energy redistribution within PSII arrays in higher plants.
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