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Assembly mechanism and energy transfer pathways of plant photosystem II-LHCII supercomplexes discovered through cryo-electron microscopy
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《Science Foundation in China》 CAS 2017年第4期28-,共1页
Funded by the National Natural Science Foundation of China,Chinese Ministry of Science and Technology,and Chinese Academy of Sciences,ajoint team of three laboratories from the Institute of Biophysics of Chinese Acade... Funded by the National Natural Science Foundation of China,Chinese Ministry of Science and Technology,and Chinese Academy of Sciences,ajoint team of three laboratories from the Institute of Biophysics of Chinese Academy of Sciences,namely Liu Zhenfeng’s(柳振峰),Zhang 展开更多
关键词 Assembly mechanism and energy transfer pathways of plant photosystem ii-lhcii supercomplexes discovered through cryo-electron microscopy
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PSⅡ-LHCⅡ超分子复合物的结构与功能
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作者 周峰 陈全战 +1 位作者 周泉澄 张边江 《北方园艺》 CAS 北大核心 2012年第18期142-144,共3页
PSⅡ-LHCⅡ超分子复合物是构成PSⅡ颗粒的基本单元,由PSⅡ核心复合物和LHCⅡ复合物构成。现介绍了超分子复合物的组装,PSⅡ核心复合物和LHCⅡ复合物的结构与功能,以及大量LHCⅡ和微量LHCⅡ在超分子复合物组装中的作用。
关键词 超分子复合物 光系统Ⅱ 捕光色素蛋白复合物Ⅱ
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Regulation of Reversible Dissociation of LHCII from PSII by Phosphorylation in Plants 被引量:8
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作者 Zhenhai Cui Yanpeng Wang +1 位作者 Ao Zhang Lijun Zhang 《American Journal of Plant Sciences》 2014年第2期241-249,共9页
LHCII is a crucial light-harvesting pigment/protein complex in photosystem II (PSII) supercomplex. It also participates in the light energy redistribution between photosystems and in the photoprotection via its revers... LHCII is a crucial light-harvesting pigment/protein complex in photosystem II (PSII) supercomplex. It also participates in the light energy redistribution between photosystems and in the photoprotection via its reversible dissociation with PSII and PSI (photosystem I). This reversible detachment of LHCII is regulated by phosphorylation of its own and PSII core protein. Under low light conditions, LHCII is phosphorylated and dissociated with PSII core protein complex and combined with PSI, which balances the excitation energy between PSII and PSI;Under high light environment, the phosphorylation of PSII core proteins makes LHCII detach from PSII. The dissociated LHCII presents in a free state, which involves in the thermal dissipation of excess excitation energy. During photodamage, dual phosphorylations of both PSII core proteins and LHCII complexes occur. The phosphorylation of D1 is conductive to the disintegration of photodamaged PSII and the cycle of repair. In this circumstance, the phosphorylation of LHCII is induced by reactive oxygen species (ROS) and then the phosphorylated LHCII migrates to PSI, into the repair cycle of damaged PSII. The ferredoxin (Fdr) and thioredoxin (Tdr) system may play a possible central role in the phosphorylation regulation on LHCII dissociation. 展开更多
关键词 LIGHT-HARVESTING Complex II (LHCII) PHOSPHORYLATION PHOTOSYSTEMS PHOTOINHIBITION FERREDOXIN and Thioredoxin System
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植物光合作用中的捕光调节 被引量:5
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作者 许大全 陈根云 《植物生理学报》 CAS CSCD 北大核心 2016年第11期1649-1662,共14页
在光波动的自然界中,植物已经发展出一系列捕光调节策略,以确保在弱光下实现光能利用最大化,而在强光下又避免光破坏。这些策略至少包括快响应(在几分钟内完成),如叶片运动、叶绿体运动与状态转换,以及慢适应(在几小时或几天内发生),如... 在光波动的自然界中,植物已经发展出一系列捕光调节策略,以确保在弱光下实现光能利用最大化,而在强光下又避免光破坏。这些策略至少包括快响应(在几分钟内完成),如叶片运动、叶绿体运动与状态转换,以及慢适应(在几小时或几天内发生),如捕光天线蛋白丰度变化(天线大小的慢变化)与分子组成的改变。本综述从快响应到慢适应逐一讨论这些策略,特别是根据作者研究组的研究及有关新进展讨论天线大小的快变化,即光系统II一些捕光复合体(LHCIIs)从核心复合体的可逆脱离。 展开更多
关键词 叶绿体运动 叶片运动 光系统II LHCII 反馈去激发 可逆脱离
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