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The Photosystem II Light-Harvesting Protein Lhcb3 Affects the Macrostructure of Photosystem II and the Rate of State Transitions in Arabidopsis

机译:光系统II光捕获蛋白Lhcb3影响光系统II的宏观结构和拟南芥中的状态转换速率。

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摘要

The main trimeric light-harvesting complex of higher plants (LHCII) consists of three different Lhcb proteins (Lhcb1-3). We show that Arabidopsis thaliana T-DNA knockout plants lacking Lhcb3 (koLhcb3) compensate for the lack of Lhcb3 by producing increased amounts of Lhcb1 and Lhcb2. As in wild-type plants, LHCII-photosystem II (PSII) supercomplexes were present in Lhcb3 knockout plants (koLhcb3), and preservation of the LHCII trimers (M trimers) indicates that the Lhcb3 in M trimers has been replaced by Lhcb1 and/or Lhcb2. However, the rotational position of the M LHCII trimer was altered, suggesting that the Lhcb3 subunit affects the macrostructural arrangement of the LHCII antenna. The absence of Lhcb3 did not result in any significant alteration in PSII efficiency or qE type of nonphotochemical quenching, but the rate of transition from State 1 to State 2 was increased in koLhcb3, although the final extent of state transition was unchanged. The level of phosphorylation of LHCII was increased in the koLhcb3 plants compared with wild-type plants in both State 1 and State 2. The relative increase in phosphorylation upon transition from State 1 to State 2 was also significantly higher in koLhcb3. It is suggested that the main function of Lhcb3 is to modulate the rate of state transitions.
机译:高等植物的主要三聚体光采复合物(LHCII)由三种不同的Lhcb蛋白(Lhcb1-3)组成。我们显示缺少Lhcb3(koLhcb3)的拟南芥T-DNA敲除植物通过产生增加量的Lhcb1和Lhcb2来补偿Lhcb3的缺乏。与野生型植物一样,Lhcb3基因敲除植物(koLhcb3)中也存在LHCII-光系统II(PSII)超复合物,并且LHCII三聚体(M三聚体)的保存表明M三聚体中的Lhcb3已被Lhcb1和/或Lhcb2。但是,M LHCII三聚体的旋转位置已更改,表明Lhcb3亚基影响LHCII天线的宏观结构。 Lhcb3的缺失不会导致PSII效率或qE型非光化学猝灭的任何显着变化,但koLhcb3中从状态1到状态2的转变速率增加了,尽管状态转变的最终程度没有改变。与州1和州2的野生型植物相比,koLhcb3植物中LHCII的磷酸化水平增加。koLhcb3中从状态1过渡到状态2时磷酸化的相对增加也显着更高。建议Lhcb3的主要功能是调节状态转换的速率。

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