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Identification of the mobile light-harvesting complex II polypeptides for state transitions in Chlamydomonas reinhardtii

机译:鉴定莱茵衣藻中用于状态转换的可移动采光复合物II多肽

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摘要

State transition in photosynthesis is a short-term balancing mechanism of energy distribution between photosystem I (PSI) and photosystem II (PSII). When PSII is preferentially excited (state 2), a pool of mobile light-harvesting complex II (LHCII) antenna proteins is thought to migrate from PSII to PSI, but biochemical evidence for a physical association between LHCII proteins and PSI in state 2 is weak. Here, using the green alga Chlamydomonas reinhardtii, which has a high capacity for state transitions, we report the isolation of PSI-light-harvesting complex I (LHCI) super-complexes from cells locked into state 1 and state 2. We solubilized the thylakoid membranes with a mild detergent, separated the proteins by sucrose density gradient centrifugation, and subjected gradient fractions to gel-filtration chromatography. Three LHCII polypeptides were associated with a PSI-LHCI supercomplex only in state 2; we identified them as two minor monomeric LHCII proteins (CP26 and CP29) and one previously unreported major LHCII protein type II, or LhcbM5. These three LHCII proteins, in addition to the major trimeric LHCII proteins, were phosphorylated upon transition to state 2. The corresponding phylogenetic tree indicates that among the LHCII proteins associated with PSII, these three LHCII proteins are the most similar to the LHC proteins for PSI (LHCI). Our results are important because CP26, CP29, and LhcbM5, which have been viewed as belonging solely to the PSII complex, are now postulated to shuttle between PSI and PSII during state transitions, thereby acting as docking sites for the trimeric LHCII proteins in both PSI and PSII.
机译:光合作用中的状态转换是光系统I(PSI)和光系统II(PSII)之间能量分配的一种短期平衡机制。当PSII被优先激发时(状态2),移动光捕获复合体II(LHCII)天线蛋白池被认为从PSII迁移到PSI,但是在状态2中LHCII蛋白与PSI之间存在物理关联的生物化学证据很少。在这里,我们使用具有高状态转换能力的绿藻衣藻(Chlamydomonas reinhardtii),报告了将PSI光捕获复合物I(LHCI)超级复合物与锁定在状态1和状态2中的细胞分离的结果。我们溶解了类囊体膜用温和的去污剂,通过蔗糖密度梯度离心分离蛋白质,然后对梯度馏分进行凝胶过滤层析。仅在状态2中,三个LHCII多肽与PSI-LHCI超复合物相关;我们将它们鉴定为两种较小的单体LHCII蛋白(CP26和CP29)和一种以前未报告的II型主要LHCII蛋白,即LhcbM5。除主要的三聚体LHCII蛋白外,这三种LHCII蛋白在转变为状态2时也被磷酸化。相应的系统树表明,在与PSII相关的LHCII蛋白中,这三种LHCII蛋白与PSI的LHC蛋白最相似(LHCI)。我们的结果很重要,因为据认为CP26,CP29和LhcbM5仅属于PSII复合物,现在假定它们在状态转换期间在PSI和PSII之间穿梭,从而在两个PSI中充当三聚体LHCII蛋白的停靠位点和PSII。

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