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Biochemical characterization of photosystem I-associated light-harvesting complexes I and II isolated from state 2 cells of Chlamydomonas reinhardtii.

机译:从莱茵衣藻的状态2细胞分离的光系统I相关的光捕获复合物I和II的生化特性。

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摘要

Two photosystems, PSI and PSII, drive electron transfer in series for oxygenic photosynthesis using light energy. To balance the activity of the two photosystems under varying light conditions, mobile antenna complexes, light-harvesting complex IIs (LHCIIs), shuttle between the two photosystems during state transitions. PSI forms a complex consisting of PSI core and its peripheral light-harvesting complex (LHCI) in plants and algae. In a previous study, we isolated a PSI-LHCI-LHCII supercomplex containing both LHCI and LHCII from state 2 cells of Chlamydomonas reinhardtii. In the present study, we isolated a PSI-LHCI-LHCII supercomplex associating with more LHCII complexes under a further optimized protocol. We determined its antenna size by three independent methods and revealed that the associated LHCIIs increased the antenna size by about 70 Chls and transferred light energy to the PSI core. Uniform labeling of total cellular proteins with 14C indicated that the PSI-LHCI-LHCII supercomplex contains 1.85 copies of LhcbM5 and CP29 and 1.29 copies of CP26. PSI-LHCI-LHCII also stably bound 0.4 copy of ferredoxin-NADP + oxidoreductase (FNR) that catalyzes light-induced electron transfer from PSI to NADP + in the presence of ferredoxin. We discuss the possible organization of these LHCIIs in the PSI-LHCI-LHCII supercomplex.
机译:PSI和PSII这两个光系统驱动光电子串联进行氧的光合作用的电子转移。为了在变化的光照条件下平衡两个光系统的活动,移动天线复合体,光捕获复合体II(LHCII)在状态转换期间在两个光系统之间穿梭。 PSI在植物和藻类中形成由PSI核心及其外围光捕获复合物(LHCI)组成的复合物。在先前的研究中,我们从莱茵衣藻的状态2细胞中分离了同时包含LHCI和LHCII的PSI-LHCI-LHCII超复合物。在本研究中,我们在进一步优化的协议下分离了与更多LHCII复合物相关联的PSI-LHCI-LHCII超复合物。我们通过三种独立的方法确定了天线尺寸,并发现相关的LHCII使天线尺寸增加了约70 Chls,并将光能转移到PSI核心。总细胞蛋白用14C均匀标记表明PSI-LHCI-LHCII超复合物包含1.85拷贝的LhcbM5和CP29和1.29拷贝的CP26。 PSI-LHCI-LHCII还稳定地结合0.4拷贝的铁氧还蛋白-NADP +氧化还原酶(FNR),该酶在铁氧还蛋白存在下催化光诱导的电子从PSI转移到NADP +。我们讨论了在PSI-LHCI-LHCII超复合物中这些LHCII的可能组织。

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