首页> 外文期刊>The Plant Cell >Light-harvesting complex protein LHCBM9 is critical for photosystem II activity and hydrogen production in Chlamydomonas reinhardtii.
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Light-harvesting complex protein LHCBM9 is critical for photosystem II activity and hydrogen production in Chlamydomonas reinhardtii.

机译:捕光复合蛋白LHCBM9对于莱茵衣藻的光系统II活性和产氢至关重要。

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摘要

Photosynthetic organisms developed multiple strategies for balancing light-harvesting versus intracellular energy utilization to survive ever-changing environmental conditions. The light-harvesting complex (LHC) protein family is of paramount importance for this function and can form light-harvesting pigment protein complexes. In this work, we describe detailed analyses of the photosystem II (PSII) LHC protein LHCBM9 of the microalga Chlamydomonas reinhardtii in terms of expression kinetics, localization, and function. In contrast to most LHC members described before, LHCBM9 expression was determined to be very low during standard cell cultivation but strongly increased as a response to specific stress conditions, e.g., when nutrient availability was limited. LHCBM9 was localized as part of PSII supercomplexes but was not found in association with photosystem I complexes. Knockdown cell lines with 50 to 70% reduced amounts of LHCBM9 showed reduced photosynthetic activity upon illumination and severe perturbation of hydrogen production activity. Functional analysis, performed on isolated PSII supercomplexes and recombinant LHCBM9 proteins, demonstrated that presence of LHCBM9 resulted in faster chlorophyll fluorescence decay and reduced production of singlet oxygen, indicating upgraded photoprotection. We conclude that LHCBM9 has a special role within the family of LHCII proteins and serves an important protective function during stress conditions by promoting efficient light energy dissipation and stabilizing PSII supercomplexes.
机译:光合生物开发了多种策略来平衡采光与细胞内能量利用,以适应不断变化的环境条件。采光复合物(LHC)蛋白家族对于此功能至关重要,并且可以形成采光色素蛋白复合物。在这项工作中,我们从表达动力学,定位和功能的角度描述了微藻莱茵衣藻的光系统II(PSII)LHC蛋白LHCBM9的详细分析。与之前描述的大多数LHC成员相反,LHCBM9的表达在标准细胞培养过程中被确定为非常低,但随着对特定胁迫条件的响应(例如当养分利用率有限时)强烈增加。 LHCBM9被定位为PSII超复合物的一部分,但未发现与光系统I复合物相关。 LHCBM9含量降低50%至70%的敲低细胞系在光照下会降低光合活性,并严重干扰制氢活性。对分离的PSII超复合物和重组LHCBM9蛋白进行的功能分析表明,LHCBM9的存在导致叶绿素荧光衰减更快,单线态氧生成减少,表明光保护得到了增强。我们得出的结论是,LHCBM9在LHCII蛋白家族中具有特殊作用,并在应激条件下通过促进有效的光能耗散和稳定PSII超复合物发挥重要的保护作用。

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