首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Novel Thylakoid Membrane GreenCut Protein CPLD38 Impacts Accumulation of the Cytochrome b6f Complex and Associated Regulatory Processes
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Novel Thylakoid Membrane GreenCut Protein CPLD38 Impacts Accumulation of the Cytochrome b6f Complex and Associated Regulatory Processes

机译:新型类囊体膜GreenCut蛋白CPLD38影响细胞色素b6f复合物和相关调控过程的积累。

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摘要

Based on previous comparative genomic analyses, a set of nearly 600 polypeptides was identified that is present in green algae and flowering and nonflowering plants but is not present (or is highly diverged) in nonphotosynthetic organisms. The gene encoding one of these “GreenCut” proteins, CPLD38, is in the same operon as ndhL in most cyanobacteria; the NdhL protein is part of a complex essential for cyanobacterial respiration. A cpld38 mutant of Chlamydomonas reinhardtii does not grow on minimal medium, is high light-sensitive under photoheterotrophic conditions, has lower accumulation of photosynthetic complexes, reduced photosynthetic electron flow to P700+, and reduced photochemical efficiency of photosystem II (ΦPSII); these phenotypes are rescued by a wild-type copy of CPLD38. Single turnover flash experiments and biochemical analyses demonstrated that cytochrome b6f function was severely compromised, and the levels of transcripts and polypeptide subunits of the cytochrome b6f complex were also significantly lower in the cpld38 mutant. Furthermore, subunits of the cytochrome b6f complex in mutant cells turned over much more rapidly than in wild-type cells. Interestingly, PTOX2 and NDA2, two major proteins involved in chlororespiration, were more than 5-fold higher in mutants relative to wild-type cells, suggesting a shift in the cpld38 mutant from photosynthesis toward chlororespiratory metabolism, which is supported by experiments that quantify the reduction state of the plastoquinone pool. Together, these findings support the hypothesis that CPLD38 impacts the stability of the cytochrome b6f complex and possibly plays a role in balancing redox inputs to the quinone pool from photosynthesis and chlororespiration.
机译:根据先前的比较基因组分析,鉴定出一组近600种多肽,它们存在于绿藻,开花植物和非开花植物中,但在非光合生物中不存在(或高度分散)。在大多数蓝细菌中,编码这些“ GreenCut”蛋白之一的基因CPLD38与ndhL在同一操纵子中。 NdhL蛋白是蓝藻呼吸必不可少的复合物的一部分。莱茵衣藻的cpld38突变体不能在基本培养基上生长,在光异养条件下对光敏感,对光合复合物的积累较低,向P700 + 的光合电子流减少,光系统的光化学效率降低II(ΦPSII);这些表型由CPLD38的野生型拷贝挽救。单次更新实验和生化分析表明,细胞色素b6f的功能受到严重损害,并且在cpld38突变体中,细胞色素b6f复合物的转录本和多肽亚基的水平也显着降低。此外,突变细胞中细胞色素b6f复合物的亚基比野生型细胞更快速地转移。有趣的是,与野生型细胞相比,参与氯呼吸作用的两种主要蛋白质PTOX2和NDA2的突变率要高出野生型细胞5倍以上,这表明cpld38突变体从光合作用转向了氯呼吸代谢,这一点得到了量化这些实验的支持。醌醌池的还原状态。总之,这些发现支持了CPLD38影响细胞色素b6f复合物稳定性的假设,并可能在平衡光合作用和氯呼吸作用向醌池的氧化还原输入中发挥作用。

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