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Distinct Functions for the Two PsbP-Like Proteins PPL1 and PPL2 in the Chloroplast Thylakoid Lumen of Arabidopsis

机译:拟南芥叶绿体类囊体腔中两个PsbP-like蛋白PPL1和PPL2的不同功能。

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摘要

PsbP, an extrinsic subunit of photosystem II (PSII), is a nuclear-encoded protein that optimizes the water-splitting reaction in vivo. In addition to PsbP, higher plants have two nuclear-encoded genes for PsbP homologs (PsbP-like proteins [PPLs]) that show significant sequence similarity to a cyanobacterial PsbP homolog (cyanoP); however, the function of PPLs in higher plants has not yet been elucidated. In this study, we characterized Arabidopsis (Arabidopsis thaliana) mutants lacking either of two PPLs, PPL1 and PPL2. Phylogenetic analysis suggests that PPL1 would be an ortholog of cyanoP, and PPL2 and PsbP may have a paralogous relationship with PPL1. Analysis on mRNA expression profiles showed that PPL1 expressed under stress conditions and PPL2 coexpressed with the subunits of chloroplast NAD(P)H dehydrogenase (NDH) complex. Consistent with these suggestions, PSII activity in a ppl1 mutant was more sensitive to high-intensity light than wild type, and the recovery of photoinhibited PSII activity was delayed in ppl1 plants. Therefore, PPL1 is required for efficient repair of photodamaged PSII. Furthermore, the stoichiometric level and activity of the chloroplast NDH complex in thylakoids were severely decreased in a ppl2 mutant, demonstrating that PPL2 is a novel thylakoid lumenal factor required for accumulation of the chloroplast NDH complex. These results suggest that during endosymbiosis and subsequent gene transfer to the host nucleus, cyanoP from ancient cyanobacteria evolved into PPL1, PPL2, and PsbP, and each of them has a distinct role in photosynthetic electron transfer in Arabidopsis.
机译:PsbP是光系统II(PSII)的外在亚基,是一种核编码蛋白,可优化体内的水分解反应。除PsbP外,高等植物还具有两个PsbP同源物(PsbP样蛋白[PPLs])的核编码基因,这些基因与蓝细菌PsbP同源物(cyanoP)具有显着的序列相似性。然而,尚未阐明PPL在高等植物中的功能。在这项研究中,我们表征了缺少两个PPL,PPL1和PPL2之一的拟南芥(Arabidopsis thaliana)突变体。系统发育分析表明,PPL1将是cyanoP的直系同源物,而PPL2和PsbP可能与PPL1具有旁系同源性。对mRNA表达谱的分析表明,在胁迫条件下表达的PPL1和PPL2与叶绿体NAD(P)H脱氢酶(NDH)复合物的亚基共表达。与这些建议一致,ppl1突变体中的PSII活性比野生型对高强度光更敏感,并且ppl1植物中光抑制PSII活性的恢复被延迟。因此,需要PPL1才能有效修复光损坏的PSII。此外,在ppl2突变体中,类囊体中叶绿体NDH复合物的化学计量水平和活性大大降低,表明PPL2是叶绿体NDH复合物蓄积所需的新型类囊体腔因子。这些结果表明,在共生过程和随后的基因转移到宿主核过程中,古代蓝细菌的cyanoP进化为PPL1,PPL2和PsbP,它们在拟南芥的光合电子转移中均具有独特的作用。

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