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Efficient Operation of NAD(P)H Dehydrogenase Requires Supercomplex Formation with Photosystem I via Minor LHCI in Arabidopsis.

机译:NAD(P)H脱氢酶的有效操作需要通过拟南芥中的次要LHCI与光系统I形成超复合物。

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In higher plants, the chloroplast NAD(P)H dehydrogenase (NDH) complex mediates photosystem I (PSI) cyclic and chlororespiratory electron transport. We reported previously that NDH interacts with the PSI complex to form a super-complex (NDH-PSI). In this study, NDH18 and FKBP16-2 (FK506 Binding Protein 16-2), detected in the NDH-PSI super-complex by mass spectrometry, were shown to be NDH subunits by the analysis of their knockdown lines. On the basis of extensive mutant characterization, we propose a structural model for chloroplast NDH, whereby NDH is divided into four subcomplexes. The subcomplex A and membrane subcomplex are conserved in cyanobacteria, but the subcomplex B and lumen subcomplex are specific to chloroplasts. Two minor light-harvesting complex I proteins, Lhca5 and Lhca6, were required for the full-size NDH-PSI supercomplex formation. Similar to crr pgr5 double mutants that completely lack cyclic electron flow activity around PSI, the lhca6 pgr5 double mutant exhibited a severe defect in growth. Consistent with the impaired NDH activity, photosynthesis was also severely affected in mature leaves of lhca6 pgr5. We conclude that chloroplast NDH became equipped with the novel subcomplexes and became associated with PSI during the evolution of land plants, and this process may have facilitated the efficient operation of NDH.
机译:在高等植物中,叶绿体NAD(P)H脱氢酶(NDH)复合物介导光系统I(PSI)循环和氯呼吸电子的运输。我们之前曾报道过NDH与PSI复合物相互作用形成一个超级复合物(NDH-PSI)。在这项研究中,通过质谱分析在NDH-PSI超复合物中检测到的NDH18和FKBP16-2(FK506结合蛋白16-2)显示为NDH亚基。在广泛的突变体表征的基础上,我们提出了叶绿体NDH的结构模型,其中NDH被分为四个亚复合物。亚复合体A和膜亚复合体在蓝细菌中是保守的,但是亚复合体B和管腔亚复合体是叶绿体特有的。完整的NDH-PSI超复合物形成需要两个次要的轻捕获复合物I蛋白Lhca5和Lhca6。与完全缺少PSI周围的循环电子流活动的crr pgr5双突变体相似,lhca6 pgr5双突变体表现出严重的生长缺陷。与受损的NDH活性一致,lhca6 pgr5的成熟叶片中的光合作用也受到严重影响。我们得出的结论是,在陆地植物的进化过程中,叶绿体NDH配备了新型亚复合物,并与PSI相关联,这一过程可能促进了NDH的有效运行。

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