首页> 外文期刊>Plant physiology >The gene sml0013 of Synechocystis species strain PCC 6803 encodes for a novel subunit of the NAD(P)H oxidoreductase or complex I that is ubiquitously distributed among cyanobacteria
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The gene sml0013 of Synechocystis species strain PCC 6803 encodes for a novel subunit of the NAD(P)H oxidoreductase or complex I that is ubiquitously distributed among cyanobacteria

机译:集胞藻种PCC 6803的基因sml0013编码NAD(P)H氧化还原酶或复合体I的一个新的亚基,该亚基普遍分布在蓝细菌中

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摘要

The NAD(P)H oxidoreductase or complex I (NDH1) complex participates in many processes such as respiration, cyclic electron flow, and inorganic carbon concentration in the cyanobacterial cell. Despite immense progress in our understanding of the structure-function relation of the cyanobacterial NDH1 complex, the subunits catalyzing NAD(P)H docking and oxidation are still missing. The gene sml0013 of Synechocystis 6803 encodes for a small protein of unknown function for which homologs exist in all completely known cyanobacterial genomes. The protein exhibits weak similarities to the NDH-dependent flow6 (NDF6) protein, which was reported from Arabidopsis (Arabidopsis thaliana) chloroplasts as a NDH subunit. An sml0013 inactivation mutant of Synechocystis 6803 was generated and characterized. It showed only weak differences regarding growth and pigmentation in various culture conditions; most remarkably, it exhibited a glucose-sensitive phenotype in the light. The genome-wide expression pattern of the Dsml0013:Km mutant was almost identical to the wild type when grown under high CO_2 conditions as well as after shifts to low CO_2 conditions. However, measurements of the photosystem I redox kinetic in cells of the Dsml0013:Km mutant revealed differences, such as a decreased capability of cyclic electron flow as well as electron flow into respiration in comparison with the wild type. These results suggest that the Sml0013 protein (named NdhP) represents a novel subunit of the cyanobacterial NDH1 complex, mediating its coupling either to the respiratory or the photosynthetic electron flow.
机译:NAD(P)H氧化还原酶或复合物I(NDH1)复合物参与许多过程,例如呼吸,循环电子流和蓝细菌细胞中的无机碳浓度。尽管我们对蓝细菌NDH1配合物的结构-功能关系的理解取得了巨大进展,但仍缺少催化NAD(P)H对接和氧化的亚基。蓝藻6803的基因sml0013编码一种功能未知的小蛋白,所有完全已知的蓝细菌基因组中都存在该蛋白。该蛋白与NDH依赖性flow6(NDF6)蛋白显示出弱相似性,后者是从拟南芥(Arabidopsis thaliana)叶绿体中作为NDH亚基报道的。产生并鉴定了集胞藻6803的sml0013失活突变体。在各种培养条件下,其生长和色素沉着仅表现出微弱的差异。最显着的是,它在光照下表现出葡萄糖敏感性表型。当在高CO_2条件下以及转移到低CO_2条件下生长时,Dsml0013:Km突变体的全基因组表达模式几乎与野生型相同。但是,对Dsml0013:Km突变体的细胞中的光系统I氧化还原动力学的测量显示出差异,例如与野生型相比,循环电子流以及进入呼吸的电子流能力降低。这些结果表明,Sml0013蛋白(命名为NdhP)代表了蓝细菌NDH1复合体的一个新亚基,介导了其与呼吸或光合电子流的耦合。

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