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首页> 外文期刊>Biochemistry >ROLE OF PUFX PROTEIN IN PHOTOSYNTHETIC GROWTH OF RHODOBACTER SPHAEROIDES .1. PUFX IS REQUIRED FOR EFFICIENT LIGHT-DRIVEN ELECTRON TRANSFER AND PHOTOPHOSPHORYLATION UNDER ANAEROBIC CONDITIONS
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ROLE OF PUFX PROTEIN IN PHOTOSYNTHETIC GROWTH OF RHODOBACTER SPHAEROIDES .1. PUFX IS REQUIRED FOR EFFICIENT LIGHT-DRIVEN ELECTRON TRANSFER AND PHOTOPHOSPHORYLATION UNDER ANAEROBIC CONDITIONS

机译:PUFX蛋白质在红细菌磷脂光合作用中的作用.1。在厌氧条件下需要有效的光驱动电子转移和光致磷酸化PUFX

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摘要

The pufX gene is essential for photoheterotrophic growth of the purple bacterium Rhodobacter sphaeroides. In order to analyze the molecular function of the PufX membrane protein, we constructed a chromosomal pufX deletion mutant and phenotypically compared it to a pufX(+) control strain and to two suppressor mutants which are able to grow photosynthetically in the absence of pufX. Using this genetic background, we confirmed that PufX is required for photoheterotrophic growth under anaerobic conditions, although all components of the photosynthetic apparatus were present in similar amounts in all strains investigated. We show that the deletion of PufX is not lethal for illuminated pufX(-) cells, suggesting that PufX is required for photosynthetic cell division. Since chromatophores isolated from the pufX(-) mutant were found to be unsealed vesicles, the sole of PufX in photosynthetic energy transduction was studied in vivo. We show that PufX is essential for light-induced ATP synthesis (photophosphorylation) in anaerobically incubated cells. Measurements of absorption changes induced by a single turnover flash demonstrated that PufX is not required for electron flow through the reaction center and the cytochrome bc(1) complex under anaerobic conditions. During prolonged illumination, however, PufX is essential for the generation of a sufficiently large membrane potential to allow photosynthetic growth. These in vivo results demonstrate that under anaerobic conditions PufX plays an essential role in facilitating effective interaction of the components of the photosynthetic apparatus.
机译:pufX基因对于紫色细菌球形球形红细菌的光异养生长至关重要。为了分析PufX膜蛋白的分子功能,我们构建了一个染色体pufX缺失突变体,并在表型上将其与pufX(+)对照菌株以及两个抑制突变体进行了比较,这些突变体在不存在pufX的情况下能够光合生长。使用这种遗传背景,我们确认了PufX是厌氧条件下光异养生长所必需的,尽管在所有研究菌株中光合装置的所有成分均以相似的量存在。我们表明,PufX的删除不是致命的照明的pufX(-)细胞,这表明PufX是光合细胞分裂所必需的。由于发现从pufX(-)突变体分离的色谱是未密封的囊泡,因此在体内研究了PufX在光合作用能量传导中的唯一作用。我们显示PufX对于厌氧培养的细胞中光诱导的ATP合成(光磷酸化)至关重要。测量由单个更新闪光引起的吸收变化表明,在厌氧条件下,电子流过反应中心和细胞色素bc(1)复合物不需要PufX。然而,在长时间的照明过程中,PufX对于产生足够大的膜电位以允许光合生长至关重要。这些体内结果表明,在厌氧条件下,PufX在促进光合装置各成分的有效相互作用中起着至关重要的作用。

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