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Expression of a higher plant psbA gene in Synechocystis 6803 yields a functional hybrid photosystem II reaction center complex.

机译:在集胞藻6803中表达更高的植物psbA基因产生功能性的混合光系统II反应中心复合物。

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摘要

The psbA gene codes for the D1 polypeptide of the photosystem II reaction center complex and is found in all photosynthetic organisms that carry out oxygenic photosynthesis. Here we describe the construction and characterization of a strain of the cyanobacterium Synechocystis sp PCC 6803 in which the three endogenous psbA genes are replaced by a single psbA gene from the chloroplast genome of the higher plant Poa annua. The resulting chimeric strain, KWPAS, grows photoautotrophically with a doubling time of 26 hours compared with 20 hours for wild-type Synechocystis 6803. The mutant oxidizes water to oxygen at light-saturated rates comparable with wild type, despite differences in 15% of the primary structure of D1 between these species. RNA gel blot analysis indicates the presence in KWPAS of a psbA transcript of approximately 1.25 kilobases, consistent with the chloroplast promoter also acting as a promoter in Synechocystis. By using antibodies specific for the carboxyl-terminal extension of the D1 polypeptide of higher plants, we showed that the D1 polypeptide synthesized by KWPAS is post-translationally modified at the carboxyl terminus, probably through processing. A detailed biophysical analysis of the chimeric photosystem II complex indicated that the rates of forward electron transfer are similar to wild type. The rates of charge recombination between the donor and acceptor sides of the reaction center are, however, accelerated by as much as a factor of nine (QA- to S2) and are the most likely explanation for the lower rate of photoautotrophic growth in the mutant. We conclude that the psbA gene from a higher plant can be expressed in cyanobacteria and its product processed and assembled into a functional chimeric photosystem II reaction center.
机译:psbA基因编码光系统II反应中心复合体的D1多肽,并在进行氧合光合作用的所有光合生物中发现。在这里,我们描述了蓝藻蓝藻属PCC 6803菌株的构建和表征,其中三个内源性psbA基因被来自高等植物Poa annua叶绿体基因组的单个psbA基因取代。所得的嵌合菌株KWPAS光合自养,其倍增时间为26小时,而野生型Synechocystis 6803则为20小时。该突变体以与野生型相当的光饱和速率将水氧化成氧气,尽管其中15%的差异这些物种之间的D1的一级结构。 RNA凝胶印迹分析表明,在KWPAS中存在大约1.25 kb的psbA转录本,这与叶绿体启动子也充当集囊藻的启动子一致。通过使用对高等植物D1多肽的羧基末端延伸具有特异性的抗体,我们证明了由KWPAS合成的D1多肽可能经过加工后在羧基末端进行了翻译后修饰。嵌合光系统II复合物的详细生物物理分析表明,正向电子转移的速率与野生型相似。但是,反应中心的供体和受体侧之间的电荷重组速率加快了九倍(QA-至S2),这最有可能解释了突变体中光合自养生物生长速率较低的原因。 。我们得出的结论是,来自高等植物的psbA基因可以在蓝细菌中表达,其产物经过加工和组装后进入功能性嵌合光系统II反应中心。

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