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The CopRS two-component system is responsible for resistance to copper in the cyanobacterium Synechocystis sp. PCC 6803

机译:CopRS两组分系统负责对蓝藻集胞藻(Synechocystis sp。)的铜抗性。 PCC 6803

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摘要

Photosynthetic organisms need copper for cytochrome oxidase and for plastocyanin in the fundamental processes of respiration and photosynthesis. However, excess of free copper is detrimental inside the cells and therefore organisms have developed homeostatic mechanisms to tightly regulate its acquisition, sequestration, and efflux. Herein we show that the CopRS two-component system (also known as Hik31-Rre34) is essential for copper resistance in Synechocystis sp. PCC 6803. It regulates expression of a putative heavy-metal efflux-resistance nodulation and division type copper efflux system (encoded by copBAC) as well as its own expression (in the copMRS operon) in response to the presence of copper in the media. Mutants in this two-component system or the efflux system render cells more sensitive to the presence of copper in the media and accumulate more intracellular copper than the wild type. Furthermore, CopS periplasmic domain is able to bind copper, suggesting that CopS could be able to detect copper directly. Both operons (copMRS and copBAC) are also induced by the photosynthetic inhibitor 2,5-dibromo-3-methyl-6-isopropyl-p-benzoquinone but this induction requires the presence of copper in the media. The reduced response of two mutant strains to copper, one lacking plastocyanin and a second one impaired in copper transport to the thylakoid, due to the absence of the P I-type ATPases PacS and CtaA, suggests that CopS can detect intracellular copper. In addition, a tagged version of CopS with a triple HA epitope localizes to both the plasma and the thylakoid membranes, suggesting that CopS could be involved in copper detection in both the periplasm and the thylakoid lumen. © 2012 American Society of Plant Biologists. All Rights Reserved.
机译:在呼吸和光合作用的基本过程中,光合生物需要铜用于细胞色素氧化酶和质体蓝素。但是,过量的游离铜对细胞内部有害,因此生物体已经建立了体内平衡机制来严格调节其捕获,隔离和外排。本文中,我们显示CopRS两组分系统(也称为Hik31-Rre34)对于集胞藻(Synechochocystis sp。)的铜抗性至关重要。 PCC6803。它响应介质中铜的存在,调节假定的重金属外流结瘤和分型铜外排系统(由copBAC编码)的表达以及它自己的表达(在copMRS操纵子中)。在这种两组分系统或外排系统中,突变体使细胞对培养基中铜的存在更加敏感,并且比野生型细胞中积累的细胞内铜更多。此外,CopS周质结构域能够结合铜,这表明CopS能够直接检测铜。光合抑制剂2,5-二溴-3-甲基-6-异丙基-对苯醌也诱导了两个操纵子(copMRS和copBAC),但是这种诱导需要培养基中存在铜。由于缺乏P I型ATPase PacS和CtaA,两种突变菌株对铜的响应降低,一种缺乏质体蓝蛋白,另一种缺乏铜向类囊体的转运,这表明CopS可以检测胞内铜。另外,具有三重HA表位的CopS的标记形式定位于血浆和类囊体膜两者,表明CopS可能参与周质和类囊体腔中的铜检测。 ©2012美国植物生物学家学会。版权所有。

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