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Type II Toxin–Antitoxin Systems in the Unicellular Cyanobacterium Synechocystis sp. PCC 6803

机译:单细胞蓝藻蓝藻中的II型毒素-抗毒素系统。 PCC 6803

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摘要

Bacterial toxin–antitoxin (TA) systems are genetic elements, which are encoded by plasmid as well as chromosomal loci. They mediate plasmid and genomic island maintenance through post-segregational killing mechanisms but may also have milder effects, acting as mobile stress response systems that help certain cells of a population in persisting adverse growth conditions. Very few cyanobacterial TA system have been characterized thus far. In this work, we focus on the cyanobacterium Synechocystis 6803, a widely used model organism. We expand the number of putative Type II TA systems from 36 to 69 plus seven stand-alone components. Forty-seven TA pairs are located on the chromosome and 22 are plasmid-located. Different types of toxins are associated with various antitoxins in a mix and match principle. According to protein domains and experimental data, 81% of all toxins in Synechocystis 6803 likely exhibit RNase activity, suggesting extensive potential for toxicity-related RNA degradation and toxin-mediated transcriptome remodeling. Of particular interest is the Ssr8013–Slr8014 system encoded on plasmid pSYSG, which is part of a larger defense island or the pSYSX system Slr6056–Slr6057, which is linked to a bacterial ubiquitin-like system. Consequently, Synechocystis 6803 is one of the most prolific sources of new information about these genetic elements.
机译:细菌毒素-抗毒素(TA)系统是遗传成分,由质粒以及染色体位点编码。它们通过分离后的杀伤机制介导质粒和基因组岛的维持,但也可能具有较温和的作用,充当移动胁迫反应系统,帮助种群中的某些细胞持续维持不利的生长条件。到目前为止,很少有蓝细菌TA系统的特征。在这项工作中,我们专注于广泛使用的模型生物蓝细菌Synechocystis 6803。我们将II型TA推定系统的数量从36个增加到69个,再加上七个独立组件。 47对TA位于染色体上,22对位于质粒上。在混合搭配原理中,不同类型的毒素与各种抗毒素相关。根据蛋白质结构域和实验数据,集胞藻6803中所有毒素的81%可能表现出RNase活性,表明毒性相关RNA降解和毒素介导的转录组重塑的广泛潜力。特别令人感兴趣的是在质粒pSYSG上编码的Ssr8013–Slr8014系统,这是一个更大的防御岛或pSYSX系统Slr6056–Slr6057的一部分,该系统与细菌泛素样系统相连。因此,集胞藻6803是有关这些遗传元件的新信息的最多产来源之一。

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