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Transcriptional and Proteolytic Regulation of the Toxin-Antitoxin Locus vapBC10 (ssr2962/slr1767) on the Chromosome of Synechocystis sp. PCC 6803

机译:毒素-抗毒素基因座vapBC10(ssr2962 / slr1767)对集胞藻sp。染色体的转录和蛋白水解调控。 PCC 6803

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摘要

VapBC toxin-antitoxin (TA) systems are defined by the association of a PIN-domain toxin with a DNA-binding antitoxin, and are thought to play important physiological roles in bacteria and archaea. Recently, the PIN-associated gene pair PIN-COG2442 was proposed to encode VapBC-family TA system and found to be abundant in cyanobacteria. However, the features of these predicted TA loci remain under investigation. We here report characterization of the PIN-COG2442 locus vapBC10 (ssr2962/slr1767) on the chromosome of Synechocystis sp. PCC 6803. RT-PCR analysis revealed that the vapBC10 genes were co-transcribed under normal growth conditions. Ectopic expression of the PIN-domain protein VapC10 caused growth arrest of Escherichia coli that does not possess vapBC TA locus. Coincidentally, this growth-inhibition effect could be neutralized by either simultaneous or subsequent production of the COG2442-domain protein VapB10 through formation of the TA complex VapBC10 in vivo. In contrast to the transcription repression activity of the well-studied antitoxins, VapB10 positively auto-regulated the transcription of its own operon via specific binding to the promoter region. Furthermore, in vivo experiments in E. coli demonstrated that the Synechocystis protease ClpXP2s, rather than Lons, could cleave VapB10 and proteolytically activate the VapC10 toxicity. Our results show that the PIN-COG2442 locus vapBC10 encodes a functional VapBC TA system with an alternative mechanism for the transcriptional auto-regulation of its own operon.
机译:VapBC毒素-抗毒素(TA)系统是通过PIN域毒素与DNA结合抗毒素的结合来定义的,被认为在细菌和古细菌中起着重要的生理作用。最近,提出了与PIN相关的基因对PIN-COG2442编码VapBC家族TA系统,并发现其在蓝细菌中含量很高。但是,这些预测的TA位点的特征仍在调查中。我们在这里报告了Synechocystis sp。染色体上的PIN-COG2442基因座vapBC10(ssr2962 / slr1767)的表征。 PCC6803。RT-PCR分析表明vapBC10基因在正常生长条件下被共转录。 PIN域蛋白VapC10的异位表达导致不具有vapBC TA基因座的大肠杆菌生长停滞。巧合的是,通过在体内形成TA复合物VapBC10同时或随后产生COG2442-结构域蛋白VapB10,可以抵消这种生长抑制作用。与经过充分研究的抗毒素的转录抑制活性相反,VapB10通过与启动子区域的特异性结合而积极地自动调节其自身操纵子的转录。此外,在大肠杆菌中的体内实验表明,集胞藻蛋白酶ClpXP2s而非Lons可以裂解VapB10并通过蛋白水解激活VapC10毒性。我们的结果表明,PIN-COG2442基因座vapBC10编码功能性VapBC TA系统,并具有其自身操纵子的转录自动调节的替代机制。

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