首页> 外文期刊>The Journal of General and Applied Microbiology >Regulation of the groESL1 transcription by the HrcA repressor and a novel transcription factor Orf7.5 in the cyanobacterium Synechococcus elongatus PCC7942
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Regulation of the groESL1 transcription by the HrcA repressor and a novel transcription factor Orf7.5 in the cyanobacterium Synechococcus elongatus PCC7942

机译:HRCA阻遏物和新型转录因子Orf7.5在Cyanobacterium indechocccus elongatus pcc7942中调节rOCE11转录的调节

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The CIRCE/HrcA system is highly conserved in cyanobacterial genomes. We have shown that heat-shock induction of the groESL1 operon in the cyanobacterium Synechocystis sp. PCC6803 is negatively regulated by the CIRCE/HrcA system. In Synechococcus elongatus PCC7942, a novel heat shock protein, Orf7.5, is involved in positive regulation of the groESL1 transcription. However, Orf7.5 is not conserved in some cyanobacteria, including Synechocystis sp. PCC6803. The purpose of this study is to evaluate the functional conservation of the CIRCE/HrcA system in S. elongatus PCC7942 and to understand the interplay between the CIRCE/HrcA system and the Orf7.5 regulatory system. We constructed single and double mutants of S. elongatus orf7.5, hrcA and orf7.5/hrcA and heat induction of the groESL1 transcription in these mutants was analyzed. Unexpectedly, derepression of the groESL1 transcription in an hrcA mutant was not observed. In all these mutants, the transcription was greatly suppressed under both normal and heat stress conditions, indicating that both HrcA and Orf7.5 are involved in regulation of the groESL1 transcription in a positive way. Consistent with the decrease in the groESL1 mRNA level, all the single and double mutants showed a great loss of acquired thermotolerance. Heat induction of the orf7.5 promoter activity was totally diminished in the orf7.5 mutant, indicating that Orf7.5 activates its own transcription. Yeast two hybrid analysis showed that the principle sigma factor RpoD1 interacts with Orf7.5. These results indicate that Orf7.5 enhances the transcription of groESL1 and orf7.5 by interacting with RpoD1.
机译:CIRCE / HRCA系统在蓝藻基因组中高度保守。我们已经表明,Cyanobacterium snobocystis sp中Groo11型术的热冲击诱导。 PCC6803由CIRCE / HRCA系统负调节。在SyneChococcus eloncatus pcc7942中,新型热休克蛋白,ORF7.5,参与了GROES11转录的正调节。然而,在一些蓝藻中,Orf7.5并不保守,包括SyneChocystis sp。 PCC6803。本研究的目的是评估S. Elongatus PCC7942中CIRCE / HRCA系统的功能保护,并了解CIRCE / HRCA系统与ORF7.5监管系统之间的相互作用。我们构建了S. Elongatus ORF7.5,HRCA和ORF7.5 / HRCA的单一和双突变体,并分析了这些突变体中GROESL1转录的热诱导。出乎意料地,未观察到HRCA突变体中GROE1转录的DEREPLACE。在所有这些突变体中,在正常和热应激条件下大大抑制了转录,表明HRCA和ORF7.5都涉及以阳性方式调节GROESL1转录。符合GroCo1 mRNA水平的降低,所有单一和双突变体均显示出较大的获得热能丧失。 ORF7.5突变体中的热诱导在ORF7.5突变体中完全降低,表明ORF7.5激活其自身的转录。酵母两种杂化分析表明,ΣIGMA因子RPOD1原理与ORF7.5相互作用。这些结果表明ORF7.5通过与RPOD1相互作用来增强GROESL1和ORF7.5的转录。

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