首页> 外文期刊>The Journal of General and Applied Microbiology >RpaB, an essential response regulator for high-light stress, is extensively involved in transcriptional regulation under light-intensity upshift conditions in Synechococcus elongatus PCC 7942
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RpaB, an essential response regulator for high-light stress, is extensively involved in transcriptional regulation under light-intensity upshift conditions in Synechococcus elongatus PCC 7942

机译:RPAB是一种用于高光应力的基本反应调节剂,广泛参与IndeChoccus Elongatus PCC 7942的光强升降条件下的转录调节

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摘要

In cyanobacteria, transcription of a set of genes is specifically induced by high-light-stress conditions. In previous studies, RpaB. a response regulator of the two-component system, was shown to he involved in this regulation in vitro and in vivo. In this study, we examined whether RpaB-dependent transcriptional regulation was extensively observed, not only under high-light-stress conditions but also under various light intensities. Transcription of high-light-dependent genes hliA, nblA and rpoD3 was transiently and drastically induced during a dark-to-light shift in a manner similar to high-lightstress responses. Moreover, expression of these genes was activated under various light-intensity upshift conditions. Phos-tag SDS-PA GE experiments showed that the phosphorylation level of RpaB was decreased along with transcriptional induction of target genes in all of the light environments examined herein. These results suggest that RpaB may be widely involved in transcriptional regulation under dark-to-light and light-intensity upshift conditions and that high-light-responsive genes may be required in various light conditions other than high-light condition. Furthermore, it is hypothesised that RpaB is regulated by redox-dependent signals rather than by high-light-stress-dependent signals.
机译:在蓝藻中,一组基因的转录是在强光胁迫条件下特异性诱导的。在以前的研究中,RpaB。一种双组分系统的反应调节器,在体外和体内都参与了这种调节。在这项研究中,我们研究了RpaB依赖性转录调控是否被广泛观察到,不仅在高光胁迫条件下,而且在不同的光照强度下。高光依赖基因hliA、nblA和rpoD3的转录在暗-光转换过程中以类似于高光应激反应的方式短暂而剧烈地被诱导。此外,这些基因的表达在不同的光照强度升高条件下被激活。磷标记SDS-PA GE实验表明,在本文研究的所有光环境中,随着靶基因的转录诱导,RpaB的磷酸化水平降低。这些结果表明,RpaB可能广泛参与暗-光和光强度升高条件下的转录调控,并且在除强光条件外的各种光照条件下可能需要高光响应基因。此外,还假设RpaB受氧化还原依赖性信号而非强光胁迫依赖性信号的调节。

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