首页> 外文期刊>Plant and cell physiology >Interactions between histidine kinase NblS and the response regulators RpaB and SrrA are involved in the bleaching process of the cyanobacterium Synechococcus elongatus PCC 7942.
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Interactions between histidine kinase NblS and the response regulators RpaB and SrrA are involved in the bleaching process of the cyanobacterium Synechococcus elongatus PCC 7942.

机译:组氨酸激酶NblS与响应调节剂RpaB和SrrA之间的相互作用参与了蓝细菌长发嗜蓝球菌PCC 7942的漂白过程。

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摘要

Cyanobacteria have developed a light-harvesting antenna complex known as the phycobilisome. When cells are starved for nutrients or exposed to high light, the phycobilisome is rapidly degraded (bleaching). It has been suggested that in the cyanobacterium Synechococcus elongatus PCC 7942, the bleaching process is regulated by a two-component histidine kinase, NblS. To clarify the signaling pathway involving NblS, we identified the NblS-interacting response regulators RpaB and SrrA. In vitro assays using recombinant proteins showed that both RpaB and SrrA can receive phosphoryl groups from autophosphorylated NblS; the NblS-interacting protein SipA clearly enhances the phosphotransfer activity from NblS to RpaB and SrrA. In addition, NblS prefers SrrA over RpaB as the phosphotransfer target with or without SipA. Gel mobility shift assay revealed that both RpaB and SrrA can bind to the upstream region of nblA, a major regulatory factor in the bleaching process. nblA transcript accumulates in nblS or rpaB mutants even under normal growth conditions, while in the srrA disruptant the nblA transcripts are slightly up-regulated under stress conditions. These observations suggest that the bleaching signal transduction pathway via NblS is regulated by RpaB and that SrrA is partially involved.
机译:蓝细菌已开发出一种称为藻胆体的光捕获天线复合体。当细胞饥饿或缺乏营养时,藻胆体会迅速降解(漂白)。已经提出,在蓝细菌伸长的Synechococcus longicus PCC 7942中,漂白过程受二组分组氨酸激酶NblS的调节。为了阐明涉及NblS的信号传导途径,我们鉴定了与NblS相互作用的反应调节因子RpaB和SrrA。使用重组蛋白进行的体外分析表明,RpaB和SrrA均可从自磷酸化的NblS接收磷酰基。 NblS相互作用蛋白SipA明显增强了从NblS到RpaB和SrrA的磷酸转移活性。此外,有或没有SipA的情况下,NblS都更喜欢SrrA而不是RpaB作为磷转移靶。凝胶迁移率变动分析表明,RpaB和SrrA均可结合到 nblA 的上游区域,nblA 是漂白过程中的主要调节因子。即使在正常生长条件下, nblA 转录本也会积累在 nblS 或 rpaB 突变体中,而在 srrA 破坏物中, nblA 转录本在压力条件下略有上调。这些观察结果表明,经由NblS的漂白信号转导途径受RpaB调控,而SrrA参与其中。

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