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首页> 外文期刊>RNA biology >The stress-related, rhizobial small RNA RcsR1 destabilizes the autoinducer synthase encoding mRNA sinI in Sinorhizobium meliloti
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The stress-related, rhizobial small RNA RcsR1 destabilizes the autoinducer synthase encoding mRNA sinI in Sinorhizobium meliloti

机译:与压力相关的Rhizobial Small RNA RCSR1不稳定在Sinorhizobium Meliloti中编码MRNA Sini的易挤动器合成酶

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摘要

Quorum sensing is a cell density-dependent communication system of bacteria relying on autoinducer molecules. During the analysis of the post-transcriptional regulation of quorum sensing in the nitrogen fixing plant symbiont Sinorhizobium meliloti, we predicted and verified a direct interaction between the 5'-UTR of sinI mRNA encoding the autoinducer synthase and a small RNA (sRNA), which we named RcsR1. In vitro, RcsR1 prevented cleavage in the 5'-UTR of sinI by RNase E and impaired sinI translation. In line with low ribosomal occupancy and transcript destabilization upon binding of RcsR1 to sinI, overproduction of RcsR1 in S. meliloti resulted in lower level and shorter half-life of sinI mRNA, and in decreased autoinducer amount. Although RcsR1 can influence quorum sensing via sinI, its level did not vary at different cell densities, but decreased under salt stress and increased at low temperature. We found that RcsR1 and its stress-related expression pattern, but not the interaction with sinI homologs, are conserved in Sinorhizobium, Rhizobium and Agrobacterium. Consistently, overproduction of RcsR1 in S. meliloti and Agrobacterium tumefaciens inhibited growth at high salinity. We identified conserved targets of RcsR1 and showed that most conserved interactions and the effect on growth under salt stress are mediated by the first stem-loop of RcsR1, while its central part is responsible for the species-specific interaction with sinI. We conclude that RcsR1 is an ancient, stress-related riboregulator in rhizobia and propose that it links stress responses to quorum sensing in S. meliloti.
机译:Quorum感测是依赖于自动挤压器分子的细胞密度依赖性通信系统。在分析氮素固定植物Simbiont Sinorhizobium Meliloti的核心传感后的转录后调节期间,我们预测并验证了编码AutoInucer合酶的Sini mRNA的5'-UTR与小RNA(SRNA)之间的直接相互作用我们命名为rcsr1。体外,RCSR1通过RNase e通过RNA e和Sini翻译的5'-UTR中的裂解。根据RCSR1至SINI结合时,符合低核糖体占用和转录性稳定化,S.Meliloti中RCSR1的过量产生导致SINI mRNA的较低水平和短寿命较短,易于自动化剂量。尽管RCSR1可以通过SINI影响Quorum感测,但其水平在不同的细胞密度下没有变化,但在盐胁迫下降低并在低温下增加。我们发现RCSR1及其与应力相关的表达模式,但不是与Sini同源物的相互作用,在Sinorhizobium,Rhizobium和土壤杆菌中保守。始终如一地说,在S. Meliloti和土壤杆菌癌症的RCSR1的过量生产抑制了高盐度的生长。我们鉴定了RCSR1的保守靶标,并表明,最守恒的相互作用和对盐胁迫的生长的影响是由RCSR1的第一个茎环介导的,而其中心部分是对与SINI的物种特异性相互作用负责。我们得出结论,RCSR1是根瘤菌中的古老胁迫相关的核心调节剂,并提出它将应激反应联系在S. Meliloti中的Quorum感应。

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