首页> 外文期刊>Journal of bacteriology >Deciphering the Interplay between Two Independent Functions of the Small RNA Regulator SgrS in Salmonella
【24h】

Deciphering the Interplay between Two Independent Functions of the Small RNA Regulator SgrS in Salmonella

机译:沙门氏菌中的小RNA调节剂SgrS的两个独立功能之间的相互作用的解释。

获取原文
           

摘要

Bacterial dual-function small RNAs regulate gene expression by RNA-RNA base pairing and also code for small proteins. SgrS is a dual-function small RNA in Escherichia coli and Salmonella that is expressed under stress conditions associated with accumulation of sugar-phosphates, and its activity is crucial for growth during stress. The base-pairing function of SgrS regulates a number of mRNA targets, resulting in reduced uptake and enhanced efflux of sugars. SgrS also encodes the SgrT protein, which reduces sugar uptake by a mechanism that is independent of base pairing. While SgrS base-pairing activity has been characterized in detail, little is known about how base pairing and translation of sgrT are coordinated. In the current study, we utilized a series of mutants to determine how translation of sgrT affected the efficiency of base pairing-dependent regulation and vice versa. Mutations that abrogated sgrT translation had minimal effects on base-pairing activity. Conversely, mutations that impaired base-pairing interactions resulted in increased SgrT production. Furthermore, while ectopic overexpression of sgrS mutant alleles lacking only one of the two functions rescued cell growth under stress conditions, the SgrS base-pairing function alone was indispensable for growth rescue when alleles were expressed from the native locus. Collectively, the results suggest that during stress, repression of sugar transporter synthesis via base pairing with sugar transporter mRNAs is the first priority of SgrS. Subsequently, SgrT is made and acts on preexisting transporters. The combined action of these two functions produces an effective stress response.
机译:细菌双功能小RNA通过RNA-RNA碱基配对调节基因表达,也编码小蛋白质。 SgrS是大肠杆菌和沙门氏菌中的一种双重功能的小RNA,在与糖磷酸盐积累相关的应激条件下表达,其活性对于应激期间的生长至关重要。 SgrS的碱基配对功能调节了许多mRNA靶标,导致糖的吸收减少和流出增加。 SgrS还编码SgrT蛋白,该蛋白通过独立于碱基配对的机制降低糖的摄取。尽管已详细描述了SgrS碱基配对活动,但对 sgrT 的碱基配对和翻译如何协调的了解甚少。在当前的研究中,我们利用一系列突变体来确定 sgrT 的翻译如何影响碱基配对依赖性调控的效率,反之亦然。取消 sgrT 翻译的突变对碱基配对活性的影响很小。相反,损害碱基配对相互作用的突变导致SgrT产量增加。此外,虽然仅缺乏这两种功能之一的 sgrS 突变等位基因的异位过表达可以在压力条件下挽救细胞生长,但是当等位基因从天然位点表达时,单独的SgrS碱基配对功能对于生长挽救是必不可少的。总体而言,结果表明在胁迫期间,通过与糖转运蛋白mRNA的碱基配对来抑制糖转运蛋白的合成是SgrS的首要任务。随后,SgrT被创建并作用于先前存在的运输者。这两个功能的组合作用产生了有效的压力响应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号