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Hopping into a hot seat: Role of DNA structural features on IS5-mediated gene activation and inactivation under stress

机译:跳入热议席:DNA结构特征在应激下IS5介导的基因激活和失活中的作用

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摘要

Insertion sequence elements (IS elements) are proposed to play major roles in shaping the genetic and phenotypic landscapes of prokaryotic cells. Recent evidence has raised the possibility that environmental stress conditions increase IS hopping into new sites, and often such hopping has the phenotypic effect of relieving the stress. Although stress-induced targeted mutations have been reported for a number of E. coli genes, the glpFK (glycerol utilization) and the cryptic bglGFB (β-glucoside utilization) systems are among the best characterized where the effects of IS insertion-mediated gene activation are well-characterized at the molecular level. In the glpFK system, starvation of cells incapable of utilizing glycerol leads to an IS5 insertion event that activates the glpFK operon, and enables glycerol utilization. In the case of the cryptic bglGFB operon, insertion of IS5 (and other IS elements) into a specific region in the bglG upstream sequence has the effect of activating the operon in both growing cells, and in starving cells. However, a major unanswered question in the glpFK system, the bgl system, as well as other examples, has been why the insertion events are promoted at specific locations, and how the specific stress condition (glycerol starvation for example) can be mechanistically linked to enhanced insertion at a specific locus. In this paper, we show that a specific DNA structural feature (superhelical stress-induced duplex destabilization, SIDD) is associated with “stress-induced” IS5 insertion in the glpFK, bglGFB, flhDC, fucAO and nfsB systems. We propose a speculative mechanistic model that links specific environmental conditions to the unmasking of an insertional hotspot in the glpFK system. We demonstrate that experimentally altering the predicted stability of a SIDD element in the nfsB gene significantly impacts IS5 insertion at its hotspot.
机译:提出插入序列元件(IS元件)在塑造原核细胞的遗传和表型景观中起主要作用。最近的证据增加了环境压力条件增加IS跳入新地点的可能性,并且这种跳频通常具有缓解压力的表型效应。尽管已经报道了许多大肠杆菌基因的应激诱导的定向突变,但是glpFK(甘油利用)和隐秘的bglGFB(β-葡萄糖苷利用)系统是其中IS插入介导的基因激活作用最出色的系统之一。在分子水平上具有很好的特征。在glpFK系统中,无法利用甘油的细胞饥饿会导致IS5插入事件,从而激活glpFK操纵子,并使甘油得以利用。对于隐秘的bglGFB操纵子,将IS5(和其他IS元件)插入bglG上游序列的特定区域具有激活生长子和饥饿细胞中操纵子的作用。但是,glpFK系统,bgl系统以及其他示例中一个主要的未解决问题是,为什么在特定位置促进插入事件,以及如何将特定的应力条件(例如,甘油饥饿)机械地联系到增强在特定位点的插入。在本文中,我们显示了特定的DNA结构特征(超螺旋应力诱导的双链不稳定,SIDD)与“应力诱导”的IS5插入glpFK,bglGFB,flhDC,fucAO和 nfsB 系统。我们提出了一个推测性的机械模型,该模型将特定的环境条件与 glpFK 系统中的插入热点的暴露联系起来。我们证明实验改变 nfsB 基因中SIDD元素的预测稳定性会显着影响IS 5 在其热点处的插入。

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