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Deciphering the Rules Underlying Xenogeneic Silencing and Counter-Silencing of Lsr2-like Proteins Using CgpS of Corynebacterium glutamicum as a Model

机译:使用CGPS的CGPS为柔软的CGPS is rsr2样蛋白的卵形沉默和抗衡沉默的规则解密。

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Lsr2-like nucleoid-associated proteins play an important role as xenogeneic silencers (XS) of horizontally acquired genomic regions in actinobacteria. In this study, we systematically analyzed the in vivo constraints underlying silencing and counter-silencing of the Lsr2-like protein CgpS in Corynebacterium glutamicum . Genome-wide analysis revealed binding of CgpS to regions featuring a distinct drop in GC profile close to the transcription start site (TSS) but also identified an overrepresented motif with multiple A/T steps at the nucleation site of the nucleoprotein complex. Binding of specific transcription factors (TFs) may oppose XS activity, leading to counter-silencing. Following a synthetic counter-silencing approach, target gene activation was realized by inserting operator sites of an effector-responsive TF within various CgpS target promoters, resulting in increased promoter activity upon TF binding. Analysis of reporter constructs revealed maximal counter-silencing when the TF operator site was inserted at the position of maximal CgpS coverage. This principle was implemented in a synthetic toggle switch, which features a robust and reversible response to effector availability, highlighting the potential for biotechnological applications. Together, our results provide comprehensive insights into how Lsr2 silencing and counter-silencing shape evolutionary network expansion in this medically and biotechnologically relevant bacterial phylum.
机译:LSR2样核相关蛋白在肌肌细菌中水平获得的基因组区域的异共沉默(XS)发挥着重要作用。在这项研究中,我们系统地分析了在棒状杆菌中的LSR2样蛋白CGP的沉默和抗衡沉默的体内约束。基因组 - 范围分析显示CGP与靠近转录起始位点(TSS)的GC型谱中的明显下降的区域的结合,而是还鉴定了核蛋白复合物的核核心成核位点的多个A / T步骤的超人级基序。特定转录因子(TFS)的结合可能反对XS活动,导致反沉默。在合成反沉默方法之后,通过在各种CGPS靶促进剂内插入效应响应性TF的操作员位点来实现靶基因激活,从而导致TF结合的启动子活性增加。当在最大CGPS覆盖范围的位置插入TF操作场所时,记者构建体的分析显示出最大反沉默。该原理是在合成拨动开关中实现的,该开关具有鲁棒性和可逆的响应,以突出生物技术应用的可能性。我们的结果在一起,对LSR2在该医学和生物技术相关的细菌门廊中的沉默和沉默形状进化网络扩张提供了全面的见解。

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