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Transcription-coupled DNA supercoiling dictates the chromosomal arrangement of bacterial genes

机译:转录偶联DNA超螺旋决定细菌基因的染色体排列

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Over the recent decade, the central importance of DNA supercoiling in chromosome organization and global gene regulation of bacteria became more and more visible. With a regulon comprising more than 2000 genes in Escherichia coli, DNA supercoiling is among the most influential regulators of gene expression found in bacteria so far. However, the mechanism creating thousands of diverse temporal gene expression patterns coordinated by DNA supercoiling remains unclear. In this study we show that a specific chromosomal arrangement of genes modulates the local levels of DNA supercoiling at gene promoters via transcription-coupled DNA supercoiling (TCDS) in the model organism E. coli. Our findings provide a consistent explanation for the strong positive coupling of temporal gene expression patterns of neighboring genes. Using comparative genomics we are furthermore able to provide evidence that TCDS is a driving force for the evolution of chromosomal gene arrangement patterns in other Enterobacteriaceae. With the currently available data of promoter supercoiling sensitivity we prove that the same principle is applicable also for the evolutionary distant gram-positive pathogenic bacterium Strepto-coccus pneumoniae. Moreover, our findings are fully consistent with recent investigations concerning the regulatory impact of TCDS on gene pairs in eukaryots underpinning the broad applicability of our analysis.
机译:在最近的十年中,DNA超螺旋在染色体组织和细菌全局基因调控中的中心重要性越来越明显。凭借在大肠杆菌中包含2000多个基因的调节子,DNA超螺旋是迄今为止在细菌中发现的最具影响力的基因表达调节剂之一。但是,尚不清楚建立由DNA超螺旋协调的数千种不同时间基因表达模式的机制。在这项研究中,我们表明基因的特定染色体排列可通过模型生物大肠杆菌中的转录偶联DNA超螺旋(TCDS)调节基因启动子上DNA超螺旋的局部水平。我们的发现为邻近基因的时间基因表达模式的强正耦合提供了一致的解释。使用比较基因组学,我们还能够提供证据,证明TCDS是其他肠杆菌科细菌中染色体基因排列模式演变的驱动力。利用目前可获得的启动子超螺旋敏感性数据,我们证明了相同的原理也适用于进化性远距离革兰氏阳性致病菌肺炎链球菌。此外,我们的发现与关于TCDS对真核生物基因对调控影响的最新研究完全一致,这支持了我们的分析的广泛适用性。

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