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H-NS Facilitates Sequence Diversification of Horizontally Transferred DNAs during Their Integration in Host Chromosomes

机译:H-NS促进水平转移的DNA整合入宿主染色体过程中的序列多样化。

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摘要

Bacteria can acquire new traits through horizontal gene transfer. Inappropriate expression of transferred genes, however, can disrupt the physiology of the host bacteria. To reduce this risk, Escherichia coli expresses the nucleoid-associated protein, H-NS, which preferentially binds to horizontally transferred genes to control their expression. Once expression is optimized, the horizontally transferred genes may actually contribute to E. coli survival in new habitats. Therefore, we investigated whether and how H-NS contributes to this optimization process. A comparison of H-NS binding profiles on common chromosomal segments of three E. coli strains belonging to different phylogenetic groups indicated that the positions of H-NS-bound regions have been conserved in E. coli strains. The sequences of the H-NS-bound regions appear to have diverged more so than H-NS-unbound regions only when H-NS-bound regions are located upstream or in coding regions of genes. Because these regions generally contain regulatory elements for gene expression, sequence divergence in these regions may be associated with alteration of gene expression. Indeed, nucleotide substitutions in H-NS-bound regions of the ybdO promoter and coding regions have diversified the potential for H-NS-independent negative regulation among E. coli strains. The ybdO expression in these strains was still negatively regulated by H-NS, which reduced the effect of H-NS-independent regulation under normal growth conditions. Hence, we propose that, during E. coli evolution, the conservation of H-NS binding sites resulted in the diversification of the regulation of horizontally transferred genes, which may have facilitated E. coli adaptation to new ecological niches.
机译:细菌可以通过水平基因转移获得新的性状。但是,转移基因的不适当表达会破坏宿主细菌的生理。为了降低这种风险,大肠杆菌表达了类核苷酸相关蛋白H-NS,该蛋白优先结合水平转移的基因以控制其表达。优化表达后,水平转移的基因可能实际上有助于新栖息地中的大肠杆菌存活。因此,我们调查了H-NS是否以及如何对这一优化过程做出了贡献。在属于不同系统发生群的三种大肠杆菌菌株的共同染色体区段上比较H-NS结合谱,表明H-NS结合区的位置在大肠杆菌菌株中是保守的。仅当H-NS结合区位于基因的上游或在基因的编码区中时,H-NS结合区的序列似乎比H-NS未结合区的差异更大。因为这些区域通常包含用于基因表达的调控元件,所以这些区域中的序列差异可能与基因表达的改变有关。实际上,ybdO启动子的H-NS结合区和编码区中的核苷酸取代使大肠杆菌菌株中H-NS非依赖性负调控的潜力多样化。这些菌株中的ybdO表达仍受到H-NS的负调控,从而降低了在正常生长条件下H-NS依赖性调控的作用。因此,我们提出,在大肠杆菌进化过程中,H-NS结合位点的保守导致水平转移基因调控的多样化,这可能有助于大肠杆菌适应新的生态位。

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