Navarre William Wiley, Porwollik Steffen, Wang Yipeng, McClelland Michael, Rosen Henry, Libby Stephen J, Fang Ferric C
Department of Laboratory Medicine, University of Washington, Seattle, WA 98195, USA.
Science. 2006 Jul 14;313(5784):236-8. doi: 10.1126/science.1128794. Epub 2006 Jun 8.
Horizontal gene transfer plays a major role in microbial evolution. However, newly acquired sequences can decrease fitness unless integrated into preexisting regulatory networks. We found that the histone-like nucleoid structuring protein (H-NS) selectively silences horizontally acquired genes by targeting sequences with GC content lower than the resident genome. Mutations in hns are lethal in Salmonella unless accompanied by compensatory mutations in other regulatory loci. Thus, H-NS provides a previously unrecognized mechanism of bacterial defense against foreign DNA, enabling the acquisition of DNA from exogenous sources while avoiding detrimental consequences from unregulated expression of newly acquired genes. Characteristic GC/AT ratios of bacterial genomes may facilitate discrimination between a cell's own DNA and foreign DNA.
水平基因转移在微生物进化中起着重要作用。然而,新获得的序列除非整合到预先存在的调控网络中,否则会降低适应性。我们发现,类组蛋白核仁结构蛋白(H-NS)通过靶向GC含量低于宿主基因组的序列来选择性地沉默水平获得的基因。在沙门氏菌中,hns基因突变是致死性的,除非其他调控位点同时发生补偿性突变。因此,H-NS提供了一种此前未被认识的细菌抵御外源DNA的机制,使得细菌能够从外源获取DNA,同时避免新获得基因的无节制表达带来的有害后果。细菌基因组特有的GC/AT比率可能有助于区分细胞自身的DNA和外源DNA。