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A long-term epigenetic memory switch controls bacterial virulence bimodality

机译:长期表观遗传记忆开关控制细菌毒力双峰

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摘要

When pathogens enter the host, sensing of environmental cues activates the expression of virulence genes. Opposite transition of pathogens from activating to non-activating conditions is poorly understood. Interestingly, variability in the expression of virulence genes upon infection enhances colonization. In order to systematically detect the role of phenotypic variability in enteropathogenic E. coli (EPEC), an important human pathogen, both in virulence activating and non-activating conditions, we employed the ScanLag methodology. The analysis revealed a bimodal growth rate. Mathematical modeling combined with experimental analysis showed that this bimodality is mediated by a hysteretic memory-switch that results in the stable co-existence of non-virulent and hyper-virulent subpopulations, even after many generations of growth in non-activating conditions. We identified the per operon as the key component of the hysteretic switch. This unique hysteretic memory switch may result in persistent infection and enhanced host-to-host spreading.>DOI:
机译:当病原体进入宿主时,对环境线索的感知激活了毒力基因的表达。病原体从激活状态向非激活状态的相反转变了解得很少。有趣的是,感染后毒力基因表达的变异性增强了定植。为了系统地检测表型变异性在致病性和非致病性条件下肠道致病性大肠杆菌(EPEC)(一种重要的人类病原体)中的作用,我们采用了ScanLag方法。分析显示双峰增长率。数学建模与实验分析相结合表明,这种双峰态是由滞后记忆开关介导的,即使在非激活条件下生长了多代后,该开关仍可导致非毒性和超毒性亚种群稳定共存。我们将每个操纵子确定为迟滞开关的关键组件。这种独特的滞后记忆开关可能会导致持续感染并增强宿主之间的传播。> DOI:

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