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Single Nucleotide Polymorphisms in Regulator-Encoding Genes Have an Additive Effect on Virulence Gene Expression in a Vibrio cholerae Clinical Isolate

机译:编码调节剂的基因中的单核苷酸多态性对霍乱弧菌临床分离株中毒力基因的表达具有累加作用。

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Vibrio cholerae is the etiological agent of the infectious disease cholera, which is characterized by vomiting and severe watery diarrhea. Recently, V.?cholerae clinical isolates have demonstrated increased virulence capabilities, causing more severe symptoms with a much higher rate of disease progression than previously observed. We have identified single nucleotide polymorphisms (SNPs) in four virulence-regulatory genes ( hapR , hns , luxO , and vieA ) of a hypervirulent V.?cholerae clinical isolate, MQ1795. Herein, all SNPs and SNP combinations of interest were introduced into the prototypical El Tor reference strain N16961, and the effects on the production of numerous virulence-related factors, including cholera toxin (CT), the toxin-coregulated pilus (TCP), and ToxT, were analyzed. Our data show that triple-SNP ( hapR hns luxO and hns luxO vieA ) and quadruple-SNP combinations produced the greatest increases in CT, TCP, and ToxT production. The hns and hns luxO SNP combinations were sufficient for increased TCP and ToxT production. Notably, the hns luxO vieA triple-SNP combination strain produced TCP and ToxT levels similar to those of MQ1795. Certain SNP combinations ( hapR and hapR vieA ) had the opposite effect on CT, TCP, and ToxT expression. Interestingly, the hns vieA double-SNP combination strain increased TCP production while decreasing CT production. Our findings suggest that SNPs identified in the four regulatory genes, in various combinations, are associated with increased virulence capabilities observed in V.?cholerae clinical isolates. These studies provide insight into the evolution of highly virulent strains. IMPORTANCE Cholera, an infectious disease of the small intestine caused by the aquatic bacterium Vibrio cholerae , often results in vomiting and acute watery diarrhea. If left untreated or if the response is too slow, the symptoms can quickly lead to extreme dehydration and ultimately death of the patient. Recent anecdotal evidence of cholera patients suffering from increasingly severe symptoms and of disease progression at a much higher rate than previously observed has emerged. As recent cholera outbreaks caused by increasingly virulent strains have resulted in higher mortality rates, the need to investigate the mechanism(s) allowing this observed increased virulence is apparent. The significance of our research is in identifying the mechanism for increased virulence capabilities, which will allow the development of a model that will greatly enhance our understanding of cholera disease and V.?cholerae pathogenesis, leading to broader biomedical impacts, as cholera serves as a model for other enteric diarrheal diseases.
机译:霍乱弧菌是霍乱传染病的病原体,其特征在于呕吐和严重的水样腹泻。最近,霍乱弧菌临床分离株已显示出增强的毒力,与以前观察到的相比,可引起更严重的症状,并具有更高的疾病发展速度。我们已经确定了高毒力霍乱弧菌临床分离株MQ1795的四个毒力调节基因(hapR,hns,luxO和vieA)中的单核苷酸多态性(SNP)。在这里,所有感兴趣的SNP和SNP组合都被引入到典型的El Tor参考菌株N16961中,并影响了许多与毒力相关的因子的产生,包括霍乱毒素(CT),毒素成核菌毛(TCP)和ToxT,进行了分析。我们的数据显示,三重SNP(hapR hns luxO和hns luxO vieA)和四重SNP组合在CT,TCP和ToxT产量上产生了最大的增长。 hns和hns luxO SNP组合足以增加TCP和ToxT的产生。值得注意的是,hns luxO vieA Triple-SNP组合菌株产生的TCP和ToxT水平与MQ1795相似。某些SNP组合(hapR和hapR vieA)对CT,TCP和ToxT表达有相反的影响。有趣的是,hns vieA双SNP组合菌株增加了TCP产量,同时降低了CT产量。我们的发现表明,在四种调节基因中以各种组合鉴定出的SNP与霍乱弧菌临床分离株中观察到的增加的毒力能力有关。这些研究提供了对高毒力菌株进化的见解。重要事项霍乱是由水生霍乱弧菌引起的小肠感染性疾病,通常会导致呕吐和急性水泻。如果不及时治疗或反应太慢,则症状会迅速导致极端脱水,最终导致患者死亡。最近出现的轶事证据表明,霍乱患者遭受了越来越严重的症状,并且疾病发展的速度比以前观察到的要高得多。由于最近由越来越强毒的菌株引起的霍乱暴发导致更高的死亡率,因此需要研究使这种观察到的毒力增加的机制是显而易见的。我们研究的意义在于确定增加毒力的机制,这将允许开发一个模型,该模型将大大增强我们对霍乱疾病和霍乱弧菌发病机理的了解,从而导致更广泛的生物医学影响,因为霍乱可以作为一种其他肠道腹泻疾病的模型。

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