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Multiple intraintestinal signals coordinate the regulation of Vibrio cholerae virulence determinants

机译:协调多个intraintestinal信号霍乱弧菌毒力的调节决定因素

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Vibrio cholerae is a Gram-negative motile bacterium capable of causing fatal pandemic disease in humans via oral ingestion of contaminated water or food. Within the human intestine, the motile vibrios must evade the innate host defense mechanisms, penetrate the mucus layer covering the small intestine, adhere to and multiply on the surface of the microvilli and cause disease via the action of cholera toxin. The explosive diarrhea associated with V. cholerae intestinal colonization leads to dissemination of the vibrios back into the environment to complete this phase of the life cycle. The host phase of the vibrio life cycle is made possible via the concerted action of a signaling cascade that controls the synthesis of V. cholerae colonization determinants. These virulence proteins are coordinately synthesized in response to specific host signals that are still largely undefined. A more complete understanding of the molecular events involved in the V. cholerae recognition of intraintestinal signals and the subsequent transcriptional response will provide important information regarding how pathogenic bacteria establish infection and provide novel methods for treating and/or preventing bacterial infections such as Asiatic cholera. This review will summarize what is currently known in regard to host intraintestinal signals that inform the complex ToxR regulatory cascade in order to coordinate in a spatial and temporal fashion virulence protein synthesis within the human small intestine.
机译:霍乱弧菌是一种革兰氏阴性能动的细菌能导致致命的流行病疾病在人类通过口服摄入受污染的水或食物。肠,能动的弧菌属必须回避天生的宿主防御机制,穿透黏液层包括小肠、坚持并把表面的微绒毛并通过霍乱的行动引起疾病毒素。霍乱弧菌肠道殖民导致弧菌属回的传播环境来完成这一阶段的生活周期。通过采取协调一致的行动成为可能信号级联控制的合成霍乱弧菌殖民因素。毒性蛋白协调合成针对特定主机信号在很大程度上仍然未定义的。对所涉及的分子事件的理解intraintestinal的霍乱弧菌的认可信号和随后的转录反应将提供重要的信息病原菌如何建立感染和治疗提供新方法和/或防止细菌感染等霍乱。目前已知的关于主机吗intraintestinal信号,通知复杂ToxR监管级联为了协调空间和时间的方式毒性蛋白人类小肠内合成。

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