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Laboratory Adaptation of Bordetella pertussis Is Associated with the Loss of Type Three Secretion System Functionality

机译:百日咳博德特氏菌的实验室适应与三型分泌系统功能的丧失有关

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Although Bordetella pertussis contains and transcribes loci encoding type III secretion system (TTSS) homologues, expression of TTSS-associated proteins has been reported only for non-laboratory-adapted Irish clinical isolates. Here we confirm such a result for clinical isolates obtained from patients treated in Argentinean hospitals. Moreover, we demonstrate that the expression of TTSS-associated proteins is independent both of the year in which the isolate was obtained and of the types of polymorphic alleles for other virulence factors but is dependent on environmental growth conditions. Interestingly, we observed that TTSS-associated protein expression is lost after successive in vitro passages but becomes operative again when bacteria come into contact with the host. This in vivo activation of TTSS expression was observed not only for clinical isolates previously adapted to the laboratory after successive in vitro passages but also for vaccine strains that did not express the system in vitro. The reversibility of TTSS expression, demonstrated by its switching off-on when the bacterium comes into contact with the host, appears to be an adaptive response of this pathogen.
机译:尽管百日咳博德特氏菌含有并转录编码III型分泌系统(TTSS)同源物的基因座,但仅针对非实验室适应性爱尔兰临床分离株报道了TTSS相关蛋白的表达。在这里,我们从阿根廷医院治疗的患者中分离出的临床分离株证实了这一结果。此外,我们证明,TTSS相关蛋白的表达与获得分离株的年份以及其他致病因子的多态性等位基因的类型均无关,但取决于环境生长条件。有趣的是,我们观察到TTSS相关蛋白的表达在连续的体外传代后丢失,但是当细菌与宿主接触时再次起作用。不仅在连续的 传代后适应实验室的临床分离株中观察到TTSS表达的这种体内激活,对于不表达系统 em>体外。 TTSS表达的可逆性由细菌与宿主接触时关闭表示,似乎是这种病原体的适应性反应。

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