首页> 美国卫生研究院文献>Frontiers in Cellular and Infection Microbiology >The effect of low shear force on the virulence potential of Yersinia pestis: new aspects that space-like growth conditions and the final frontier can teach us about a formidable pathogen
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The effect of low shear force on the virulence potential of Yersinia pestis: new aspects that space-like growth conditions and the final frontier can teach us about a formidable pathogen

机译:低剪切力对鼠疫耶尔森氏菌的致病力的影响:类空生长条件和最终疆界可以教会我们有关强大病原体的新方面

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摘要

Manned space exploration has created a need to evaluate the effects of space-like stress (SLS) on pathogenic and opportunistic microbes. Interestingly, several Gram-negative enteric pathogens, e.g., Salmonella enterica serovar Typhimurium, have revealed a transient hyper-virulent phenotype following simulated microgravity (SMG) or actual space flight exposures. We have explored the virulence potential of Yersinia pestis KIM/D27 (YP) following exposure to mechanical low shear forces associated with SMG. Our experimental results demonstrated that SMG-grown YP was decreased in its induced HeLa cell cytotoxicity, suggesting that SMG somehow compromises T3SS functions. This was confirmed by an actual reduced amount of effector protein production and secretion through the T3SS injectisome. Also, SMG-grown YP proliferated less than their NG-grown counterparts did during an 8-h macrophage infection. Presently, we are evaluating the influence of SMG on various KIM/D27 mutant strains to further understanding of our initial phenomenology described above. Taken together, characterizing YP grown under the low shear forces of SMG can provide new insights into its pathogenesis and potentially uncover new targets that could be exploited for the development of novel antimicrobials as well as potential live-attenuated vaccines.
机译:载人航天探索创造了一种评估像空间压力(SLS)对致病性和机会性微生物的影响的需求。有趣的是,几种革兰氏阴性肠病原体,例如肠沙门氏菌血清鼠伤寒沙门氏菌,在模拟微重力(SMG)或实际的太空飞行暴露后已经显示出短暂的高毒表型。我们已经研究了鼠疫耶尔森氏菌KIM / D27(YP)在暴露于与SMG相关的机械低剪切力后的毒性潜能。我们的实验结果表明,生长在SMG上的YP诱导的HeLa细胞细胞毒性降低,这表明SMG在某种程度上损害了T3SS的功能。通过T3SS注射体实际减少的效应蛋白产量和分泌量可以证实这一点。同样,在8小时巨噬细胞感染期间,SMG生长的YP的增殖少于其NG生长的YP。目前,我们正在评估SMG对各种KIM / D27突变菌株的影响,以进一步了解我们上面描述的初始现象。综上所述,表征在SMG的低剪切力下生长的YP可以提供对其发病机理的新见解,并可能发现新靶标,这些靶标可用于开发新型抗菌素以及潜在的减毒活疫苗。

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