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CpxRA Regulates Mutualism and Pathogenesis in Xenorhabdus nematophila

机译:CpxRA调节线虫病中​​线虫的相互关系和发病机理。

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The CpxRA signal transduction system, which in Escherichia coli regulates surface structure assembly and envelope maintenance, is involved in the pathogenic and mutualistic interactions of the entomopathogenic bacterium Xenorhabdus nematophila. When ΔcpxR1 cells were injected into Manduca sexta insects, the time required to kill 50% of the insects was twofold longer than the time observed for wild-type cells and the ΔcpxR1 cells ultimately killed 16% fewer insects than wild-type cells killed. During mutualistic colonization of Steinernema carpocapsae nematodes, the ΔcpxR1 mutant achieved colonization levels that were only 38% of the wild-type levels. ΔcpxR1 cells exhibited an extended lag phase when they were grown in liquid LB or hemolymph, formed irregular colonies on solid medium, and had a filamentous cell morphology. A mutant with a cpxRp-lacZ fusion had peaks of expression in the log and stationary phases that were conversely influenced by CpxR; the ΔcpxR1 mutant produced 130 and 17% of the wild-type β-galactosidase activity in the log and stationary phases, respectively. CpxR positively influences motility and secreted lipase activity, as well as transcription of genes necessary for mutualistic colonization of nematodes. CpxR negatively influences the production of secreted hemolysin, protease, and antibiotic activities, as well as the expression of mrxA, encoding the pilin subunit. Thus, X. nematophila CpxRA controls expression of envelope-localized and secreted products, and its activity is necessary for both mutualistic and pathogenic functions.
机译:CpxRA信号转导系统在大肠杆菌中调节表面结构的装配和包膜的维持,它参与了致病性细菌线虫Xenorhabdus nematophila的致病性和相互影响。当将ΔcpxR1细胞注射到六头满天星昆虫中时,杀死50%的昆虫所需的时间是野生型细胞观察到的时间的两倍,并且最终杀死ΔcpxR1的昆虫比杀死野生型细胞少16% 。在Steinernema carpocapsae线虫的共生定殖过程中,ΔcpxR1突变体的定殖水平仅为野生型水平的38%。 ΔcpxR1细胞在液体LB或血淋巴中生长时表现出延长的迟滞期,在固体培养基上形成不规则菌落,并具有丝状细胞形态。具有cpxRp-lacZ融合的突变体在对数期和固定期均具有表达峰,相反,受CpxR影响。 ΔcpxR1突变体在对数期和固定期分别产生了130%和17%的野生型β-半乳糖苷酶活性。 CpxR积极影响运动性和分泌的脂肪酶活性,以及​​线虫相互定居所需的基因转录。 CpxR对分泌的溶血素,蛋白酶和抗生素活性以及编码菌毛蛋白亚基的mrxA的表达产生负面影响。因此,线虫嗜血杆菌CpxRA控制着被膜定位和分泌的产物的表达,其活性对于相互的和致病的功能都是必需的。

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