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首页> 外文期刊>MBio >Regulation of the Arginine Deiminase System by ArgR2 Interferes with Arginine Metabolism and Fitness of Streptococcus pneumoniae
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Regulation of the Arginine Deiminase System by ArgR2 Interferes with Arginine Metabolism and Fitness of Streptococcus pneumoniae

机译:ArgR2调节精氨酸脱亚氨酶系统干扰精氨酸代谢和肺炎链球菌的适应性

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ABSTRACT Streptococcus pneumoniae is auxotrophic for arginine, and molecular analysis of the pneumococcal genome showed that the gene encoding an arginine-ornithine antiporter (ArcD) is organized in a cluster together with the arcABC genes encoding the arginine deiminase system (ADS) of pneumococci. The ADS consists of the arginine deiminase (AD), the catabolic ornithine carbamoyltransferase (cOCT), and the carbamate kinase (CK). Pneumococcal genomes contain three ArgR-type regulators (ArgR1, ArgR2, and AhrC) that are supposed to be involved in the regulation of arginine metabolism. Here, we identified ArgR2 of TIGR4 as the regulator of the ADS and ArcD. ArgR2 binds to promoter sequences of the arc operon, and the deficiency of ArgR2 in TIGR4 abrogates expression of the ADS, including the arginine-ornithine antiporter ArcD. Intranasal infection of mice and real-time bioimaging revealed that deletion of the arcABCDT genes attenuates TIGR4. However, the acute-pneumonia model and coinfection experiments indicated that the arginine-ornithine antiporter ArcD is essential to maintain fitness, while the deficiency of ADS enzymes has a minor impact on pneumococcal fitness under in vivo conditions. Strikingly, argR2 mutant TIGR4 outcompeted the wild type in the respiratory tract, suggesting an increase in fitness and further regulatory functions of ArgR2. In contrast to TIGR4, other pneumococci, such as D39, lacking expression of ArgR2, constitutively express the ADS with a truncated nonfunctional AD. On the basis of these results, we propose that the arginine-ornithine antiporter is essential to maintain pneumococcal fitness and that the genes of the ADS cluster are positively regulated in a strain-specific manner by ArgR2. IMPORTANCE Pneumococci are the major etiologic agents of community-acquired pneumonia, causing more than 1.5 million deaths annually worldwide. These versatile pathogens are highly adapted to the nutrients provided by the host niches encountered. Physiological fitness is of major importance for colonization of the nasopharyngeal cavity and dissemination during invasive infections. This work identifies the regulator ArgR2 as the activator of the S.?pneumoniae TIGR4 ADS and the arginine-ornithine transporter ArcD, which is needed for uptake of the essential amino acid arginine. Although ArgR2 activates ArcD expression and uptake of arginine is required to maintain pneumococcal fitness, the deficiency of ArgR2 increases TIGR4 virulence under in vivo conditions, suggesting that other factors regulated by ArgR2 counterbalance the reduced uptake of arginine by ArcD. Thus, this work illustrates that the physiological homeostasis of pneumococci is complex and that ArgR2 plays a key role in maintaining bacterial fitness.
机译:摘要肺炎链球菌是精氨酸的营养缺陷型,对肺炎球菌基因组进行分子分析表明,编码精氨酸-鸟氨酸反转运蛋白(ArcD)的基因与编码肺炎球菌的精氨酸脱亚氨酶系统(ADS)的arCABC基因组成一个簇。 ADS由精氨酸脱亚氨酶(AD),分解代谢的鸟氨酸氨基甲酰基转移酶(cOCT)和氨基甲酸酯激酶(CK)组成。肺炎球菌基因组包含三个ArgR型调节子(ArgR1,ArgR2和AhrC),它们应该参与精氨酸代谢的调节。在这里,我们确定了TIGR4的ArgR2是ADS和ArcD的调节剂。 ArgR2与反角操纵子的启动子序列结合,TIGR4中ArgR2的缺乏消除了ADS的表达,包括精氨酸-鸟氨酸反转运蛋白ArcD。小鼠的鼻内感染和实时生物成像显示,arcABCDT基因的缺失减弱了TIGR4。但是,急性肺炎模型和合并感染实验表明,精氨酸-鸟氨酸反转运蛋白ArcD对于维持健康至关重要,而ADS酶的缺乏在体内条件下对肺炎球菌的健康影响较小。令人惊讶的是,argR2突变体TIGR4在呼吸道中胜过野生型,表明ArgR2的适应性和进一步调节功能增强。与TIGR4相反,其他缺少ArgR2表达的肺炎球菌,例如D39,组成性表达具有截短的无功能AD的ADS。根据这些结果,我们提出精氨酸-鸟氨酸的反向转运蛋白对于维持肺炎球菌的适应性至关重要,而ADS簇的基因则受ArgR2株特异性调控。重要事项肺炎球菌是社区获得性肺炎的主要病因,每年在全球造成超过150万人死亡。这些多功能病原体高度适应所遇到的宿主生态位所提供的营养。生理适应性对于侵袭性感染期间鼻咽腔的定植和传播至关重要。这项工作确定调节剂ArgR2为肺炎链球菌TIGR4 ADS的激活剂和精氨酸-鸟氨酸转运蛋白ArcD,这是必需氨基酸精氨酸的摄取。尽管ArgR2激活ArcD表达并需要摄取精氨酸来维持肺炎链球菌适应性,但ArgR2的缺乏会提高体内条件下的TIGR4毒力,这表明受ArgR2调节的其他因素可以抵消ArcD减少的精氨酸摄取。因此,这项工作说明肺炎球菌的生理稳态是复杂的,并且ArgR2在维持细菌适应性中起关键作用。

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