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首页> 外文期刊>MBio >The Ferrous Iron-Responsive BqsRS Two-Component System Activates Genes That Promote Cationic Stress Tolerance
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The Ferrous Iron-Responsive BqsRS Two-Component System Activates Genes That Promote Cationic Stress Tolerance

机译:黑色铁响应性BqsRS两组分系统激活可促进阳离子胁迫耐受性的基因

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ABSTRACT The physiological resistance of pathogens to antimicrobial treatment is a severe problem in the context of chronic infections. For example, the mucus-filled lungs of cystic fibrosis (CF) patients are readily colonized by diverse antibiotic-resistant microorganisms, including Pseudomonas aeruginosa . Previously, we showed that bioavailable ferrous iron [Fe(II)] is present in CF sputum at all stages of infection and constitutes a significant portion of the iron pool at advanced stages of lung function decline [R. C. Hunter et al., mBio 4(4):e00557-13, 2013]. P.?aeruginosa , a dominant CF pathogen, senses Fe(II) using a two-component signal transduction system, BqsRS, which is transcriptionally active in CF sputum [R. C. Hunter et al., mBio 4(4):e00557-13, 2013; N. N. Kreamer, J. C. Wilks, J. J. Marlow, M. L. Coleman, and D. K. Newman, J Bacteriol 194:1195–1204, 2012]. Here, we show that an RExxE motif in BqsS is required for BqsRS activation. Once Fe(II) is sensed, BqsR binds a tandem repeat DNA sequence, activating transcription. The BqsR regulon—defined through iterative bioinformatic predictions and experimental validation—includes several genes whose products are known to drive antibiotic resistance to aminoglycosides and polymyxins. Among them are genes encoding predicted determinants of polyamine transport and biosynthesis. Compared to the wild type, bqsS and bqsR deletion mutants are sensitive to high levels of Fe(II), produce less spermidine in high Fe(II), and are more sensitive to tobramycin and polymyxin B but not arsenate, chromate, or cefsulodin. BqsRS thus mediates a physiological response to Fe(II) that guards the cell against positively charged molecules but not negatively charged stressors. These results suggest Fe(II) is an important environmental signal that, via BqsRS, bolsters tolerance of a variety of cationic stressors, including clinically important antimicrobial agents. IMPORTANCE Clearing chronic infections is challenging due to the physiological resistance of opportunistic pathogens to antibiotics. Effective treatments are hindered by a lack of understanding of how these organisms survive in situ . Fe(II) is typically present at micromolar levels in soils and sedimentary habitats, as well as in CF sputum. All P.?aeruginosa strains possess a two-component system, BqsRS, that specifically senses extracellular Fe(II) at low micromolar concentrations. Our work shows that BqsRS protects the cell against cationic perturbations to the cell envelope as well as low pH and reduction potential (Eh), conditions under which Fe~(2+)is stable. Fe(II) can thus be understood as a proxy for a broader environmental state; the cellular response to its detection may help rationalize the resistance of P.?aeruginosa to clinically important cationic antibiotics. This finding demonstrates the importance of considering environmental chemistry when exploring mechanisms of microbial survival in habitats that include the human body.
机译:摘要在慢性感染的情况下,病原体对抗菌素治疗的生理抗性是一个严重的问题。例如,囊性纤维化(CF)患者的充满粘液的肺很容易被包括铜绿假单胞菌在内的多种抗生素抗性微生物定殖。以前,我们显示了在感染的所有阶段,CF痰中都存在可生物利用的亚铁[Fe(II)],在肺功能下降的晚期,它构成了铁库的重要部分[R. C.Hunter等人,mBio 4(4):e00557-13,2013]。铝绿假单胞菌是CF的主要病原体,它使用两组分信号转导系统BqsRS感应Fe(II),该系统在CF痰中具有转录活性。 C.Hunter et al。,mBio 4(4):e00557-13,2013; N. N. Kreamer,J。C. Wilks,J。J. Marlow,M。L. Coleman和D. K. Newman,J Bacteriol 194:1195–1204,2012年]。在这里,我们显示BqsRS激活需要BqsS中的RExxE主题。一旦检测到Fe(II),BqsR就会结合一个串联重复DNA序列,从而激活转录。通过反复的生物信息学预测和实验验证定义的BqsR调控子包括几个基因,这些基因的产物已知可驱动抗生素对氨基糖苷类和多粘菌素的抗性。其中包括编码预测的多胺转运和生物合成决定因素的基因。与野生型相比,bqsS和bqsR缺失突变体对高水平的Fe(II)敏感,在高Fe(II)中产生较少的亚精胺,对妥布霉素和多粘菌素B更敏感,但对砷酸盐,铬酸盐或头孢磺啶不敏感。因此,BqsRS介导了对Fe(II)的生理反应,从而保护细胞免受带正电的分子的侵害,而不保护带负电的应激源。这些结果表明,Fe(II)是一种重要的环境信号,可通过BqsRS增强各种阳离子应激源(包括临床上重要的抗微生物剂)的耐受性。重要由于机会性病原体对抗生素的生理耐受性,清除慢性感染具有挑战性。对这些生物体如何在原地生存缺乏了解阻碍了有效的治疗。 Fe(II)通常以微摩尔水平存在于土壤和沉积物生境以及CF痰中。所有的古绿脓杆菌菌株均具有两组分系统BqsRS,可在低微摩尔浓度下特异性检测细胞外Fe(II)。我们的工作表明,BqsRS保护细胞免受阳离子对细胞包膜的扰动以及低pH和还原电位(Eh)(在Fe〜(2+)稳定的条件下)。因此,可以将Fe(II)理解为更广泛的环境状态的代表。细胞对其检测的反应可能有助于合理化铜绿假单胞菌对临床上重要的阳离子抗生素的耐药性。这一发现表明,在探索包括人体在内的生境中微生物生存机制时,考虑环境化学的重要性。

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