化脓性链球菌甘露糖磷酸转移酶系统(Man-PTS)影响抗菌活性和小生境特异性鼻咽感染。

IF 2.7 3区 生物学 Q3 MICROBIOLOGY
Journal of Bacteriology Pub Date : 2025-04-17 Epub Date: 2025-03-26 DOI:10.1128/jb.00492-24
Amanda C Marple, Blake A Shannon, Aanchal Rishi, Lana Estafanos, Brent D Armstrong, Veronica Guariglia-Oropeza, Stephen W Tuffs, John K McCormick
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引用次数: 0

摘要

化脓性链球菌是一种人类适应的病原体,可引起多种疾病,包括咽炎和皮肤感染。虽然这种细菌产生许多毒力因子,但如何与宿主微生物群竞争尚不清楚。在这里,我们检测了化脓性链球菌MGAS8232的抗菌活性,它可以阻止黄体微球菌的生长。当细胞在添加半乳糖的M17培养基中,在5% CO2中生长时,产生了这种活性;然而,添加替代糖结合基因组测序实验表明,抗菌表型与经典细菌素无关。为了进一步确定参与产生这种活性的基因,化脓链球菌MGAS8232的转座子突变文库鉴定出甘露糖磷酸转移酶系统(Man-PTS),一种主要的糖转运体,对抗菌表型很重要。与抗菌活性相关的功能缺失转座子突变体也被鉴定为参与替代糖的利用,此外,Man-PTS进一步被鉴定为细菌素操纵子突变体中无意的继发性突变。Man-PTS突变体对糖的利用表明,半乳糖、甘露糖和n-乙酰氨基葡萄糖的利用受损。在高、低葡萄糖浓度下的RNA-seq实验进一步证实了Man-PTS是一种葡萄糖转运体;然而,转录调节因子或毒力因子不受Man-PTS缺失的影响。Man-PTS的缺失在鼻咽感染小鼠模型中显示出缺陷,但没有皮肤感染。这项工作表明,化脓性链球菌利用聚糖提供的替代糖的能力可能在急性感染和与鼻咽部内源性微生物群的相互作用中发挥作用。化脓性爬行球菌每年造成50多万人死亡,主要原因是侵袭性感染和感染后后遗症,尽管最常见的症状包括咽炎和脓疱疮。化脓性链球菌可以通过替代糖代谢来适应环境。在这里,我们发现了一种与细菌素无关的抗菌表型,而是替代糖代谢的副产物。甘露糖磷酸转移酶系统参与了抗菌药物的生产,并且对于化脓性链球菌利用替代糖和建立鼻咽感染而不是皮肤感染也很重要。总体而言,本研究确定了化脓性链球菌与内源性微生物群相互作用的潜在策略,并进一步阐明了糖代谢在急性上呼吸道感染中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Streptococcus pyogenes mannose phosphotransferase system (Man-PTS) influences antimicrobial activity and niche-specific nasopharyngeal infection.

Streptococcus pyogenes is a human-adapted pathogen that can cause multiple diseases, including pharyngitis and skin infections. Although this bacterium produces many virulence factors, how S. pyogenes competes with the host microbiota is not well understood. Here, we detected antimicrobial activity from S. pyogenes MGAS8232 that prevented the growth of Micrococcus luteus. This activity was produced when cells were grown in 5% CO2 in M17 media supplemented with galactose; however, the addition of alternative sugars coupled with genome sequencing experiments revealed that the antimicrobial phenotype was not related to classical bacteriocins. To further determine genes involved in the production of this activity, a transposon mutant library in S. pyogenes MGAS8232 identified the mannose phosphotransferase system (Man-PTS), a major sugar transporter, as important for the antimicrobial phenotype. Loss-of-function transposon mutants linked to the antimicrobial activity were identified to also be involved in alternative sugar utilization, and additionally, the Man-PTS was further identified from an inadvertent secondary mutation in a bacteriocin operon mutant. Sugar utilization in the Man-PTS mutants demonstrated that galactose, mannose, and N-acetylglucosamine utilization was impaired. RNA-seq experiments in high and low glucose concentrations further characterized the Man-PTS as a glucose transporter; however, transcriptional regulators or virulence factors were not affected with the loss of the Man-PTS. Deletion of Man-PTS demonstrated defects in a mouse model of nasopharyngeal infection but not skin infection. This work suggests that the ability of S. pyogenes to utilize alternative sugars presented by glycans may play a role in acute infection and interactions with the endogenous microbial population existing in the nasopharynx.IMPORTANCEStreptococcus pyogenes is responsible for over 500,000 deaths per year primarily due to invasive infections and post-infection sequelae, although the most common manifestations include pharyngitis and impetigo. S. pyogenes can adapt to its environment through alternative sugar metabolism. Here, we identified an antimicrobial phenotype that was not bacteriocin-related but a by-product of alternative sugar metabolism. The mannose phosphotransferase system was involved in the production of the antimicrobial and was also important for S. pyogenes to utilize alternative sugars and establish nasopharyngeal infection but not skin infection. Overall, this study identified potential strategies used by S. pyogenes for interactions with the endogenous microbiota and further elucidated the importance of sugar metabolism in acute upper respiratory tract infection.

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来源期刊
Journal of Bacteriology
Journal of Bacteriology 生物-微生物学
CiteScore
6.10
自引率
9.40%
发文量
324
审稿时长
1.3 months
期刊介绍: The Journal of Bacteriology (JB) publishes research articles that probe fundamental processes in bacteria, archaea and their viruses, and the molecular mechanisms by which they interact with each other and with their hosts and their environments.
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