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沙门氏菌亚种鼠伤寒血清型中微菌素 Y 的耐药机制和生理效应。

Resistance Mechanism and Physiological Effects of Microcin Y in Salmonella enterica subsp. Serovar Typhimurium.

机构信息

College of Veterinary Medicine, South China Agricultural Universitygrid.20561.30, Guangzhou, China.

Key Laboratory of Zoonosis Prevention and Control of Guangdong Province, Guangzhou, China.

出版信息

Microbiol Spectr. 2022 Dec 21;10(6):e0185922. doi: 10.1128/spectrum.01859-22. Epub 2022 Dec 1.

Abstract

Salmonella bacteria pose a significant threat to animal husbandry and human health due to their virulence and multidrug resistance. The lasso peptide MccY is a recently discovered antimicrobial peptide that acts against various serotypes of Salmonella. In this study, we further explore the resistance mechanism and activity of MccY. Mutants of Ton system genes, including , , and , in Salmonella enterica subsp. serovar Typhimurium were constructed, and the MICs to MccY exhibited significant increases in these deletion mutants compared to the MIC of the parent strain. Subsequently, MccY resistance was quantitatively analyzed, and these mutants also showed greatly reduced rates of killing, even with a high concentration of MccY. In addition, a minimal medium with low iron environment enhanced the sensitivity of these mutants to MccY. Measurements of a series of physiological indicators, including iron utilization, biofilm formation, and motility, demonstrated that MccY may decrease the virulence of Typhimurium. Transcriptomic analysis showed that iron utilization, biofilm formation, flagellar assembly, and virulence-related genes were downregulated to varying degrees when Typhimurium was treated with MccY. In conclusion, deletion of Ton system genes resulted in resistance to MccY and the susceptibility of these mutants to MccY was increased and differed under a low-iron condition. This lasso peptide can alter multiple physiological properties of Typhimurium. Our study will contribute to improve the knowledge and understanding of the mechanism of MccY resistance in Salmonella strains. The resistance of Salmonella to traditional antibiotics remains a serious challenge. Novel anti-Salmonella drugs are urgently needed to address the looming crisis. The newly identified antimicrobial peptide MccY shows broad prospects for development and application because of its obvious antagonistic effect on various serotypes of Salmonella. However, our previous study showed that the peptide could confer resistance to Salmonella by disrupting the receptor gene . In this study, we further explored the potential resistance mechanism of MccY and demonstrated the importance of the Salmonella Ton complex for MccY transport. Disruption in Ton system genes resulted in Typhimurium resistance to this peptide, and MccY could alter multiple bacterial physiological properties. In summary, this study further explored the resistance mechanism and antibacterial effect of MccY in Typhimurium and provided a scientific basis for its development and application.

摘要

沙门氏菌由于其毒力和多种药物耐药性,对畜牧业和人类健康构成重大威胁。最近发现的抗菌肽 MccY 是一种 lasso 肽,可对抗各种血清型的沙门氏菌。在这项研究中,我们进一步探讨了 MccY 的耐药机制和活性。构建了沙门氏菌肠亚种鼠伤寒血清型的 Ton 系统基因(包括 、 、和 )的突变体,与亲本菌株相比,这些缺失突变体对 MccY 的 MIC 值显著增加。随后,对 MccY 耐药性进行了定量分析,这些突变体的杀伤率也大大降低,即使使用高浓度的 MccY 也是如此。此外,在低铁环境的基本培养基中,这些突变体对 MccY 的敏感性增强。一系列生理指标的测量,包括铁的利用、生物膜的形成和运动性,表明 MccY 可能降低鼠伤寒菌的毒力。转录组分析表明,当鼠伤寒菌用 MccY 处理时,铁的利用、生物膜的形成、鞭毛的组装和与毒力相关的基因被不同程度地下调。总之,Ton 系统基因的缺失导致对 MccY 的耐药性,并且这些突变体对 MccY 的易感性在低铁条件下增加且不同。这种套索肽可以改变鼠伤寒菌的多种生理特性。我们的研究将有助于提高对沙门氏菌菌株中 MccY 耐药机制的认识和理解。沙门氏菌对传统抗生素的耐药性仍然是一个严重的挑战。急需新型抗沙门氏菌药物来应对迫在眉睫的危机。新发现的抗菌肽 MccY 由于对各种血清型的沙门氏菌具有明显的拮抗作用,因此具有广阔的开发和应用前景。然而,我们之前的研究表明,该肽可以通过破坏受体基因 来赋予沙门氏菌耐药性。在这项研究中,我们进一步探讨了 MccY 的潜在耐药机制,并证明了沙门氏菌 Ton 复合物对 MccY 转运的重要性。Ton 系统基因的缺失导致鼠伤寒菌对该肽的耐药性,并且 MccY 可以改变细菌的多种生理特性。总之,这项研究进一步探讨了 MccY 在鼠伤寒菌中的耐药机制和抗菌作用,为其开发和应用提供了科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d441/9769762/decc590520cc/spectrum.01859-22-f001.jpg

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