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Journal of oral microbiology. 2025 Apr 6;17(1):2487944. doi: 10.1080/20002297.2025.2487944 Q15.52025

The potential regulatory role of mannose phosphotransferase system EII in alkaline resistance of Enterococcus faecalis

Man糖磷酸转移系统的潜在调节作用在粪肠球菌耐碱性中的作用研究 翻译改进

Runze Liu  1, Yi Luo  1, Pei Liu  1, Shuo Xiao  1, Wei Fan  1, Bing Fan  1

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作者单位

  • 1 The State Key Laboratory of Oral & Maxillofacial Reconstruction and Regeneration, Key Laboratory of Oral Biomedicine Ministry of Education, Hubei Key Laboratory of Stomatology, School & Hospital of Stomatology, Wuhan University, Wuhan, China.
  • DOI: 10.1080/20002297.2025.2487944 PMID: 40206098

    摘要 中英对照阅读

    Objective: To investigate the role of mannose phosphotransferase system (Man-PTS) EII in the alkaline resistance of Enterococcus faecalis (E. faecalis).

    Methods: The Man-PTS EIID (mptD) deletion (ΔmptD) and overexpressing (+mptD) strains of E. faecalis were constructed. The contribution of the Man-PTS EII to alkaline resistance was investigated by assessing growth and biofilm formation of E. faecalis at pH 7 and 10, as well as changes in intracellular ATP levels, pH, potassium ion concentration, membrane potential and membrane permeability. The effects of mptD on the expression of other Man-PTS EII components and membrane transport-related genes were evaluated by RT-qPCR at pH 10. In addition, six clinical strains were isolated. Three strains of E. faecalis with high to low alkaline resistance were screened, and RNA sequencing was performed to further explore the role of Man-PTS EII in the alkaline resistance.

    Results: mptD enhanced the alkaline resistance of E. faecalis by maintaining pH homeostasis in an alkaline environment. Overexpression of mptD induced membrane hyperpolarization, reduced membrane permeability, decreased intracellular K+ levels, lowered cytoplasmic pH, and elevated ATP production, while the loss of mptD reversed these effects (p < 0.05). mptD coordinated the expression of Man-PTS EII components and upregulated genes encoding membrane transporter components (p < 0.01). All Man-PTS EII components were positively related to the degree of alkaline resistance of E. faecalis (p < 0.05).

    Conclusion: Man-PTS EII is a key factor in the interaction between metabolism and ion membrane transport during the alkaline resistance process of E. faecalis. This study may provide new insights for understanding the alkaline resistance of E. faecalis.

    Keywords: Alkaline resistance; Enterococcus faecalis; mannose; phosphotransferase system.

    Keywords:regulatory role; alkaline resistance; enterococcus faecalis

    目标: 研究甘露糖磷酸转移酶系统(Man-PTS)EII在耐碱性肠球菌 Enterococcus faecalis (E. faecalis) 中的作用。

    方法: 构建了E. faecalis的Man-PTS EIID(mptD)缺失突变体(ΔmptD)和过表达株(+mptD)。通过评估pH值为7和10时 E. faecalis 的生长及生物膜形成,以及细胞内ATP水平、pH值、钾离子浓度、膜电位和膜通透性的变化来研究Man-PTS EII对碱性耐受性的影响。通过在pH 10下进行RT-qPCR评估了mptD对其他Man-PTS EII组分及相关转运基因表达的影响。此外,分离出了六个临床菌株,并筛选出三个具有高至低碱性耐受性的E. faecalis 菌株,通过RNA测序进一步探索Man-PTS EII在碱性耐受中的作用。

    结果: mptD 通过维持碱性环境下的pH平衡增强了 E. faecalis 的碱性耐受性。过表达mptD 导致膜超极化,降低了膜通透性,减少了细胞内钾离子水平,使胞浆pH值降低,并增加了ATP生成,而缺乏mptD 则导致了相反的效果(p mptD 协调Man-PTS EII组分的表达并上调膜转运蛋白编码基因的表达水平(p E. faecalis 碱性耐受性的程度呈正相关(p

    结论: Man-PTS EII 是在 E. faecalis 的碱性耐受过程中,代谢与离子膜转运相互作用的关键因素。本研究可能为理解E. faecalis 的碱性耐受提供新的见解。

    关键词: 碱性耐受;肠球菌 Enterococcus faecalis; 甘露糖; 磷酸转移酶系统

    关键词:半乳糖磷酸转移系统; 调控作用; 碱性耐受性; 粪肠球菌

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    期刊名:Journal of oral microbiology

    缩写:J ORAL MICROBIOL

    ISSN:N/A

    e-ISSN:2000-2297

    IF/分区:5.5/Q1

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