Department of Molecular Genetics and Infection Biology, Interfaculty Institute for Genetics and Functional Genomics, Center for Functional Genomics of Microbes, University of Greifswald, Greifswald, Germany.
Division of Bioanalytical Chemistry, Priority Area Infections, Research Center Borstel, Leibniz Lung Center, Borstel, Germany.
J Innate Immun. 2024;16(1):370-384. doi: 10.1159/000539934. Epub 2024 Jun 20.
The hydrophilic, polymeric chain of the lipoteichoic acid (LTA) of the Gram-positive pathobiont Streptococcus pneumoniae is covalently linked to the glycosylglycerolipid α-
Mutants deficient in TacL and complemented strains constructed were tested for their growth, resistance against oxidative stress, and susceptibility against antimicrobial peptides. Further, the membrane fluidity of pneumococci, their capability to adhere to lung epithelial cells, and virulence in a Galleria mellonella as well as intranasal mouse infection model were assessed.
In the present study, we indicate that LTA is already indispensable for pneumococcal adherence to human nasopharyngeal cells and colonization in an intranasal mouse infection model. Mutants deficient for TacL did not show morphological defects. However, our analysis of pneumococcal membranes in different serotypes showed an altered membrane fluidity and surface protein abundance of lipoproteins in mutants deficient for LTA but not WTA. These mutants had a decreased membrane fluidity, exhibited higher amounts of lipoproteins, and showed an increased susceptibility to antimicrobial peptides. In complemented mutant strains, this defect was fully restored.
Taken together, LTA is crucial for colonization and required to effectively protect pneumococci from innate immune defence mechanisms by maintaining the membrane integrity.
革兰氏阳性条件致病菌肺炎链球菌的脂磷壁酸(LTA)的亲水性聚合链通过 LTA 连接酶 TacL 与糖基甘油二脂 α-
测试了缺乏 TacL 的突变体和构建的互补菌株的生长情况、对氧化应激的抗性以及对抗生素肽的敏感性。此外,还评估了肺炎球菌的膜流动性、对肺上皮细胞的粘附能力以及在金龟子幼虫和鼻腔内小鼠感染模型中的毒力。
在本研究中,我们表明 LTA 对于肺炎球菌粘附到人鼻咽细胞和鼻腔内小鼠感染模型中的定植已经是必不可少的。缺乏 TacL 的突变体没有表现出形态缺陷。然而,我们对不同血清型肺炎球菌膜的分析表明,缺乏 LTA 的突变体的膜流动性和脂蛋白表面蛋白丰度发生改变,但 WTA 缺乏突变体则没有。这些突变体的膜流动性降低,脂蛋白含量增加,对抗生素肽的敏感性增加。在互补突变菌株中,该缺陷得到完全恢复。
总之,LTA 对于定植至关重要,并通过维持膜完整性来有效保护肺炎球菌免受先天免疫防御机制的影响。