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A Novel Target-Specific Salt-Resistant Antimicrobial Peptide against the Cariogenic Pathogen Streptococcus mutans

机译:一种新型的抗致病性致病性变形链球菌的靶标耐盐抗菌肽。

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摘要

In this study, we constructed and evaluated a target-specific, salt-resistant antimicrobial peptide (AMP) that selectively targeted Streptococcus mutans, a leading cariogenic pathogen. The rationale for creating such a peptide was based on the addition of a targeting domain of S. mutans ComC signaling peptide pheromone (CSP) to a killing domain consisting of a portion of the marine-derived, broad-spectrum AMP pleurocidin to generate a target-specific AMP. Here, we report the results of our assessment of such fusion peptides against S. mutans and two closely related species. The results showed that nearly 95% of S. mutans cells lost viability following exposure to fusion peptide IMB-2 (5.65 μM) for 15 min. In contrast, only 20% of S. sanguinis or S. gordonii cells were killed following the same exposure. Similar results were also observed in dual-species mixed cultures of S. mutans with S. sanguinis or S. gordonii. The peptide-guided killing was further confirmed in S. mutans biofilms and was shown to be dose dependent. An S. mutans mutant defective in the CSP receptor retained 60% survival following exposure to IMB-2, suggesting that the targeted peptide predominantly bound to the CSP receptor to mediate killing in the wild-type strain. Our work confirmed that IMB-2 retained its activity in the presence of physiological or higher salt concentrations. In particular, the fusion peptide showed a synergistic killing effect on S. mutans with a preventive dose of NaF. In addition, IMB-2 was relatively stable in the presence of saliva containing 1 mM EDTA and did not cause any hemolysis. We also found that replacement of serine-14 by histidine improved its activity at lower pH. Because of its effectiveness, salt resistance, and minimal toxicity to host cells, this novel target-specific peptide shows promise for future development as an anticaries agent.
机译:在这项研究中,我们构建并评估了选择性靶向靶向变形链球菌(一种致癌性致病菌)的靶标特异性,耐盐抗微生物肽(AMP)。产生这种肽的基本原理是基于将变异链球菌ComC信号肽信息素(CSP)的靶向结构域添加到由一部分海洋来源的广谱AMP pleurocidin组成的杀伤域中,从而产生靶标特定的AMP。在这里,我们报告了我们针对变形链球菌和两个密切相关物种的融合肽的评估结果。结果显示,暴露于融合肽IMB-2(5.65μM)15分钟后,近95%的变形链球菌细胞丧失生存能力。相反,在相同的暴露后,只有20%的血红葡萄球菌或戈登氏葡萄球菌被杀死。在变形链球菌与血红链球菌或戈登氏链球菌的双物种混合培养物中也观察到了相似的结果。在变形链球菌生物膜中进一步证实了肽引导的杀伤,并显示其是剂量依赖性的。在暴露于IMB-2后,CSP受体缺陷的变形链球菌突变体保留了60%的存活率,这表明靶向肽主要与CSP受体结合以介导野生型菌株的杀伤。我们的工作证实了IMB-2在生理或更高盐浓度下仍能保持其活性。特别地,融合肽在预防剂量的NaF下对变形链球菌显示协同杀伤作用。另外,在含有1 mM EDTA的唾液中,IMB-2相对稳定,并且不会引起任何溶血。我们还发现,用组氨酸替代丝氨酸14可以改善其在较低pH下的活性。由于它的有效性,耐盐性和对宿主细胞的最小毒性,这种新型的靶标特异性肽显示了其作为防龋剂的未来发展前景。

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