Institut für Biologie, Evolutionary Biology, Freie Universität Berlin, Berlin, Germany.
Zoology Department, Faculty of Science, Alexandria University, Alexandria, Egypt.
Front Immunol. 2020 Sep 29;11:1686. doi: 10.3389/fimmu.2020.01686. eCollection 2020.
Cationic antimicrobial peptides (AMPs) are active immune effectors of multicellular organisms and are also considered as new antimicrobial drug candidates. One of the problems encountered when developing AMPs as drugs is the difficulty of reaching sufficient killing concentrations under physiological conditions. Here, using pexiganan, a cationic peptide derived from a host defense peptide of the African clawed frog and the first AMP developed into an antibacterial drug, we studied whether sub-lethal effects of AMPs can be harnessed to devise treatment combinations. We studied the pexiganan stress response of at sub-lethal concentrations using quantitative proteomics. Several proteins involved in nucleotide metabolism were elevated, suggesting a metabolic demand. We then show that is highly susceptible to antimetabolite nucleoside analogs when exposed to pexiganan, even at sub-inhibitory concentrations. These findings could be used to enhance pexiganan potency while decreasing the risk of resistance emergence, and our findings can likely be extended to other antimicrobial peptides.
阳离子抗菌肽(AMPs)是多细胞生物的有效免疫效应物,也被认为是新的抗菌药物候选物。在将 AMP 开发为药物时遇到的一个问题是,在生理条件下难以达到足够的杀伤浓度。在这里,我们使用来源于非洲爪蟾宿主防御肽的阳离子肽 pexiganan 作为研究对象,pexiganan 是第一种开发成抗菌药物的 AMP,我们研究了 AMP 的亚致死效应是否可以被利用来设计治疗组合。我们使用定量蛋白质组学研究了亚致死浓度下 pexiganan 对 的应激反应。几种参与核苷酸代谢的蛋白质升高,表明存在代谢需求。然后我们表明,当暴露于 pexiganan 时,即使在亚抑制浓度下, 对代谢物核苷类似物也高度敏感。这些发现可用于提高 pexiganan 的效力,同时降低耐药性出现的风险,我们的发现可能适用于其他抗菌肽。