首页> 美国卫生研究院文献>Infection and Drug Resistance >Substitution of lysine for isoleucine at the center of the nonpolar face of the antimicrobial peptide piscidin-1 leads to an increase in the rapidity of bactericidal activity and a reduction in toxicity
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Substitution of lysine for isoleucine at the center of the nonpolar face of the antimicrobial peptide piscidin-1 leads to an increase in the rapidity of bactericidal activity and a reduction in toxicity

机译:在抗微生物肽piscidin-1的非极性表面中心用赖氨酸替代异亮氨酸可提高杀菌活性的速度并降低毒性

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摘要

>Purpose: Piscidin-1 is an effective antimicrobial peptide (AMP) against a variety of microbes. However, its toxicity has been reported as a limitation for its potential therapeutic applications. The toxicity of piscidin-1 may be related to the long nonpolar face of this AMP. Here, we investigated different piscidin-1 analogs to reach a peptide with the reduced toxicity.>Material and methods: In vitro and in vivo antibacterial activity and toxicity of piscidin-1 analogs generated by replacement of isoleucine at the border (I9) or the center (I16) of the nonpolar face of piscidin-1 by alanine or lysine were investigated.>Results: The results indicated that among all peptides, piscidin-1 with the highest HPLC retention time (RT) and I16K-piscidin-1 with the lowest RT had the highest and lowest cytotoxicity, respectively. Although I16K-piscidin-1 possessed the same MIC value as the parent peptide (piscidin-1) and other analogs, I16K-piscidin-1 exhibited a higher rapidity of bactericidal action at 5×MIC. The β-galactosidase leakage and propidium iodide staining assays indicated a higher pore-forming capacity of I16K-piscidin-1 relative to the parent peptide (piscidin-1). Taken together, RT is suggested to have a direct association with the toxicity and an inverse association with the rapidity of bactericidal action and pore-forming capacity. After infection of mice with clinical colistin-resistant Acinetobacter baumannii or clinical methicillin-resistant Staphylococcus aureus strains, treatment with I16K-piscidin-1, but not piscidin-1 and other analogs, resulted in a significantly stronger bactericidal potency. Furthermore, I16K-piscidin-1 exhibited the lowest in vivo toxicity. >Conclusion: Overall, in vitro and in vivo comparison of piscidin-1 and its analogs together documented that replacement of isoleucine at the center of the nonpolar face of piscidin-1(I16) by lysine leads to not only a decrease in toxicity potential but also an increase in bactericidal potential.
机译:>目的: Piscidin-1是一种有效的针对多种微生物的抗菌肽(AMP)。然而,据报道其毒性限制了其潜在的治疗应用。 piscidin-1的毒性可能与该AMP的长非极性面有关。在这里,我们研究了不同的piscidin-1类似物,从而获得了毒性降低的肽。>材料和方法:在体外用异亮氨酸置换产生的piscidin-1类似物的体外和体内抗菌活性和毒性。研究了丙氨酸或赖氨酸对piscidin-1非极性面的边界(I9)或中心(I16)。>结果:结果表明,在所有肽中,piscidin-1的HPLC保留率最高RT(RT)和RT最低的I16K-piscidin-1分别具有最高和最低的细胞毒性。尽管I16K-piscidin-1具有与亲本肽(piscidin-1)和其他类似物相同的MIC值,但I16K-piscidin-1在5x MIC处具有较高的杀菌速度。 β-半乳糖苷酶渗漏和碘化丙啶染色试验表明,相对于亲本肽(piscidin-1)而言,I16K-piscidin-1具有更高的成孔能力。两者合计,建议RT与毒性直接相关,而与杀菌作用和成孔能力的快速程度成反比。在用临床抵抗大肠菌素的鲍曼不动杆菌或临床耐甲氧西林金黄色葡萄球菌菌株感染小鼠后,用I16K-piscidin-1(而不是piscidin-1和其他类似物)进行治疗,其杀菌效力明显增强。此外,I16K-piscidin-1表现出最低的体内毒性。 >结论:piscidin-1及其类似物的总体,体内外比较表明,赖氨酸替代piscidin-1(I16)非极性表面中心的异亮氨酸不仅会导致降低了毒性潜力,但也增加了杀菌潜力。

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