首页> 外文期刊>ACS Chemical Biology >Effect of Sequence and Structural Properties on 14-Helical beta-Peptide Activity against Candida albicans Planktonic Cells and Biofilms
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Effect of Sequence and Structural Properties on 14-Helical beta-Peptide Activity against Candida albicans Planktonic Cells and Biofilms

机译:序列和结构性质对白色念珠菌浮游细胞和生物膜的14螺旋β肽活性的影响。

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摘要

beta-Peptides (beta-amino acid oligomers) that mimic the amphiphilic, helical, and cationic properties of natural antimicrobial peptides have previously been shown to display antifungal activity against planktonic Candida albicans cells. beta-Peptides offer several advantages over conventional peptides composed of alpha-amino acid residues, including conformational stability, resistance to proteases, and activity at physiological salt concentrations. We examined sequence-activity relationships toward both planktonic C. albicans cells and C. albicans biofilms, and the results suggest a toxicity mechanism involving membrane disruption. A strategy for fluorescently labeling a beta-peptide without diminishing antifungal activity was devised; labeled beta-peptides penetrated the cell membrane and accumulated in the cytoplasm of both planktonic and biofilm-associated cells. The labeled beta-peptide was detected only in metabolically inactive cells, which suggests that beta-peptide entry is correlated with cell death. The presence of a beta-peptide at a concentration near the minimum inhibitory concentration completely prevented planktonic C. albicans cells from forming a biofilm, suggesting that beta-peptides may be useful in preventing fungal colonization and biofilm formation.
机译:模仿天然抗菌肽的两亲,螺旋和阳离子特性的β-肽(β-氨基酸低聚物)先前已显示出对浮游性白色念珠菌细胞具有抗真菌活性。与由α-氨基酸残基组成的常规肽相比,β肽具有几个优势,包括构象稳定性,对蛋白酶的抗性以及在生理盐浓度下的活性。我们检查了对浮游的白色念珠菌细胞和白色念珠菌生物膜的序列-活性关系,结果表明涉及膜破坏的毒性机制。设计了一种荧光标记β肽而不降低抗真菌活性的策略。标记的β肽穿透细胞膜并积聚在浮游生物和生物膜相关细胞的细胞质中。仅在代谢失活的细胞中检测到标记的β肽,这表明β肽的进入与细胞死亡相关。接近最小抑制浓度的浓度的β肽的存在完全阻止了浮游白色念珠菌细胞形成生物膜,这表明β肽可用于防止真菌定植和生物膜形成。

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