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首页> 外文期刊>ACS applied materials & interfaces >Structural Superiority of Guanidinium-Rich, Four-Armed Copolypeptides: Role of Multiple Peptide-Membrane Interactions in Enhancing Bacterial Membrane Perturbation and Permeability
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Structural Superiority of Guanidinium-Rich, Four-Armed Copolypeptides: Role of Multiple Peptide-Membrane Interactions in Enhancing Bacterial Membrane Perturbation and Permeability

机译:富含胍的四臂共肽的结构优势:多种肽 - 膜相互作用在提高细菌膜扰动和渗透性方面的作用

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The development of novel antimicrobials is a top priority to address the growing epidemic of multidrug-resistant pathogens. Since cationic nonamphiphilic star-shaped antimicrobials are promising molecular scaffolds that provide a high charge density in binding anionic bacterial bilayers, this research aimed to further increase their membrane perturbation capability by introducing guanidinium groups to the antimicrobials via enhancing membrane insertion. In particular, computational simulation and experimental investigations revealed that our designed guanidinium-rich alternating copolypeptide, four-armed poly(arginine-alt-glycine), can interact with both the headgroups and unsaturated tails of phospholipids in bacterial membranes through multiple interactions, including electrostatic, cation-p, and T-shaped p-p interactions, allowing it to penetrate deeper inside the biologically inaccessible high-energy barrier of the hydrophobic lipid bilayer interior to cause membrane permeabilization and precipitation of the bacterial cytoplasm. Furthermore, glycine was observed to have a unique effect in enhancing the performance of arginine-based copolypeptide. Four-armed poly(arginine-alt-glycine) exhibited broad-spectrum antimicrobial activity, high bactericidal efficiency, and negligible hemolysis. The in vivo antibacterial performance of the copolypeptide was superior to that of doxycycline in a mouse model of Pseudomonas aeruginosa skin infection, accompanied by negligible local and systemic toxicity. Our results demonstrate that this guanidinium-rich, nonamphiphilic, star-shaped structure may promote the development of next-generation antimicrobials.
机译:新型抗微生物的发展是解决多药物抗性病原体的不断发展的主要优先事项。由于阳离子壬酰硅星形抗微生物的主要分子支架,其提供高电荷密度的结合阴离子细菌双层,这项研究旨在通过增强膜插入来进一步通过将胍尼鎓基团引入抗微生物的膜扰动能力。特别地,计算模拟和实验研究表明,我们设计的富含富含胍的交替的共肽,四臂聚(精氨酸 - Alt-甘氨酸)可以通过多种相互作用与细菌膜中的磷脂的头组和不饱和尾部相互作用,包括静电,阳离子-P和T形PP相互作用,使其在疏水性脂质化双层内部的生物上可接近的高能屏障内渗透到疏水性脂质化双层内部的生物难以接近的高能量屏障,以引起细菌细胞质的膜渗透和沉淀。此外,观察到甘氨酸在提高精氨酸的共肽的性能方面具有独特的效果。四臂聚(精氨酸 - Alt-Glycine)表现出广谱抗菌活性,杀菌效率高,溶血可忽略不计。在铜绿假单胞菌皮肤感染的小鼠模型中,共肽的体内抗菌性能优于柔软霉素的小鼠模型中的那种局部和全身毒性。我们的结果表明,这种富含富尼尼,少世的星形结构可以促进下一代抗微生物的发展。

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