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Anti-Biofilm Activity of Graphene Quantum Dots via Self-Assembly with Bacterial Amyloid Proteins

机译:通过具有细菌淀粉样蛋白的自组装的石墨烯量子点的抗生物膜活性

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摘要

Bacterial biofilms represent an essential part of Earth's ecosystem that can cause multiple ecological, technological, and health problems. The environmental resilience and sophisticated organization of biofilms are enabled by the extracellular matrix that creates a protective network of biomolecules around the bacterial community. Current anti-biofilm agents can interfere with extracellular matrix production but, being based on small molecules, are degraded by bacteria and rapidly diffuse away from biofilms. Both factors severely reduce their efficacy, while their toxicity to higher organisms creates additional barriers to their practicality. In this paper, we report on the ability of graphene quantum dots to effectively disperse mature amyloid-rich Staphylococcus aureus biofilms, interfering with the self-assembly of amyloid fibers, a key structural component of the extracellular matrix. Mimicking peptide-binding biomolecules, graphene quantum dots form supramolecular complexes with phenol-soluble modulins, the peptide monomers of amyloid fibers. Experimental and computational results show that graphene quantum dots efficiently dock near the N-terminus of the peptide and change the secondary structure of phenol-soluble modulins, which disrupts their fibrillation and represents a strategy for mitigation of bacterial communities.
机译:细菌生物膜代表地球生态系统的重要组成部分,可以造成多种生态,技术和健康问题。通过细胞外基质使得生物膜的环境恢复和精致组织能够产生细菌群落周围的生物分子保护网络。目前的抗生物膜试剂可以干扰细胞外基质生产,而是基于小分子,通过细菌降解并迅速扩散远离生物膜。这两种因素都严重降低了它们的功效,而他们对更高生物的毒性会产生额外的障碍。在本文中,我们报告了石墨烯量子点以有效地分散成熟淀粉样蛋白金黄色葡萄球菌的能力,干扰淀粉样纤维的自组装,细胞外基质的关键结构组分。模拟肽结合的生物分子,石墨烯量子点与苯酚可溶性调节蛋白,淀粉样蛋白纤维的肽单体形成超分子复合物。实验和计算结果表明,石墨烯量子点有效地靠近肽的N-末端附近停靠,改变酚类可溶性调节蛋白的二次结构,这破坏了它们的纤维化,并代表了减轻细菌群落的策略。

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