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首页> 外文期刊>Journal of peptide science: An official publication of the European Peptide Society >Protamine-induced condensation of peptide nanofilaments into twisted bundles with controlled helical geometry
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Protamine-induced condensation of peptide nanofilaments into twisted bundles with controlled helical geometry

机译:Protamine诱导的肽纳丝凝聚成具有受控螺旋几何的扭捆

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摘要

Chiral self-assembly of peptides is of fundamental interest in the field of biology and material science. Protamine, an alkaline biomacromolecule which is ubiquitous in fish and mammalian, plays crucial roles in directing the helical twisting of DNA. Inspired by this, we reported a bioinspired pathway to direct the hierarchical chiral self-assembly of a short synthetic dipeptide. The peptide could self-assemble into negatively charged chiral micelles in water that spontaneously formed a nematic liquid crystalline phase. By incorporation with protamine, the micelles condensed with the protamine into large helical bundles with precisely controlled diameter. Furthermore, to simulate the intracellular environments, we investigated macromolecular crowding on the coassembly of peptide and protamine, which leads to the formation of much thinner helical structures. The results highlight the roles of highly charged biomacromolecules and macromolecular crowding on peptide self-assembly, which are beneficial for the practical applications of self-assembling peptides in biomedicine and sensing.
机译:肽的手性自我组装是对生物学和物质科学领域的根本兴趣。 Protamine,一种含有鱼和哺乳动物的碱性生物咯咯脉,在引导DNA的螺旋扭转方面起着至关重要的作用。灵感来自于此,我们报告了一种生物悬浮的途径,用于指导短合成二肽的等级手性自组装。肽可以自动组装成带负电荷的手性胶束在自发形成向上形成向列液晶相的水中。通过用Protamine掺入,用精确控制的直径用预蛋白胺凝聚到大规模的螺旋束。此外,为了模拟细胞内环境,我们研究了肽和protamine的配合上的大分子挤,这导致形成更薄的螺旋结构。结果突出了高电荷的生物致摩洛族和大分子挤在肽自组装上的作用,这对自组装肽在生物医学和感应中的实际应用是有益的。

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