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首页> 外文期刊>Journal of the American Chemical Society >Self-assembly of peptide scaffolds in biosilica formation: Computer simulations of a coarse-grained model - art. no. JA061211S
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Self-assembly of peptide scaffolds in biosilica formation: Computer simulations of a coarse-grained model - art. no. JA061211S

机译:肽支架在生物二氧化硅形成中的自组装:粗粒模型的计算机模拟-艺术。没有。 JA061211S

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摘要

The self-assembly of model peptides is studied using Brownian dynamics computer simulations. A coarse-grained, bead-spring model is designed to mimic silaffins, small peptides implicated in the biomineralization of certain silica diatom skeletons and observed to promote the formation of amorphous silica nanospheres in vitro. The primary characteristics of the silaffin are a 15 amino acid hydrophilic backbone and two modified lysine residues near the ends of the backbone carrying long polyamine chains. In the simulations, the model peptides self-assemble to form spherical clusters, networks of strands, or bicontinuous structures, depending on the peptide concentration and effective temperature. The results indicate that over a broad range of volume fractions (0.05-25%) the characteristic structural lengthscales fall in the range 12-45 nm. On this basis, we suggest that self-assembled structures act as either nucleation points or scaffolds for the deposition of 10-100 nm silica-peptide building blocks from which diatom skeletons and synthetic nanospheres are constructed.
机译:使用布朗动力学计算机仿真研究模型肽的自组装。粗粒珠弹簧模型设计用于模拟硅蜡蛋白,与某些二氧化硅硅藻骨架的生物矿化有关的小肽,并被观察到可促进体外无定形二氧化硅纳米球的形成。 silaffin的主要特征是15个氨基酸的亲水性主链和两个在主链末端附近带有长多胺链的修饰的赖氨酸残基。在模拟中,取决于肽的浓度和有效温度,模型肽会自组装形成球形簇,链网络或双连续结构。结果表明,在很宽的体积分数范围(0.05-25%)内,特征结构长度尺度在12-45 nm范围内。在此基础上,我们建议自组装结构充当成核点或支架,以沉积10-100 nm的二氧化硅肽构建基块,从中构建硅藻骨架和合成纳米球。

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