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Ultrasmall Peptides Self-Assemble into Diverse Nanostructures: Morphological Evaluation and Potential Implications

机译:超小肽自组装成不同的纳米结构:形态学评估和潜在的影响。

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摘要

In this study, we perform a morphological evaluation of the diverse nanostructures formed by varying concentration and amino acid sequence of a unique class of ultrasmall self-assembling peptides. We modified these peptides by replacing the aliphatic amino acid at the C-aliphatic terminus with different aromatic amino acids. We tracked the effect of introducing aromatic residues on self-assembly and morphology of resulting nanostructures. Whereas aliphatic peptides formed long, helical fibers that entangle into meshes and entrap >99.9% water, the modified peptides contrastingly formed short, straight fibers with a flat morphology. No helical fibers were observed for the modified peptides. For the aliphatic peptides at low concentrations, different supramolecular assemblies such as hollow nanospheres and membrane blebs were found. Since the ultrasmall peptides are made of simple, aliphatic amino acids, considered to have existed in the primordial soup, study of these supramolecular assemblies could be relevant to understanding chemical evolution leading to the origin of life on Earth. In particular, we propose a variety of potential applications in bioengineering and nanotechnology for the diverse self-assembled nanostructures.
机译:在这项研究中,我们对通过改变独特的超小型自组装肽的浓度和氨基酸序列形成的纳米结构进行形态学评估。我们通过用不同的芳香族氨基酸替换C-脂族末端的脂肪族氨基酸来修饰这些肽。我们跟踪了引入芳族残基对自组装和所得纳米结构形态的影响。脂族肽形成长的螺旋状纤维,缠结成网孔并截留> 99.9%的水,而改性肽则形成短而直的纤维,具有扁平的形态。对于修饰的肽,没有观察到螺旋纤维。对于低浓度的脂族肽,发现了不同的超分子组装体,例如空心纳米球和膜泡。由于超小肽由简单的脂族氨基酸制成,被认为已存在于原始汤中,因此对这些超分子组装体的研究可能与理解导致地球生命起源的化学进化有关。特别是,我们提出了在生物工程和纳米技术中用于各种自组装纳米结构的各种潜在应用。

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