三螺旋
胶原螺旋
螺旋(腹足类)
空格(标点符号)
化学
计算生物学
立体化学
生物
计算机科学
古生物学
蜗牛
操作系统
作者
Le Yu,Mark A. B. Kreutzberger,Maria C. Hancu,Thi H. Bui,Adam C. Farsheed,Edward H. Egelman,Jeffrey D. Hartgerink
标识
DOI:10.1101/2024.05.14.594194
摘要
Abstract The de novo design of self-assembling peptides has garnered significant attention in scientific research. While alpha-helical assemblies have been extensively studied, exploration of polyproline type II (PPII) helices, such as those found in collagen, remains relatively limited. In this study, we focused on understanding the sequence-structure relationship in hierarchical assemblies of collagen-like peptides, using defense collagen SP-A as a model. By dissecting the sequence derived from SP-A and synthesizing short collagen-like peptides, we successfully constructed a discrete bundle of hollow triple helices. Mutation studies pinpointed amino acid sequences, including hydrophobic and charged residues that are critical for oligomer formation. These insights guided the de novo design of collagen-like peptides, resulting in the formation of diverse quaternary structures, including discrete and heterogenous bundled oligomers, 2D nanosheets, and pH-responsive nanoribbons. Our study represents a significant advancement in the understanding and harnessing of collagen higher-order assemblies beyond the triple helix.
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