Nanoribbons self-assembled from short peptides demonstrate the formation of polar zippers between β-sheets.

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作者:Wang Meng, Wang Jiqian, Zhou Peng, Deng Jing, Zhao Yurong, Sun Yawei, Yang Wei, Wang Dong, Li Zongyi, Hu Xuzhi, King Stephen M, Rogers Sarah E, Cox Henry, Waigh Thomas A, Yang Jun, Lu Jian Ren, Xu Hai
Peptide self-assembly is a hierarchical process, often starting with the formation of α-helices, β-sheets or β-hairpins. However, how the secondary structures undergo further assembly to form higher-order architectures remains largely unexplored. The polar zipper originally proposed by Perutz is formed between neighboring β-strands of poly-glutamine via their side-chain hydrogen bonding and helps to stabilize the sheet. By rational design of short amphiphilic peptides and their self-assembly, here we demonstrate the formation of polar zippers between neighboring β-sheets rather than between β-strands within a sheet, which in turn intermesh the β-sheets into wide and flat ribbons. Such a super-secondary structural template based on well-defined hydrogen bonds could offer an agile route for the construction of distinctive nanostructures and nanomaterials beyond β-sheets.

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