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首页> 外文期刊>ACS nano >Self-Assembled Peptide Nanofibers Designed as Biological Enzymes for Catalyzing Ester Hydrolysis
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Self-Assembled Peptide Nanofibers Designed as Biological Enzymes for Catalyzing Ester Hydrolysis

机译:自组装肽纳米纤维被设计为催化酯水解的生物酶

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The structural arrangement of amino acid residues in a native enzyme provides a blueprint for the design of artificial enzymes. One challenge of mimicking the catalytic center of a native enzyme is how to arrange the essential amino acid residues in an appropriate position. In this study, we designed an artificial hydrolase via self-assembly of short peptides to catalyze ester hydrolysis. When the assembled hydrolase catalytic sites were embedded in a matrix of peptide nanofibers, they exhibited much higher catalytic efficiency than the peptide nanofibers without the catalytic sites, suggesting that this well-ordered nanostructure is an attractive scaffold for developing new artificial enzymes. Furthermore, the cytotoxicity of the assembled hydrolase was evaluated with human cells, and the novel artificial biological enzyme showed excellent biocompatibility.
机译:天然酶中氨基酸残基的结构排列为人工酶的设计提供了蓝图。模仿天然酶催化中心的一个挑战是如何将必需氨基酸残基排列在适当的位置。在这项研究中,我们通过短肽的自组装设计了一种人工水解酶,以催化酯水解。当组装好的水解酶催化位点嵌入到肽纳米纤维的基质中时,与没有催化位点的肽纳米纤维相比,它们显示出更高的催化效率,这表明这种排列整齐的纳米结构是开发新型人工酶的诱人支架。此外,用人细胞评价了组装的水解酶的细胞毒性,并且新型的人造生物酶显示出优异的生物相容性。

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