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The amyloid architecture provides a scaffold for enzyme-like catalysts

机译:淀粉样器结构为酶样催化剂提供支架

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摘要

Natural biological enzymes possess catalytic sites that are generally surrounded by a large three-dimensional scaffold. However, the proportion of the protein molecule that participates in the catalytic reaction is relatively small. The generation of artificial or miniature enzymes has long been a focus of research because enzyme mimetics can be produced with high activity at low cost. These enzymes aim to mimic the active sites without the additional architecture contributed by the protein chain. Previous work has shown that amyloidogenic peptides are able to self-assemble to create an active site that is capable of binding zinc and catalysing an esterase reaction. Here, we describe the structural characterisation of a set of designed peptides that form an amyloid-like architecture and reveal that their capability to mimic carbonic anhydrase and serve as enzyme-like catalysts is related to their ability to self-assemble. These amyloid fibril structures can bind the metal ion Zn2+ via a three-dimensional arrangement of His residues created by the amyloid architecture. Our results suggest that the catalytic efficiency of amyloid-like assembly is not only zinc-dependent but also depends on an active centre created by the peptides which is, in turn, dependent on the ordered architecture. These fibrils have good esterase activity, and they may serve as good models for the evolution of modern-day enzymes. Furthermore, they may be useful in designing self-assembling fibrils for applications as metal ion catalysts. This study also demonstrates that the ligands surrounding the catalytic site affect the affinity of the zinc-binding site to bind the substrate contributing to the enzymatic activity of the assembled peptides.
机译:天然生物酶催化拥有的网站,一般都是由大三维支架包围。然而,在催化反应参与的蛋白质分子的比例相对较小。的人工的或微型的酶的生成一直是研究的热点,因为酶模拟物可以以低成本高活性来制备。这些酶旨在模拟活性位点没有附加结构贡献的蛋白质链。以前的工作已经表明,淀粉样蛋白形成肽能够自组装来创建一个活性位点,其能够结合锌和催化的酯酶反应。在这里,我们描述了一组设计的肽形成的淀粉样结构,揭示他们的能力,以模拟碳酸酐酶和充当的结构表征酶样催化剂是关系到自己的能力自组装。这些淀粉样蛋白原纤维结构可以通过由淀粉状蛋白结构中创建His残基的三维排列的金属离子Zn2 +的结合。我们的结果表明的催化效率淀粉样组件不仅锌依赖性,而且依赖于由这,反过来,依赖于有序的体系结构中的肽创建的活性中心。这些纤维具有良好的酯酶活性,它们可以作为很好的模型现代酶的进化。此外,它们可以是在设计自组装原纤维的应用作为金属离子的催化剂是有用的。这项研究还表明,围绕该催化位点的配位体影响锌结合位点的亲和力至基板有助于组装肽的酶活性的结合。

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