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Construction of supramolecular nanotubes from protein crystals

机译:从蛋白质晶体构建超分子纳米管

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摘要

Investigations involving the design of protein assemblies for the development of biomaterials are receiving significant attention. In nature, proteins can be driven into assemblies frequently by various non-covalent interactions. Assembly of proteins into supramolecules can be conducted under limited conditions in solution. These factors force the assembly process into an equilibrium state with low stability. Here, we report a new method for preparing assemblies using protein crystals as non-equilibrium molecular scaffolds. Protein crystals provide an ideal environment with a highly ordered packing of subunits in which the supramolecular assembled structures are formed in the crystalline matrix. Based on this feature, we demonstrate the self-assembly of supramolecular nanotubes constructed from protein crystals triggered by co-oxidation with cross-linkers. The assembly of tubes is driven by the formation of disulfide bonds to retain the intermolecular interactions within each assembly in the crystalline matrix after dissolution of the crystals.
机译:涉及用于生物材料开发的蛋白质装配设计的研究受到了极大的关注。在自然界中,蛋白质可以通过各种非共价相互作用频繁地进入组装体。蛋白质在超分子中的组装可以在有限的条件下在溶液中进行。这些因素迫使组装过程进入稳定性较低的平衡状态。在这里,我们报告了一种使用蛋白质晶体作为非平衡分子支架制备装配的新方法。蛋白质晶体提供了理想的环境,其中亚基的高度有序堆积在其中形成了超分子组装结构,形成了晶体基质。基于此功能,我们证明了由蛋白质晶体构成的超分子纳米管的自组装,该蛋白质晶体是由与交联剂共氧化引发的。管的组装通过二硫键的形成来驱动,以在晶体溶解后将每个组装内的分子间相互作用保持在晶体基质中。

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