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Engineered Coiled-Coil Protein Microfibers

机译:工程卷材蛋白质超细纤维

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The fabrication of de novo proteins able to self-assemble on the nano- to meso-length scales is critical in the development of protein-based biomaterials in nanotechnology and medicine. Here we report the design and characterization of a protein engineered coiled-coil that not only assembles into microfibers, but also can bind hydrophobic small molecules. Under ambient conditions, the protein forms fibers with nanoscale structure possessing large aspect ratios formed by bundles of α-helical homopentameric assemblies, which further assemble into mesoscale fibers in the presence of curcumin through aggregation. Surprisingly, these biosynthesized fibers are able to form in conditions of remarkably low concentrations. Unlike previously designed coiled-coil fibers, these engineered protein microfibers can bind the small molecule curcumin throughout the assembly, serving as a depot for encapsulation and delivery of other chemical agents within protein-based 3D microenvironments.
机译:能够在纳米至中等长度尺度上自组装的从头蛋白质的制备对于纳米技术和医学中基于蛋白质的生物材料的开发至关重要。在这里,我们报道了一种蛋白质工程螺旋线圈的设计和表征,该螺旋线圈不仅可以组装成微纤维,而且可以结合疏水性小分子。在环境条件下,蛋白质形成具有纳米级结构的纤维,该纤维具有大的纵横比,由成束的α-螺旋同五聚体组装体形成,并在姜黄素存在下通过聚集进一步组装成中尺度纤维。出人意料的是,这些生物合成纤维能够在非常低的浓度条件下形成。与以前设计的盘绕纤维不同,这些工程蛋白微纤维可以在整个组装过程中结合小分子姜黄素,充当基于蛋白质的3D微环境中其他化学试剂的封装和递送的仓库。

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