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Molecular bases of cyclodextrin adapter interactions with engineered protein nanopores

机译:环糊精衔接子与工程蛋白纳米孔相互作用的分子基础

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摘要

Engineered protein pores have several potential applications in biotechnology: as sensor elements in stochastic detection and ultrarapid DNA sequencing, as nanoreactors to observe single-molecule chemistry, and in the construction of nano- and micro-devices. One important class of pores contains molecular adapters, which provide internal binding sites for small molecules. Mutants of the α-hemolysin (αHL) pore that bind the adapter β-cyclodextrin (βCD) ∼104 times more tightly than the wild type have been obtained. We now use single-channel electrical recording, protein engineering including unnatural amino acid mutagenesis, and high-resolution x-ray crystallography to provide definitive structural information on these engineered protein nanopores in unparalleled detail.
机译:人工蛋白孔在生物技术中具有多种潜在应用:作为随机检测和超快速DNA测序中的传感器元件,作为观察单分子化学的纳米反应器以及在纳米和微器件的构建中。一类重要的孔包含分子衔接子,它为小分子提供内部结合位点。已经获得了与衔接子β-环糊精(βCD)结合的α-溶血素(αHL)孔突变体比野生型紧密约10 4 倍。我们现在使用单通道电记录,蛋白质工程(包括非天然氨基酸诱变)和高分辨率X射线晶体学来提供有关这些工程蛋白质纳米孔的无与伦比的详细结构信息。

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