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Semisynthetic DNA-Protein Conjugates for Biosensing and Nanofabrication

机译:半合成的DNA-蛋白质结合物可用于生物传感和纳米加工。

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摘要

Conjugation with artificial nucleic acids allows proteins to be modified with a synthetically accessible, robust tag. This attachment is addressable in a highly specific manner by means of molecular recognition events, such as Watson-Crick hybridization. Such DNA-protein conjugates, with their combined properties, have a broad range of applications, such as in high-performance biomedical diagnostic assays, fundamental research on molecular recognition, and the synthesis of DNA nanostructures. This Review surveys current approaches to generate DNA-protein conjugates as well as recent advances in their applications. For example, DNA-protein conjugates have been assembled into model systems for the investigation of catalytic cascade reactions and light-harvesting devices. Such hybrid conjugates are also used for the biofunctionalization of planar surf aces for micro- and nanoarrays, and for decorating inorganic nanoparticles to enable applications in sensing, materials science, and catalysis.
机译:与人工核酸的结合使蛋白质可以通过合成方法获得的坚固标签进行修饰。通过诸如Watson-Crick杂交之类的分子识别事件,可以以高度特定的方式解决这种连接。此类DNA-蛋白质偶联物具有其综合特性,具有广泛的应用,例如在高性能生物医学诊断测定,分子识别的基础研究以及DNA纳米结构的合成中。这篇综述综述了产生DNA-蛋白质结合物的当前方法以及其应用的最新进展。例如,DNA-蛋白质缀合物已被组装到模型系统中,以研究催化级联反应和光收集装置。此类杂合物还用于微阵列和纳米阵列的平面表面的生物功能化,以及用于装饰无机纳米粒子,以使其能够应用于传感,材料科学和催化领域。

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