Semi-synthetic nucleic acid–protein conjugates: applications in life sciences and nanobiotechnology

Christof M Niemeyer
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引用次数: 31

Abstract

Semi-synthetic conjugates of nucleic acids and proteins can be generated by either covalent coupling chemistry, or else by non-covalent biomolecular recognition systems, such as receptor–ligands of complementary nucleic acids. These nucleic acid–protein conjugates are versatile molecular tools which can be applied, for instance, in the self-assembly of high-affinity reagents for immunological detection assays, the fabrication of laterally microstructured biochips containing functional biological groups, and the biomimetic ‘bottom–up’ synthesis of nanostructured supramolecular devices. This review summarizes the current state-of-the-art synthesis and characterization methods of artificial nucleic acid–protein conjugates, as well as applications and perspectives for future developments of such hybrid biomolecular components in life sciences and nanobiotechnology.

半合成核酸-蛋白偶联物:在生命科学和纳米生物技术中的应用
核酸和蛋白质的半合成偶联物既可以通过共价偶联化学产生,也可以通过非共价生物分子识别系统产生,例如互补核酸的受体配体。这些核酸-蛋白偶联物是多功能的分子工具,例如,可以应用于用于免疫检测分析的高亲和试剂的自组装,含有功能生物基团的横向微结构生物芯片的制造,以及纳米结构超分子装置的仿生“自下而上”合成。本文综述了目前人工核酸蛋白偶联物的合成和表征方法,以及这类杂化生物分子组分在生命科学和纳米生物技术中的应用和发展前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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