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将蛋白-DNA 杂合体组织成具有可编程功能的纳米结构。

Organizing protein-DNA hybrids as nanostructures with programmed functionalities.

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

Trends Biotechnol. 2010 Dec;28(12):619-28. doi: 10.1016/j.tibtech.2010.09.005. Epub 2010 Oct 28.

Abstract

The structural and functional information encoded in the base sequence of nucleic acids provides a means to organize hybrid protein-DNA nanostructures with pre-designed, programmed functionality. This review discusses the activation of enzyme cascades in supramolecular DNA-protein hybrid structures, the bioelectrocatalytic activation of redox enzymes on DNA scaffolds, and the programmed positioning of enzymes on 1D, 2D and 3D DNA nanostructures. These systems provide starting points towards the design of interconnected enzyme networks. Substantial progress in the tailoring of functional protein-DNA nanostructures has been accomplished in recent years, and advances in this field warrant a comprehensive discussion. The application of these systems for the control of biocatalytic transformations, for amplified biosensing, and for the synthesis of metallic nanostructures are addressed, and future prospects for these systems are highlighted.

摘要

核酸碱基序列所编码的结构和功能信息为组织具有预设计、可编程功能的杂合蛋白-DNA 纳米结构提供了一种手段。本综述讨论了超分子 DNA-蛋白杂合结构中酶级联的激活、DNA 支架上氧化还原酶的生物电化学激活以及酶在一维、二维和三维 DNA 纳米结构上的程序化定位。这些系统为设计相互连接的酶网络提供了起点。近年来,在功能蛋白-DNA 纳米结构的定制方面取得了重大进展,该领域的进展值得进行全面讨论。本文还讨论了这些系统在控制生物催化转化、放大生物传感和合成金属纳米结构方面的应用,并强调了这些系统的未来前景。

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