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DNA Origami as Scaffolds for Self-Assembly of Lipids and Proteins

机译:DNA折纸作为脂质和蛋白质的自组装的支架

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摘要

Since first being reported in 2006, the DNA origami approach has attracted increasing attention due to programmable shapes, structural stability, biocompatibility, and fantastic addressability. Herein, we provide an account of recent developments of DNA origami as scaffolds for templating the selfassembly of distinct biocomponents, essentially proteins and lipids, into a diverse spectrum of integrated supramolecular architectures. First, the historical development of the DNA origami concept is briefly reviewed. Next, various applications of DNA origami constructs in controllable directed assembly of soluble proteins are discussed. The manipulation and self-assembly of lipid membranes and membrane proteins by using DNA origami as scaffolds are also addressed. Furthermore, recent progress in applying DNA origami in cryoelectron microscopy analysis is discussed. These advances collectively emphasize that the DNA origami approach is a highly versatile, fast evolving tool that may be integrated with lipids and proteins in a way that meets future challenges in molecular biology and nanomedicine.
机译:自2006年首次报道以来,由于可编程形状,结构稳定性,生物相容性和奇妙的寻求性,DNA折纸方法引起了越来越长的关注。在此,我们提供了DNA折纸的最新发展作为用于将独特的生物组分,基本上蛋白质和脂质的自主体的自主体的脚手架进入的脚手架中,进入了一系列集成的超分子架构。首先,简要审查了DNA折纸概念的历史发展。接下来,讨论了DNA折纸构建体在可溶性蛋白的可控定向组装中的各种应用。还解决了通过使用DNA折纸作为支架的脂膜和膜蛋白的操纵和自组装。此外,讨论了探讨了在冷冻电子显微镜分析中施加DNA折纸的最新进展。这些进步共同强调,DNA折纸方法是一种高度通用的快速不断发展的工具,可以以符合分子生物学和纳米医生的未来挑战的方式与脂质和蛋白质集成。

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