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首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >Exploring DNA-protein interactions on the single DNA molecule level using nanofluidic tools
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Exploring DNA-protein interactions on the single DNA molecule level using nanofluidic tools

机译:使用纳米流体工具探索单一DNA分子水平的DNA-蛋白质相互作用

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摘要

DNA-protein interactions are at the core of the cellular machinery and single molecule methods have revolutionized the possibilities to study, and our understanding of these interactions on the molecular level. Nanofluidic channels have been extensively used for studying single DNA molecules during the last twelve years and in this review, we discuss how this experimental platform has been extended to studies of DNA-protein interactions. We first present how the design of the device can be tailored for the specific DNA-protein system studied and how the channels can be passivated to avoid non-specific binding of proteins. We then focus on describing the different kinds of DNA-interacting proteins that have been studied in nanofluidic devices, including proteins that compact DNA and proteins that form filaments on DNA. Our main objective is to highlight the diverse functionalitiesof DNA-protein systems that have been characterized using nanofluidic structures and hence demonstrate the versatility of these experimental tools. We finally discuss potential future directions studies of DNA-protein complexes in nanochannels might take, including specific DNA-protein systems that are difficult to analyze with traditional techniques, devices with increased complexity, and fully integrated lab-on-a-chip devices for analysis of material extracted from (single) cells.
机译:DNA-蛋白质相互作用处于细胞机制的核心,单分子方法彻底改变了研究的可能性,以及我们对分子水平对这些相互作用的理解。在过去的十二年中,纳米流体通道已广泛用于研究单一DNA分子,并且在本综述中,我们讨论了该实验平台如何扩展到DNA-蛋白质相互作用的研究。我们首先介绍如何针对所研究的特定DNA蛋白质系统量身定制装置的设计以及如何钝化通道以避免蛋白质的非特异性结合。然后,我们专注于描述已在纳米流体装置中研究的不同类型的DNA相互作用蛋白质,包括紧凑的DNA和蛋白质在DNA上形成长丝的蛋白质。我们的主要目标是突出DNA-蛋白质系统的不同功能,这些系统已经使用纳米流体结构表征,并因此证明了这些实验工具的多功能性。我们终于讨论了潜在的未来方向,纳米蛋白质中的DNA蛋白复合物的研究可能需要,包括难以分析传统技术的特异性DNA蛋白质系统,具有增加的复杂性的装置,以及用于分析的完全集成的实验室设备从(单)细胞中提取的材料。

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