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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Imaging of nucleic acids with atomic force microscopy.
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Imaging of nucleic acids with atomic force microscopy.

机译:用原子力显微镜对核酸成像。

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Atomic force microscopy (AFM) is a key tool of nanotechnology with great importance in applications to DNA nanotechnology and to the recently emerging field of RNA nanotechnology. Advances in the methodology of AFM now enable reliable and reproducible imaging of DNA of various structures, topologies, and DNA and RNA nanostructures. These advances are reviewed here with emphasis on methods utilizing modification of mica to prepare the surfaces enabling reliable and reproducible imaging of DNA and RNA nanostructures. Since the AFM technology for DNA is more mature, AFM imaging of DNA is introduced in this review to provide experience and background for the improvement of AFM imaging of RNA. Examples of imaging different structures of RNA and DNA are discussed and illustrated. Special attention is given to the potential use of AFM to image the dynamics of nucleic acids at the nanometer scale. As such, we review recent advances with the use of time-lapse AFM.
机译:原子力显微镜(AFM)是纳米技术的重要工具,在DNA纳米技术和最近出现的RNA纳米技术领域中具有重要意义。现在,原子力显微镜的方法学的进步使得各种结构,拓扑结构以及DNA和RNA纳米结构的DNA都能可靠且可重现。本文对这些进展进行了重点综述,重点介绍了利用云母修饰来制备表面的方法,从而能够对DNA和RNA纳米结构进行可靠且可重现的成像。由于用于DNA的AFM技术更加成熟,因此在本综述中引入了DNA的AFM成像,以提供改进RNA的AFM成像的经验和背景。讨论和说明了对RNA和DNA的不同结构进行成像的示例。特别注意了AFM在纳米级成像核酸动力学的潜在用途。因此,我们回顾了使用延时AFM的最新进展。

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