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固态纳米孔显微镜中的DNA分子与构型

DNA molecules and configurations in a solid-state nanopore microscope.

作者信息

Li Jiali, Gershow Marc, Stein Derek, Brandin Eric, Golovchenko J A

机构信息

Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

Nat Mater. 2003 Sep;2(9):611-5. doi: 10.1038/nmat965. Epub 2003 Aug 24.

Abstract

A nanometre-scale pore in a solid-state membrane provides a new way of electronically probing the structure of single linear polymers, including those of biological interest in their native environments. Previous work with biological protein pores wide enough to let through and sense single-stranded DNA molecules demonstrates the power of using nanopores, but many future tasks and applications call for a robust solid-state pore whose nanometre-scale dimensions and properties may be selected, as one selects the lenses of a microscope. Here we demonstrate a solid-state nanopore microscope capable of observing individual molecules of double-stranded DNA and their folding behaviour. We discuss extensions of the nanopore microscope concept to alternative probing mechanisms and applications, including the study of molecular structure and sequencing.

摘要

固态膜中的纳米级孔隙为以电子方式探测单一线性聚合物的结构提供了一种新方法,这些聚合物包括在其天然环境中具有生物学意义的聚合物。先前对足够宽以让单链DNA分子通过并进行传感的生物蛋白质孔隙的研究,证明了使用纳米孔的强大功能,但许多未来的任务和应用需要一种坚固的固态孔隙,其纳米级尺寸和特性可以像选择显微镜的透镜一样进行选择。在这里,我们展示了一种能够观察双链DNA单个分子及其折叠行为的固态纳米孔显微镜。我们讨论了纳米孔显微镜概念在替代探测机制和应用方面的扩展,包括分子结构研究和测序。

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