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单DNA分子分析:分子梳的应用

Single DNA molecule analysis: applications of molecular combing.

作者信息

Lebofsky Ronald, Bensimon Aaron

机构信息

Genomic Stability Unit, Dépt de Structure et Dynamique des Génomes, Pasteur Institute, Paris, France.

出版信息

Brief Funct Genomic Proteomic. 2003 Jan;1(4):385-96. doi: 10.1093/bfgp/1.4.385.

Abstract

Dynamic changes to the genomic structure and to the DNA replication programme are important determinants of normal and abnormal cell development. To understand these changes and how they vary from cell to cell, single DNA molecules from both normal and abnormal cell populations must be examined and compared. Physical characterisation of single genomes at the kilobase level of resolution over large genomic regions is possible with molecular combing technology. An array of combed single DNA molecules is prepared by stretching molecules attached by their extremities to a silanised glass surface with a receding air-water meniscus. By performing fluorescent hybridisation on combed DNA, genomic probe position can be directly visualised, providing a means to construct physical maps and detect micro-rearrangements. Single-molecule DNA replication can also be monitored through fluorescent detection of incorporated nucleotide analogues on combed DNA molecules. These and other single-molecule applications of molecular combing are discussed in this paper and future developments of the technology are considered.

摘要

基因组结构和DNA复制程序的动态变化是正常和异常细胞发育的重要决定因素。为了理解这些变化以及它们在不同细胞之间的差异,必须对正常和异常细胞群体中的单个DNA分子进行检测和比较。利用分子梳技术可以在大基因组区域以千碱基分辨率对单个基因组进行物理表征。通过用后退的气-水界面将末端连接的分子拉伸到硅烷化玻璃表面,制备一系列梳理过的单个DNA分子阵列。通过对梳理过的DNA进行荧光杂交,可以直接观察基因组探针的位置,为构建物理图谱和检测微重排提供了一种方法。还可以通过对梳理过的DNA分子上掺入的核苷酸类似物进行荧光检测来监测单分子DNA复制。本文讨论了分子梳的这些及其他单分子应用,并对该技术的未来发展进行了展望。

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