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随机断裂作图法,一种用于相对于DNA分子末端对内部序列进行物理定位的快速方法。

Random-breakage mapping, a rapid method for physically locating an internal sequence with respect to the ends of a DNA molecule.

作者信息

Game J C, Bell M, King J S, Mortimer R K

机构信息

Division of Cellular and Molecular Biology, Lawrence Berkeley Laboratory, Berkeley, CA 94720.

出版信息

Nucleic Acids Res. 1990 Aug 11;18(15):4453-61. doi: 10.1093/nar/18.15.4453.

Abstract

We describe a method for determining the position of a cloned internal sequence with respect to the ends of a DNA molecule. The molecules are randomly broken at low frequency and the fragments are subjected to electrophoresis. Southern hybridization using the cloned DNA as a probe identifies only those fragments containing the sequence. The size distribution of these fragments is such that two threshold changes in intensity of signal are seen in the smear pattern below the unbroken molecules. The positions of the changes represent the distances from the sequence to each molecular end. The intensity changes arise because the natural ends of the molecules influence the fragment distribution obtained. From once-broken molecules, no fragments can arise that contain a given sequence and are shorter than the distance between that sequence and the nearest molecular end. We tested the method by using x-rays to induce breakage in yeast DNA. Genes of independently known position were mapped within whole chromosomes or Not I restriction fragments using Southern blots from gels of irradiated molecules. We present equations to predict fragment distribution as a function of break-frequency and position of the probed sequence.

摘要

我们描述了一种确定克隆的内部序列相对于DNA分子末端位置的方法。分子在低频下随机断裂,然后对片段进行电泳。使用克隆的DNA作为探针进行Southern杂交,仅识别那些包含该序列的片段。这些片段的大小分布使得在未断裂分子下方的涂片模式中可以看到信号强度的两个阈值变化。变化的位置代表从该序列到每个分子末端的距离。强度变化的出现是因为分子的天然末端影响了所获得的片段分布。对于一次断裂的分子,不会出现包含给定序列且短于该序列与最近分子末端之间距离的片段。我们通过使用X射线诱导酵母DNA断裂来测试该方法。利用来自辐照分子凝胶的Southern印迹,将独立已知位置的基因定位在整个染色体或Not I限制片段内。我们给出了方程,以预测片段分布作为断裂频率和被探测序列位置的函数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbaf/331264/60efa1166445/nar00199-0142-a.jpg

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