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通过聚合酶延伸和环状模板的核酸外切酶III缺口进行DNA测序和体外诱变的有序缺失。

Ordered deletions for DNA sequencing and in vitro mutagenesis by polymerase extension and exonuclease III gapping of circular templates.

作者信息

Henikoff S

机构信息

Fred Hutchinson Cancer Research Center, Seattle, WA 98104.

出版信息

Nucleic Acids Res. 1990 May 25;18(10):2961-6. doi: 10.1093/nar/18.10.2961.

Abstract

A simple method is described for generating nested deletions from any fixed point in a cloned inset. Starting with a single-stranded phagemid template, T4 DNA polymerase is used to extend an annealed primer. This leads to a fully double-stranded circular molecule with a nick or small gap just 5' to the primer. Exonuclease III initiates progressive digestion from the resulting 3' end. Removal of timed aliquots and digestion with a single-strand specific endonuclease leads to a series of linear nested fragments having a common end corresponding to the 5' end of the primer. These molecules are circularized and used to transform cells, providing large numbers of deletion clones with targeted breakpoints. The 6-step procedure involves successive additions to tubes, beginning with a single-stranded template and ending with transformation; no extractions, precipitations or centrifugations are needed. Results are comparable to those obtained with standard Exonuclease III-generated deletion protocols, but there is no requirement for restriction endonuclease digestion or for highly purified double-stranded DNA starting material. This procedure provides a strategy for obtaining nested deletions in either direction both for DNA sequencing and for functional analysis.

摘要

本文描述了一种从克隆插入片段中的任何固定点产生嵌套缺失的简单方法。以单链噬菌粒模板为起始,使用T4 DNA聚合酶延伸退火引物。这会产生一个完全双链的环状分子,在引物的5'端仅有一个切口或小缺口。核酸外切酶III从所得的3'端开始进行逐步消化。去除定时取出的等分试样并用单链特异性内切酶消化,会产生一系列线性嵌套片段,其具有与引物5'端相对应的共同末端。这些分子被环化并用于转化细胞,从而提供大量具有靶向断点的缺失克隆。这个6步程序包括从单链模板开始,以转化结束,依次向试管中添加试剂;无需提取、沉淀或离心。结果与使用标准核酸外切酶III产生缺失的方案所获得的结果相当,但不需要限制性内切酶消化或高度纯化的双链DNA起始材料。该程序为在DNA测序和功能分析的两个方向上获得嵌套缺失提供了一种策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8409/330825/44c7be8ce4ad/nar00194-0115-a.jpg

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