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从λKOS基因组文库构建基因靶向载体。

Construction of gene targeting vectors from lambda KOS genomic libraries.

作者信息

Wattler S, Kelly M, Nehls M

机构信息

Lexicon Genetics Incorporated, The Woodlands, TX, USA.

出版信息

Biotechniques. 1999 Jun;26(6):1150-6, 1158, 1160. doi: 10.2144/99266rr02.

Abstract

We describe a highly redundant murine genomic library in a new lambda phage, lambda knockout shuttle (lambda KOS) that facilitates the very rapid construction of replacement-type gene targeting vectors. The library consists of 94 individually amplified subpools, each containing an average of 40,000 independent genomic clones. The subpools are arrayed into a 96-well format that allows a PCR-based efficient recovery of independent genomic clones. The lambda KOS vector backbone permits the CRE-mediated conversion into high-copy number pKOS plasmids, wherein the genomic inserts are automatically flanked by negative-selection cassettes. The lambda KOS vector system exploits the yeast homologous recombination machinery to simplify the construction of replacement-type gene targeting vectors independent of restriction sites within the genomic insert. We outline procedures that allow the generation of simple and more sophisticated conditional gene targeting vectors within 3-4 weeks, beginning with the screening of the lambda KOS genomic library.

摘要

我们描述了一种存在于新型λ噬菌体——λ敲除穿梭载体(lambda KOS)中的高度冗余的小鼠基因组文库,该文库有助于非常快速地构建置换型基因打靶载体。该文库由94个单独扩增的亚池组成,每个亚池平均包含40,000个独立的基因组克隆。这些亚池排列成96孔板形式,允许基于PCR高效回收独立的基因组克隆。lambda KOS载体骨架允许通过CRE介导转化为高拷贝数的pKOS质粒,其中基因组插入片段自动侧翼带有负选择盒。lambda KOS载体系统利用酵母同源重组机制,简化置换型基因打靶载体的构建,而无需考虑基因组插入片段内的限制性酶切位点。我们概述了从筛选lambda KOS基因组文库开始,在3-4周内生成简单和更复杂的条件性基因打靶载体的程序。

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