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在胚胎干细胞的Hox-2.6基因座中引入一个微小突变。

Introduction of a subtle mutation into the Hox-2.6 locus in embryonic stem cells.

作者信息

Hasty P, Ramírez-Solis R, Krumlauf R, Bradley A

机构信息

Institute for Molecular Genetics, Baylor College of Medicine, Houston, Texas 77030.

出版信息

Nature. 1991 Mar 21;350(6315):243-6. doi: 10.1038/350243a0.

Abstract

Gene targeting in embryonic stem (ES) cells is a powerful tool for generating mice with null alleles. Current methods of gene inactivation in ES cells introduce a neomycin gene (neo) cassette both as a mutagen and a selection marker for transfected cells. Although null alleles are valuable, changes at the nucleotide level of a gene are very important for functional analysis. One gene family in which subtle mutations would be particularly valuable are the clusters of Hox homeobox genes. Inactivation of gene in a cluster with a neo cassette that includes promoter/enhancer elements may deregulate transcription of neighbouring genes and generate a phenotype which is difficult to interpret. We describe here a highly efficient gene targeting method, termed the 'hit and run' procedure. This generates ES cells with subtle site-specific mutations with no selectable marker and may be useful for most genes. We have developed this procedure at the hypoxanthine phosphoribosyltransferase (hprt) locus and subsequently isolated ES cells with a premature stop codon in the homeobox of Hox-2.6 (ref. 14).

摘要

胚胎干细胞(ES细胞)中的基因打靶是培育带有无效等位基因小鼠的有力工具。目前在ES细胞中进行基因失活的方法会引入一个新霉素基因(neo)盒,作为诱变剂和转染细胞的选择标记。虽然无效等位基因很有价值,但基因核苷酸水平的变化对于功能分析非常重要。其中细微突变特别有价值的一个基因家族是Hox同源框基因簇。用包含启动子/增强子元件的neo盒使基因簇中的基因失活,可能会解除对邻近基因转录的调控,并产生难以解释的表型。我们在此描述一种高效的基因打靶方法,称为“打了就跑”程序。这能产生具有细微位点特异性突变且无选择标记的ES细胞,可能对大多数基因都有用。我们已在次黄嘌呤磷酸核糖基转移酶(hprt)基因座开发了此程序,随后分离出了在Hox-2.6同源框中有一个提前终止密码子的ES细胞(参考文献14)。

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