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超越“基因敲除”小鼠:哺乳动物基因组程序化修饰的新视角

Beyond 'knock-out' mice: new perspectives for the programmed modification of the mammalian genome.

作者信息

Cohen-Tannoudji M, Babinet C

机构信息

Unité de Biologie du Développement, CNRS URA 1960, Institut Pasteur, Paris, France.

出版信息

Mol Hum Reprod. 1998 Oct;4(10):929-38. doi: 10.1093/molehr/4.10.929.

Abstract

The emergence of gene inactivation by homologous recombination methodology in embryonic stem cells has revolutionized the field of mouse genetics. Indeed, the availability of a rapidly growing number of mouse null mutants has represented an invaluable source of knowledge on mammalian development, cellular biology and physiology and has provided many models for human inherited diseases. In recent years, improvements of the original 'knock-out' strategy, as well as the exploitation of exogenous enzymatic systems that are active in the recombination process, have considerably extended the range of genetic manipulations that can be produced. For example, it is now possible to create a mouse bearing a targeted point mutation as the unique change in its entire genome therefore allowing very fine dissection of gene function in vivo. Chromosome alterations such as large deletions, inversions or translocations can also be designed and will facilitate the global functional analysis of the mouse genome. This will extend the possibilities of creating models of human pathologies that frequently originate from various chromosomal disorders. Finally, the advent of methods allowing conditional gene targeting will open the way for the analysis of the consequence of a particular mutation in a defined organ and at a specific time during the life of a mouse.

摘要

胚胎干细胞中通过同源重组方法实现基因失活的技术出现,彻底改变了小鼠遗传学领域。的确,越来越多的小鼠基因敲除突变体为研究哺乳动物发育、细胞生物学和生理学提供了宝贵的知识来源,并为人类遗传性疾病提供了许多模型。近年来,对原始“敲除”策略的改进以及对重组过程中具有活性的外源酶系统的利用,极大地扩展了可进行的基因操作范围。例如,现在有可能培育出一只小鼠,其整个基因组中唯一的变化就是携带一个靶向点突变,从而能够在体内对基因功能进行非常精细的剖析。诸如大片段缺失、倒位或易位等染色体改变也能够设计出来,这将有助于对小鼠基因组进行全面的功能分析。这将扩展创建源于各种染色体疾病的人类病理模型的可能性。最后,条件性基因靶向方法的出现,将为分析小鼠特定器官在特定生命阶段特定突变的后果开辟道路。

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