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使用TARGATT™技术生成位点特异性转基因小鼠。

Using TARGATT™ Technology to Generate Site-Specific Transgenic Mice.

作者信息

Chen-Tsai Ruby Yanru

机构信息

Applied StemCell, Inc., Milpitas, CA, USA.

出版信息

Methods Mol Biol. 2019;1874:71-86. doi: 10.1007/978-1-4939-8831-0_4.

Abstract

The discovery of new gene editing tools in the past several years has moved the transgenic field to a new level. The traditional random transgenesis method by pronuclear microinjection has been largely replaced by targeted or site-specific transgenic technologies without the need of homologous recombination in embryonic stem (ES) cells. In this chapter, I describe detailed protocols of an integrase-based approach, trademarked as "TARGATT™" (target attP), to produce site-specific transgenic mice via pronuclear microinjection, whereby an intact single-copy transgene can be inserted into a predetermined chromosomal locus with high efficiency (up to 40%), and faithfully transmitted through generations. This system allows high-level global transgene expression or tissue-specific expression depending on the promoter used, or inducible expression such as induced by tetracycline or doxycycline. Using this approach, site-specific transgenic mice can be generated as fast as in 3 months. The technique presented here greatly facilitates murine transgenesis and precise structure/function dissection of mammalian gene function and regulation in vivo.

摘要

在过去几年中,新基因编辑工具的发现将转基因领域提升到了一个新水平。传统的原核显微注射随机转基因方法已在很大程度上被靶向或位点特异性转基因技术所取代,这些技术无需在胚胎干细胞(ES细胞)中进行同源重组。在本章中,我将详细描述一种基于整合酶的方法(商标为“TARGATT™”,即靶向attP)的实验方案,该方法通过原核显微注射产生位点特异性转基因小鼠,借此完整的单拷贝转基因能够高效(高达40%)插入到预定的染色体位点,并能稳定遗传至后代。该系统可根据所使用的启动子实现高水平的全基因表达或组织特异性表达,或诱导表达,如由四环素或强力霉素诱导的表达。采用这种方法,最快3个月就能产生位点特异性转基因小鼠。这里介绍的技术极大地促进了小鼠转基因研究以及对哺乳动物基因功能和体内调控的精确结构/功能剖析。

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