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人类多能干细胞中的基因靶向

Gene targeting in human pluripotent stem cells.

作者信息

Liu Ying, Rao Mahendra

机构信息

Department of Reproductive Medicine, UCSD Medical Center, University of California, San Diego, San Diego, CA, USA.

出版信息

Methods Mol Biol. 2011;767:355-67. doi: 10.1007/978-1-61779-201-4_26.

Abstract

Targeted homologous recombination (HR) is an essential tool in stem cell biology. It can be used to study gene function and is a highly developed technology in the mouse where precise genetic modifications are introduced into the genome via HR in mouse embryonic stem cells (mESCs). However, gene targeting has not been widely applied to the study of human pluripotent stem cells (hPSCs) due to its relatively low efficiency in human cell lines. To overcome this technical hurdle, we have developed and established a protocol that allows efficient gene targeting in hPSC lines. This chapter provides a detailed protocol for efficiently performing gene targeting in hPSCs by electroporation. The protocol describes methods for cell preparation, antibiotic selection, and excision of the selectable marker following gene targeting. While we can only target one allele at a time, HR covers a broad range of important applications including making knock-in reporter lines and knock-in lineage tracers, generating disease models that are caused by dominant mutants, repair of patient-derived induced PSCs that only involve a single allele mutation, and knocking out genes that are located on the X chromosome in male lines. When targeting to both alleles is needed, such as generation of a knockout cell line, the cells can be electroporated twice with targeting vectors designed to target each of the alleles. This protocol will find broad applications in generating lineage-specific reporter lines and point mutations in genetic repair in disease models using hPSCs.

摘要

靶向同源重组(HR)是干细胞生物学中的一项重要工具。它可用于研究基因功能,并且在小鼠中是一项高度发达的技术,通过小鼠胚胎干细胞(mESCs)中的HR将精确的基因修饰引入基因组。然而,由于基因靶向在人类细胞系中的效率相对较低,尚未广泛应用于人类多能干细胞(hPSCs)的研究。为克服这一技术障碍,我们开发并建立了一种方案,可在hPSC系中实现高效的基因靶向。本章提供了通过电穿孔在hPSCs中高效进行基因靶向的详细方案。该方案描述了细胞制备、抗生素筛选以及基因靶向后去除选择标记的方法。虽然我们一次只能靶向一个等位基因,但HR涵盖了广泛的重要应用,包括构建敲入报告基因系和敲入谱系追踪器、生成由显性突变体引起的疾病模型、修复仅涉及单个等位基因突变的患者来源的诱导性PSC,以及在雄性细胞系中敲除位于X染色体上的基因。当需要靶向两个等位基因时,例如生成敲除细胞系,可以用设计用于靶向每个等位基因的靶向载体对细胞进行两次电穿孔。该方案将在使用hPSCs生成谱系特异性报告基因系以及疾病模型基因修复中的点突变方面有广泛应用。

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