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生成可允许在预定基因组位置进行高效靶向的平台人胚胎干细胞系。

Generation of platform human embryonic stem cell lines that allow efficient targeting at a predetermined genomic location.

机构信息

Primary and Stem Cell Systems, Life Technologies Corporation, Carlsbad, California 92008, USA.

出版信息

Stem Cells Dev. 2009 Dec;18(10):1459-72. doi: 10.1089/scd.2009.0047.

Abstract

Bacteriophage recombinases can target specific loci in human embryonic stem cells (hESCs) at high efficiency, allowing for long-term expression of transgenes. In the present work, we describe a retargeting system where we used phiC31 integrase to target a plasmid to a pseudo-attP site in the cellular genome. The integration site was mapped and the chromosomal location evaluated for potential to be transcriptionally active in differentiated cells. The target plasmid, thus inserted, carried a wild-type R4 attB site that acts as a target for further integration of expression constructs. We engineered 2 hESC lines, BG01V and H9, to contain the target and showed that genetic elements such as promoter-reporter pairs can be inserted at the target efficiently and specifically. The retargeting construct has been adapted for complex element assembly using Multisite Gateway technology. Retargeted clones show sustained expression and appropriate regulation of the transgenes over long-term culture, upon random differentiation, and directed induction into neural lineages. The system described here represents a method to rapidly assemble complex plasmid-based assay systems, controllably insert them into the hESC genome, and have them actively express in undifferentiated as well as in differentiated cells.

摘要

噬菌体重组酶可以高效地将特定基因靶向人类胚胎干细胞(hESC)中的特定基因座,从而实现转基因的长期表达。在本工作中,我们描述了一种重定向系统,我们使用 phiC31 整合酶将质粒靶向细胞基因组中的伪 attP 位点。我们对整合位点进行了定位,并评估了其在分化细胞中潜在的转录活性的染色体位置。插入的目标质粒携带一个野生型 R4 attB 位点,该位点可作为进一步插入表达构建体的靶点。我们构建了 2 个 hESC 系 BG01V 和 H9,使其包含该靶点,并证明了遗传元件,如启动子-报告基因对,可以高效且特异性地插入到该靶点。该重定向构建体已通过多酶位 Gateway 技术进行了复杂元件组装的适应性改造。重定向克隆在长期培养、随机分化和定向诱导为神经谱系后,表现出转基因的持续表达和适当调控。本文描述的系统代表了一种快速组装基于质粒的复杂测定系统的方法,可将其可控地插入 hESC 基因组,并使其在未分化以及分化细胞中活跃表达。

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