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利用四环素调控的SV40大T抗原对小鼠细胞进行精确的条件性永生化。

Precise conditional immortalization of mouse cells using tetracycline-regulated SV40 large T-antigen.

作者信息

Anastassiadis Konstantinos, Rostovskaya Maria, Lubitz Sandra, Weidlich Stefanie, Stewart A Francis

机构信息

Center for Regenerative Therapies Dresden, BioInnovationsZentrum, Technische Universität Dresden, Dresden, Germany.

出版信息

Genesis. 2010 Apr;48(4):220-32. doi: 10.1002/dvg.20605.

Abstract

Cellular immortalization provides a way for expansion and subsequent molecular characterization of rare cell types. Ideally, immortalization can be achieved by the reversible expression of immortalizing proteins. Here, we describe the use of conditional immortalization based on a modified tetracycline-regulated system for the expression of SV40 large T-antigen in embryonic stem (ES) cells and mice. The modified system relies on a codon improved reverse tetracycline transactivator (irtTA) fused to the ligand-binding domain (LBD) of the androgen receptor (irtTA-ABD) or of a mutated glucocorticoid receptor (irtTA-GBD*). Induction of T-antigen is conferred only after addition of two ligands, one to activate the LBD (mibolerone for irtTA-ABD or dexamethasone for irtTA-GBD*) and one to activate the tetracycline transactivator (doxycycline). In ES cells, changes in gene expression upon large T induction were limited and reversible upon deinduction. Similarly, expression of T-antigen was very tightly regulated in mice. We have isolated and expanded bone marrow mesenchymal stem cells that could be genetically manipulated and maintained their differentiation properties after several passages of expansion under conditions that induce the expression of large T-antigen.

摘要

细胞永生化提供了一种对稀有细胞类型进行扩增及后续分子特征分析的方法。理想情况下,永生化可通过永生化蛋白的可逆表达来实现。在此,我们描述了基于改良的四环素调控系统在胚胎干细胞和小鼠中表达SV40大T抗原的条件性永生化方法。改良系统依赖于与雄激素受体(irtTA-ABD)或突变糖皮质激素受体(irtTA-GBD*)的配体结合结构域(LBD)融合的密码子优化反向四环素反式激活因子(irtTA)。只有在添加两种配体后才会诱导T抗原表达,一种用于激活LBD(米勃龙用于irtTA-ABD,地塞米松用于irtTA-GBD*),另一种用于激活四环素反式激活因子(强力霉素)。在胚胎干细胞中,大T诱导后基因表达的变化有限,去诱导后可逆。同样,在小鼠中T抗原的表达受到非常严格的调控。我们分离并扩增了骨髓间充质干细胞,这些细胞在诱导大T抗原表达的条件下经过多次传代扩增后仍可进行基因操作并保持其分化特性。

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