Tet-on cell lines engineered to stably express doxycycline (Dox)-regulated reverse transcriptional transactivator (rtTA) have many applications in biomedical research and biotechnology. Unfortunately, construction and maintenance of such cells often proves to be costly, labor intensive and ineffective. Moreover, the Tet-on clones generated using standard methodology were often unstable and frequently displayed significantly changed physiological properties compared with their parental cells. Here we describe an optimized protocol for generation of Tet-on cells. The protocol is based on the use of a recently developed pN1p beta actin-rtTA2S-M2-IRES-EGFP vector (where IRES is an internal ribosome entry site) and permits relatively inexpensive construction of many Tet-on clones with essentially 100% efficiency. The method is well suited for 'difficult' cell lines displaying genetic instability and high levels of epigenetic silencing. The constructed Tet-on cells remain stable with time in the absence of any selection agents, are easy to monitor and preserve the characteristics of parental cells. The protocol can be completed in 2 months.

译文

:Tet-on细胞系经过工程设计以稳定地表达强力霉素(Dox)调节的逆转录反式激活因子(rtTA),在生物医学研究和生物技术中具有许多应用。不幸的是,这种电池的构造和维护通常被证明是昂贵的,劳动密集型的并且是无效的。此外,与它们的亲代细胞相比,使用标准方法生成的Tet-on克隆通常不稳定,并且经常显示出显着变化的生理特性。在这里,我们描述了生成Tet-on细胞的优化协议。该协议基于最近开发的pN1pβ肌动蛋白-rtTA2S-M2-IRES-EGFP载体(IRES是内部核糖体进入位点)的使用,并允许相对便宜的构建许多Tet-on克隆,效率达到100%。该方法非常适合于显示遗传不稳定性和高水平的表观遗传沉默的“困难”细胞系。所构建的Tet-on细胞在没有任何选择剂的情况下随时间保持稳定,易于监测和保留亲代细胞的特性。该协议可以在2个月内完成。

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