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用于研究干细胞中基因回路沉默的Rosa26对接位点。

Rosa26 docking sites for investigating genetic circuit silencing in stem cells.

作者信息

Fitzgerald Michael, Livingston Mark, Gibbs Chelsea, Deans Tara L

机构信息

Department of Biomedical Engineering, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Synth Biol (Oxf). 2020 Aug 19;5(1):ysaa014. doi: 10.1093/synbio/ysaa014. eCollection 2020.

Abstract

Approaches in mammalian synthetic biology have transformed how cells can be programmed to have reliable and predictable behavior, however, the majority of mammalian synthetic biology has been accomplished using immortalized cell lines that are easy to grow and easy to transfect. Genetic circuits that integrate into the genome of these immortalized cell lines remain functional for many generations, often for the lifetime of the cells, yet when genetic circuits are integrated into the genome of stem cells gene silencing is observed within a few generations. To investigate the reactivation of silenced genetic circuits in stem cells, the Rosa26 locus of mouse pluripotent stem cells was modified to contain docking sites for site-specific integration of genetic circuits. We show that the silencing of genetic circuits can be reversed with the addition of sodium butyrate, a histone deacetylase inhibitor. These findings demonstrate an approach to reactivate the function of genetic circuits in pluripotent stem cells to ensure robust function over many generations. Altogether, this work introduces an approach to overcome the silencing of genetic circuits in pluripotent stem cells that may enable the use of genetic circuits in pluripotent stem cells for long-term function.

摘要

哺乳动物合成生物学的方法已经改变了对细胞进行编程以使其具有可靠和可预测行为的方式,然而,大多数哺乳动物合成生物学研究是使用易于生长和转染的永生化细胞系完成的。整合到这些永生化细胞系基因组中的遗传回路在许多代中都能保持功能,通常在细胞的整个生命周期内都能发挥作用,然而,当遗传回路整合到干细胞基因组中时,几代之内就会出现基因沉默现象。为了研究干细胞中沉默遗传回路的重新激活,对小鼠多能干细胞的Rosa26位点进行了修饰,使其包含用于遗传回路位点特异性整合的对接位点。我们发现,添加组蛋白脱乙酰酶抑制剂丁酸钠可以逆转遗传回路的沉默。这些发现展示了一种重新激活多能干细胞中遗传回路功能以确保其在许多代中都能稳健发挥功能的方法。总之,这项工作引入了一种克服多能干细胞中遗传回路沉默的方法,这可能使多能干细胞中的遗传回路能够长期发挥功能。

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