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Improvement of the reverse tetracycline transactivator by single amino acid substitutions that reduce leaky target gene expression to undetectable levels

机译:通过单个氨基酸取代改进逆向四环素反式激活因子从而将漏靶基因的表达降低到无法检测的水平

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摘要

Conditional gene expression systems that enable inducible and reversible transcriptional control are essential research tools and have broad applications in biomedicine and biotechnology. The reverse tetracycline transcriptional activator is a canonical system for engineered gene expression control that enables graded and gratuitous modulation of target gene transcription in eukaryotes from yeast to human cell lines and transgenic animals. However, the system has a tendency to activate transcription even in the absence of tetracycline and this leaky target gene expression impedes its use. Here, we identify single amino-acid substitutions that greatly enhance the dynamic range of the system in yeast by reducing leaky transcription to undetectable levels while retaining high expression capacity in the presence of inducer. While the mutations increase the inducer concentration required for full induction, additional sensitivity-enhancing mutations can compensate for this effect and confer a high degree of robustness to the system. The novel transactivator variants will be useful in applications where tight and tunable regulation of gene expression is paramount.
机译:能够诱导和可逆转录控制的条件基因表达系统是必不可少的研究工具,在生物医学和生物技术中具有广泛的应用。四环素逆转录激活因子是工程化基因表达控制的规范系统,可实现从酵母到人细胞系和转基因动物的真核生物中靶基因转录的分级和无偿调节。然而,即使在没有四环素的情况下,该系统也具有激活转录的趋势,并且这种泄漏的靶基因表达阻碍了其使用。在这里,我们确定了单个氨基酸取代,可通过将泄漏转录降低至无法检测的水平,同时在诱导剂存在的情况下保持高表达能力,从而大大增强酵母中系统的动态范围。虽然突变增加了完全诱导所需的诱导剂浓度,但其他增强灵敏度的突变可以弥补这一影响,并为系统带来高度的鲁棒性。新型反式激活因子变体将在严格且可调节的基因表达调控中发挥重要作用。

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