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An activator/repressor dual system allows tight tetracycline-regulated gene expression in budding yeast.

机译:激活物/阻遏物双重系统可以使四环素调节基因在芽中的酵母中表达紧密。

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摘要

We have developed an activator/repressor expression system for budding yeast in which tetracyclines control in opposite ways the ability of tetR-based activator and repressor molecules to bind tetO promoters. This combination allows tight expression of tetO- driven genes, both in a direct (tetracycline-repressible) and reverse (tetracycline-inducible) dual system. Ssn6 and Tup1, that are components of a general repressor complex in yeast, have been tested for their repressing properties in the dual system, using lacZ and CLN2 as reporter genes. Ssn6 gives better results and allows complete switching-off of the regulated genes, although increasing the levels of the Tup1-based repressor by expressing it from a stronger promoter improves repressing efficiency of the latter. Effector-mediated shifts between expression and non-expression conditions are rapid. The dual system here described may be useful for the functional analysis of essential genes whose conditional expression can be tightly controlled by tetracyclines.
机译:我们已经开发了一种用于发芽酵母的活化剂/阻遏物表达系统,其中四环素以相反的方式控制基于tetR的活化剂和阻遏物分子结合tetO启动子的能力。这种组合允许在直接(四环素可抑制)和反向(四环素可诱导)双重系统中紧密表达tetO驱动的基因。 Ssn6和Tup1是酵母中一般阻遏物复合物的组成部分,已使用lacZ和CLN2作为报告基因在双系统中测试了它们的阻遏特性。 Ssn6提供更好的结果,并允许完全关闭受调控的基因,尽管通过从更强的启动子表达来提高基于Tup1的阻遏物的水平可提高后者的阻遏效率。效应子介导的表达和非表达条件之间的转换是迅速的。这里描述的双重系统可能对必需基因的功能分析有用,这些必需基因的条件表达可以被四环素严格控制。

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