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Using the Cre–lox System to Randomize Target Gene Expression States and Generate Diverse Phenotypes

机译:使用Cre-lox系统随机化靶基因表达状态并生成不同的表型

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摘要

Modifying the expression of multiple genes enables both deeper understanding of their function and the engineering of complex multigenic cellular phenotypes. However, deletion or overexpression of multiple genes is typically laborious and involves multiple sequential genetic modifications. Here we describe a strategy to randomize the expression state of multiple genes in Saccharomyces cerevisiae using Cre–loxP recombination. By inserting promoters flanked by inverted loxP sites in front of a gene of interest we can randomly alter its expression by turning it OFF or ON, or between four distinct expression states.We show at least 6 genes can be randomized independently and argue that using orthogonal loxP sites should increase this number to at least 15. Finally, we show how combining this strategy with mating allows easy introduction of native regulation as an additional expression state and use this to probe the role of four different enzymes involved in base excision repair in tolerance to methyl methane sulfonate (MMS), a genotoxic DNA alkylating agent. The set of vectors developed here can be used to randomize the expression of both heterologous genes and endogenous genes, and could immediately prove useful for metabolic engineering in yeast. Because Cre–loxP recombination works in many organisms, this strategy should be readily extendable. Biotechnol. Bioeng. 2013;110: 2677–2685.
机译:修饰多个基因的表达既可以更深入地了解其功能,又可以构建复杂的多基因细胞表型。然而,多个基因的缺失或过表达通常是费力的,并且涉及多个顺序的遗传修饰。在这里,我们描述了一种使用Cre–loxP重组技术来随机化酿酒酵母中多个基因表达状态的策略。通过在感兴趣的基因前面插入侧翼为反向loxP位点的启动子,我们可以通过将其关闭或打开或在四个不同的表达状态之间随机改变其表达,我们证明至少有6个基因可以独立随机化,并证明使用正交loxP位点应至少使该数目增加到15。最后,我们展示如何将此策略与交配相结合如何轻松引入天然调控作为附加表达状态,并以此来探究参与碱基切除修复的四种不同酶在耐受性中的作用会产生遗传毒性的DNA烷基化剂甲烷磺酸甲酯(MMS)。此处开发的一组载体可用于随机化异源基因和内源基因的表达,并可立即证明可用于酵母的代谢工程。由于Cre–loxP重组可在许多生物中起作用,因此该策略应易于扩展。生物技术。生恩2013; 110:2677-2685。

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