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Single protein production in living cells facilitated by an mRNA interferase

机译:mRNA干扰酶促进活细胞中单一蛋白质的产生

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摘要

We designed a single-protein production (SPP) system in living E. coli cells that exploits the unique properties of MazF, a bacterial toxin that is an ssRNA- and ACA-specific endoribonuclease. In effect, MazF functions as an "mRNA interferase," because it efficiently and selectively degrades all cellular mRNAs in vivo, resulting in a precipitous drop in total protein synthesis. Concomitant expression of MazF and a target gene engineered to encode an ACA-less mRNA results in sustained and high-level (up to 90%) target expression in the virtual absence of background cellular protein synthesis. Remarkably, target synthesis continues for at least 4 days, indicating that cells retain transcriptional and translational competence despite their growth arrest. SPP technology works well for E. coli (soluble and membrane), yeast, and human proteins. This expression system enables unparalleled signal to noise ratios that should dramatically simplify structural and functional studies of previously intractable but biologically important proteins.
机译:我们在活的大肠杆菌细胞中设计了一种单蛋白生产(SPP)系统,该系统利用了MazF的独特特性,MazF是一种细菌毒素,是一种ssRNA和ACA特异性内切核糖核酸酶。实际上,MazF起到“ mRNA干扰酶”的作用,因为它在体内有效和选择性地降解了所有细胞mRNA,导致总蛋白质合成急剧下降。在几乎没有背景细胞蛋白合成的情况下,MazF和经过工程改造以编码无ACA的mRNA的靶基因的伴随表达导致持续且高水平(高达90%)的靶表达。值得注意的是,靶标合成持续至少4天,这表明尽管细胞生长停滞,但它们仍保留转录和翻译能力。 SPP技术适用于大肠杆菌(可溶性和膜性),酵母和人类蛋白质。该表达系统可实现无与伦比的信噪比,从而可以显着简化先前难以治疗但具有生物学意义的蛋白质的结构和功能研究。

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