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Use of Amino Acids as Inducers for High-Level Protein Expression in the Single-Protein Production System

机译:在单蛋白生产系统中使用氨基酸作为高水平蛋白表达的诱导剂

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摘要

By taking advantage of MazF, an ACA codon-specific mRNA interferase, Escherichia coli cells can be converted into a bioreactor producing only a single protein of interest by using an ACA-less mRNA for the protein. In this single-protein production (SPP) system, we engineered MazF by replacing two tryptophan residues in positions 14 and 83 with Phe (W14F) and Leu (W83L), respectively. Upon the addition of an inducer (IPTG [isopropyl-β-d-thiogalactopyranoside]), the mutated MazF [MazF(ΔW)] can still be produced even in the absence of tryptophan in the medium by using a Trp auxotroph, while a target protein having Trp residues cannot be produced. However, at 3 h after the addition of IPTG, the addition of tryptophan to the medium exclusively induces production of the target protein at a high level. A similar SPP system was also constructed with the use of a His-less protein [MazF(ΔH)] and a His auxotroph. Using these dual-induction systems, isotopic enrichments of 13C, 15N, and 2H were highly improved by almost complete suppression of the production of the unlabeled target protein. In both systems, isotopic incorporation reached more than 98% labeling efficiency, significantly reducing the background attributable to the unlabeled target protein.
机译:通过利用ACA密码子特异性mRNA干扰酶MazF的优势,可通过使用无ACA的mRNA将大肠杆菌细胞转化为仅产生目标蛋白的生物反应器。在此单蛋白生产(SPP)系统中,我们通过分别用Phe(W14F)和Leu(W83L)取代14和83位的两个色氨酸残基来设计MazF。加入诱导剂(IPTG [异丙基-β-d-硫代半乳糖吡喃糖苷])后,即使在培养基中不存在色氨酸的情况下,使用Trp营养缺陷型,仍然可以产生突变的MazF [MazF(ΔW)],而目标是无法产生具有Trp残基的蛋白质。但是,在添加IPTG之后的3小时内,向培养基中添加色氨酸会专门诱导高水平生成目标蛋白。还使用无组氨酸的蛋白质[MazF(ΔH)]和组氨酸营养缺陷型构建了类似的SPP系统。使用这些双诱导系统,几乎完全抑制了生产,大大提高了 13 C, 15 N和 2 H的同位素富集未标记的靶蛋白。在这两个系统中,同位素掺入均达到了98%以上的标记效率,从而大大降低了可归因于未标记靶蛋白的背景。

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