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LuxS Coexpression Enhances Yields of Recombinant Proteins in Escherichia coli in Part through Posttranscriptional Control of GroEL▿ †

机译:LuxS共表达部分通过转录后控制GroEL▿提高大肠杆菌中重组蛋白的产量†

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摘要

Cell-to-cell communication, or quorum sensing (QS), enables cell density-dependent regulation of bacterial gene expression which can be exploited for the autonomous-signal-guided expression of recombinant proteins (C. Y. Tsao, S. Hooshangi, H. C. Wu, J. J. Valdes, and W. E. Bentley, Metab. Eng. 12:291-297, 2010). Earlier observations that the metabolic potential of Escherichia coli is conveyed via the QS signaling molecule autoinducer-2 (AI-2) suggested that the capacity for protein synthesis could also be affected by AI-2 signaling (M. P. DeLisa, J. J. Valdes, and W. E. Bentley, J. Bacteriol. 183:2918-2928, 2001). In this work, we found that simply adding conditioned medium containing high levels of AI-2 at the same time as inducing the synthesis of recombinant proteins doubled the yield of active product. We have hypothesized that AI-2 signaling “conditions” cells as a natural consequence of cell-to-cell communication and that this could tweak the signal transduction cascade to alter the protein synthesis landscape. We inserted luxS (AI-2 synthase) into vectors which cosynthesized proteins of interest (organophosphorus hydrolase [OPH], chloramphenicol acetyltransferase [CAT], or UV-variant green fluorescent protein [GFPuv]) and evaluated the protein expression in luxS-deficient hosts. In this way, we altered the level of luxS in the cells in order to “tune” the synthesis of AI-2. We found conditions in which the protein yield was dramatically increased. Further studies demonstrated coincident upregulation of the chaperone GroEL, which may have facilitated higher yields and is shown for the first time to be positively regulated at the posttranscriptional level by AI-2. This report is the first to demonstrate that the protein synthesis capacity of E. coli can be altered by rewiring quorum sensing circuitry.
机译:细胞间通讯或群体感应(QS)可实现细菌基因表达的细胞密度依赖性调节,可用于重组蛋白的自主信号指导表达(CY Tsao,S。Hooshangi,HC Wu, JJ Valdes和WE Bentley,Metab。Eng。12:291-297,2010)。早期的观察表明,大肠杆菌的代谢潜力是通过QS信号分子autoinducer-2(AI-2)传递的,这表明蛋白合成的能力也可能受到AI-2信号的影响(MP DeLisa,JJ Valdes和WE Bentley (J.Bacteriol.183:2918-2928,2001)。在这项工作中,我们发现,在诱导重组蛋白合成的同时,简单地添加含有高水平AI-2的条件培养基可使活性产物的产量增加一倍。我们假设AI-2信号“调节”细胞是细胞间通信的自然结果,并且这可能会调整信号转导级联以改变蛋白质合成格局。我们将luxS(AI-2合酶)插入到载体中,该载体可共同合成目标蛋白(有机磷水解酶[OPH],氯霉素乙酰转移酶[CAT]或紫外线变体绿色荧光蛋白[GFPuv]),并评估在luxS缺陷宿主中的蛋白表达。通过这种方式,我们改变了细胞中luxS的水平,以“调节” AI-2的合成。我们发现蛋白质产量急剧增加的条件。进一步的研究表明,分子伴侣GroEL的同时上调,这可能有助于提高产量,并首次显示AI-2在转录后水平上受到正调控。该报告是第一个证明可以通过重新连接群体感应电路来改变大肠杆菌的蛋白质合成能力的报告。

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