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Synthetic N-terminal coding sequences for fine-tuning gene expression and metabolic engineering in Bacillus subtilis

机译:枯草芽孢杆菌的微调基因表达和代谢工程的合成N-末端编码序列

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N-terminal coding sequences (NCSs) of genes significantly influence gene expression at the translation level and are important for fine-tuning gene expression in bacteria, however, engineering NCSs to fine-tune metabolic pathways is challenging. Here, we developed a statistics-guided native and synthetic NCSs engineering approach to fine-tune gene expression in the industrially important microorganism Bacillus subtilis. This method is based on experimentally characterizing and statistically analyzing 96 rationally selected NCSs from B. subtilis endogenous genes. These NCSs exhibited a magnitude difference of greater than 4 orders in their ability to drive gene expression in 4 different dynamic patterns, including growth-coupled, growth-delayed, consistent expression, and inhibitory patterns. Synthetic and native NCSs were used to fine-tune expression of key enzymes, identified via pathway analysis and kinetic modeling, in the biosynthetic pathway of the useful nutraceutical N-acetylneuraminic acid (NeuAc). We observed a 3.21-fold improvement in NeuAc biosynthesis, indicating that NCSs can provide a synthetic biology toolbox to fine-tune gene expression for metabolic engineering.
机译:基因的N-末端编码序列(NCS)显着影响转化水平的基因表达,对于细菌的微调基因表达是重要的,然而,工程NCS对微调代谢途径具有挑战性。在这里,我们开发了统计指导的本机和合成NCSS工程方法,以在工业上重要的微生物芽孢杆菌的微调基因表达。该方法基于实验表征和统计分析来自B.枯草芽孢杆菌内源基因的合理选择的NCSS。这些NCSS在它们在4种不同动态模式中驱动基因表达的能力,包括生长偶联,生长延迟,一致表达和抑制模式的能力大于4个命令的大小差异。合成和天然NCS用于微调关键酶的表达,通过途径分析和动力学建模鉴定在有用的营养保健N-乙酰氨基丙氨酸(NeuAc)的生物合成途径中。我们观察到NeuAc生物合成的3.21倍改善,表明NCSS可以为代谢工程的微调基因表达提供合成生物学工具箱。

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