Alper Hal, Fischer Curt, Nevoigt Elke, Stephanopoulos Gregory
Department of Chemical Engineering, Massachusetts Institute of Technology, Room 56-469, Cambridge, MA 02139, USA.
Proc Natl Acad Sci U S A. 2005 Sep 6;102(36):12678-83. doi: 10.1073/pnas.0504604102. Epub 2005 Aug 25.
Gene function is typically evaluated by sampling the continuum of gene expression at only a few discrete points corresponding to gene knockout or overexpression. We argue that this characterization is incomplete and present a library of engineered promoters of varying strengths obtained through mutagenesis of a constitutive promoter. A multifaceted characterization of the library, especially at the single-cell level to ensure homogeneity, permitted quantitative assessment correlating the effect of gene expression levels to improved growth and product formation phenotypes in Escherichia coli. Integration of these promoters into the chromosome can allow for a quantitative accurate assessment of genetic control. To this end, we used the characterized library of promoters to assess the impact of phosphoenolpyruvate carboxylase levels on growth yield and deoxy-xylulose-P synthase levels on lycopene production. The multifaceted characterization of promoter strength enabled identification of optimal expression levels for ppc and dxs, which maximized the desired phenotype. Additionally, in a strain preengineered to produce lycopene, the response to deoxy-xylulose-P synthase levels was linear at all levels tested, indicative of a rate-limiting step, unlike the parental strain, which exhibited an optimum expression level, illustrating that optimal gene expression levels are variable and dependent on the genetic background of the strain. This promoter library concept is illustrated as being generalizable to eukaryotic organisms (Saccharomyces cerevisiae) and thus constitutes an integral platform for functional genomics, synthetic biology, and metabolic engineering endeavors.
基因功能通常通过在仅几个对应于基因敲除或过表达的离散点上对基因表达的连续体进行采样来评估。我们认为这种表征是不完整的,并展示了一个通过对组成型启动子进行诱变获得的不同强度的工程化启动子文库。对该文库进行多方面的表征,尤其是在单细胞水平以确保同质性,从而能够进行定量评估,将基因表达水平的影响与大肠杆菌中改善的生长和产物形成表型相关联。将这些启动子整合到染色体中可以实现对遗传控制的定量准确评估。为此,我们使用已表征的启动子文库来评估磷酸烯醇丙酮酸羧化酶水平对生长产量的影响以及脱氧木酮糖 - P 合酶水平对番茄红素产量的影响。启动子强度的多方面表征使得能够确定ppc和dxs的最佳表达水平,从而使所需表型最大化。此外,在预先设计用于生产番茄红素的菌株中,在所有测试水平下对脱氧木酮糖 - P 合酶水平的反应都是线性的,这表明存在限速步骤,这与亲本菌株不同,亲本菌株表现出最佳表达水平,说明最佳基因表达水平是可变的,并且取决于菌株的遗传背景。这种启动子文库概念被证明可推广到真核生物(酿酒酵母),因此构成了功能基因组学、合成生物学和代谢工程研究不可或缺的平台。