Landrain Thomas E, Carrera Javier, Kirov Boris, Rodrigo Guillermo, Jaramillo Alfonso
Synth-Bio group. Epigenomics Project, Université d'Evry Val d'Essonne-Genopole-CNRS UPS3201, 91034 Evry, France.
Curr Opin Biotechnol. 2009 Jun;20(3):272-9. doi: 10.1016/j.copbio.2009.06.003. Epub 2009 Jun 24.
We review the current status of expression of heterologous systems for bioenergy and bioproduction in bacteria using a model-based approach. As an aim for synthetic biology, it requires mathematical models of genetic modules that could be characterized independently of their context. This fastens the design of metabolic circuits using a combinatorial design approach, where given pathways could be optimized for maximal bioproduction, while being nontoxic for the chassis. We show how recent characterization of genetic parts, such as promoters, RBS or sRNAs could be used to fine-tune the expression of individual genes to achieve that goal. We also present lists of enzymes that are used for bioproduction, enlarging such set of biological parts.
我们采用基于模型的方法,综述了细菌中用于生物能源和生物生产的异源系统的表达现状。作为合成生物学的一个目标,它需要能够独立于其背景进行表征的遗传模块数学模型。这加快了使用组合设计方法设计代谢回路的速度,在这种方法中,给定的途径可以针对最大生物生产进行优化,同时对底盘无毒。我们展示了最近对遗传元件(如启动子、核糖体结合位点或小RNA)的表征如何用于微调单个基因的表达以实现该目标。我们还列出了用于生物生产的酶,扩充了这类生物元件的集合。