Institute of Systems and Synthetic Biology (ISSB), Genopole - Université d'Évry Val d'Essonne - CNRS UPS3201, 91030 Évry Cedex, France.
Nucleic Acids Res. 2011 Nov 1;39(20):e138. doi: 10.1093/nar/gkr616. Epub 2011 Aug 24.
The engineering of synthetic gene networks has mostly relied on the assembly of few characterized regulatory elements using rational design principles. It is of outmost importance to analyze the scalability and limits of such a design workflow. To analyze the design capabilities of libraries of regulatory elements, we have developed the first automated design approach that combines such elements to search the genotype space associated to a given phenotypic behavior. Herein, we calculated the designability of dynamical functions obtained from circuits assembled with a given genetic library. By designing circuits working as amplitude filters, pulse counters and oscillators, we could infer new mechanisms for such behaviors. We also highlighted the hierarchical design and the optimization of the interface between devices. We dissected the functional diversity of a constrained library and we found that even such libraries can provide a rich variety of behaviors. We also found that intrinsic noise slightly reduces the designability of digital circuits, but it increases the designability of oscillators. Finally, we analyzed the robust design as a strategy to counteract the evolvability and noise in gene expression of the engineered circuits within a cellular background, obtaining mechanisms for robustness through non-linear negative feedback loops.
合成基因网络的工程设计主要依赖于使用理性设计原则来组装少数几个经过表征的调控元件。分析这种设计工作流程的可扩展性和局限性至关重要。为了分析调控元件库的设计能力,我们开发了第一个自动化设计方法,该方法结合了这些元件来搜索与给定表型行为相关的基因型空间。在这里,我们计算了由给定遗传文库组装的电路获得的动态功能的设计能力。通过设计作为幅度滤波器、脉冲计数器和振荡器的电路,我们可以推断出这些行为的新机制。我们还强调了设备之间界面的分层设计和优化。我们剖析了约束库的功能多样性,发现即使是这样的库也可以提供丰富多样的行为。我们还发现,固有噪声会略微降低数字电路的设计能力,但会增加振荡器的设计能力。最后,我们分析了稳健设计作为一种策略,以应对工程化电路在细胞背景下的基因表达的可进化性和噪声,通过非线性负反馈回路获得稳健性机制。