Synthetic Biology and Biosystems Control Lab, I.U. de Automática e Informática Industrial (ai2), Universitat Politècnica de Valencia, Camino de Vera S/N, 46022, Valencia, Spain.
Centro Universitario EDEM, Escuela de Empresarios, La Marina de València, Muelle de la Aduana S/N, 46024, Valencia, Spain.
Chembiochem. 2019 Oct 15;20(20):2653-2665. doi: 10.1002/cbic.201900272. Epub 2019 Aug 22.
Standardization and characterization of biological parts is necessary for the further development of bottom-up synthetic biology. Herein, an easy-to-use methodology that embodies both a calibration procedure and a multiobjective optimization approach is proposed to characterize biological parts. The calibration procedure generates values for specific fluorescence per cell expressed as standard units of molecules of equivalent fluorescein per particle. The use of absolute standard units enhances the characterization of model parameters for biological parts by bringing measurements and estimations results from different sources into a common domain, so they can be integrated and compared faithfully. The multiobjective optimization procedure exploits these concepts by estimating the values of the model parameters, which represent biological parts of interest, while considering a varied range of experimental and circuit contexts. Thus, multiobjective optimization provides a robust characterization of them. The proposed calibration and characterization methodology can be used as a guide for good practices in dry and wet laboratories; thus allowing not only portability between models, but is also useful for generating libraries of tested and well-characterized biological parts.
生物部件的标准化和特征描述是自下而上合成生物学进一步发展的必要条件。在此,提出了一种易于使用的方法,该方法既包含校准程序,又包含多目标优化方法,用于对生物部件进行特征描述。校准程序生成每个细胞的特定荧光的数值,以等效荧光素分子/颗粒的标准单位表示。使用绝对标准单位通过将来自不同来源的测量值和估计值结果带入共同的领域,从而增强了对生物部件模型参数的特征描述,以便可以忠实集成和比较。多目标优化过程通过在考虑各种实验和电路环境的情况下估计感兴趣的生物部件的模型参数值来利用这些概念。因此,多目标优化为它们提供了稳健的特征描述。所提出的校准和特征描述方法可作为在干燥和潮湿实验室中进行良好实践的指南;因此,不仅允许模型之间的可移植性,而且对于生成经过测试和良好特征描述的生物部件库也很有用。