SummarySystems biology approaches are extensively used to model and reverse engineer gene regulatory networks from experimental data. Conversely, synthetic biology allows “de novo” construction of a regulatory network to seed new functions in the cell. At present, the usefulness and predictive ability of modeling and reverse engineering cannot be assessed and compared rigorously. We built in the yeast Saccharomyces cerevisiae a synthetic network, IRMA, for in vivo “benchmarking” of reverse-engineering and modeling approaches. The network is composed of five genes regulating each other through a variety of regulatory interactions; it is negligibly affected by endogenous genes, and it is responsive to small molecules. We measured time series ...
[[abstract]]In this paper, we propose a reverse-engineering strategy to predict the interactions bet...
In their new Cell paper, Cantone et al. (2009) present exciting results on constructing and utilizin...
Systems and Synthetic Biology use computational models of biological pathways in order to study in s...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology aims at building computational models of biological pathways in order to study in si...
Systems biology aims at building computational models of biological pathways in order to study in si...
Systems biology aims at building computational models of biological pathways in order to study in si...
Cellular complexity stems from the interactions among thousands of different molecular species. Than...
De-novo reverse-engineering of genome-scale regulatory networks is a fundamental problem of biologic...
Background: Genome-scale metabolic models provide an opportunity for rational approaches to studies ...
PMID: 29322933International audienceBackground: Genome-scale metabolic models provide an opportunity...
[[abstract]]In this paper, we propose a reverse-engineering strategy to predict the interactions bet...
In their new Cell paper, Cantone et al. (2009) present exciting results on constructing and utilizin...
Systems and Synthetic Biology use computational models of biological pathways in order to study in s...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology approaches are extensively used to model and reverse engineer gene regulatory networ...
Systems biology aims at building computational models of biological pathways in order to study in si...
Systems biology aims at building computational models of biological pathways in order to study in si...
Systems biology aims at building computational models of biological pathways in order to study in si...
Cellular complexity stems from the interactions among thousands of different molecular species. Than...
De-novo reverse-engineering of genome-scale regulatory networks is a fundamental problem of biologic...
Background: Genome-scale metabolic models provide an opportunity for rational approaches to studies ...
PMID: 29322933International audienceBackground: Genome-scale metabolic models provide an opportunity...
[[abstract]]In this paper, we propose a reverse-engineering strategy to predict the interactions bet...
In their new Cell paper, Cantone et al. (2009) present exciting results on constructing and utilizin...
Systems and Synthetic Biology use computational models of biological pathways in order to study in s...