Abstract Background Gene circuits are important in many aspects of biology, and perform a wide variety of different functions. For example, some circuits oscillate (e.g. the cell cycle), some are bistable (e.g. as cells differentiate), some respond sharply to environmental signals (e.g. ultrasensitivity), and some pattern multicellular tissues (e.g. Turing’s model). Often, one starts from a given circuit, and using simulations, asks what functions it can perform. Here we want to do the opposite: starting from a prescribed function, can we find a circuit that executes this function? Whilst simple in principle, this task is challenging from a computational perspective, since gene circuit models are complex systems with many parameters. In thi...
Gene regulatory networks lay at the foundation of biological function and are responsible for drivin...
International audienceMOTIVATION: The rational design of biological networks with prescribed functio...
International audienceMOTIVATION: The rational design of biological networks with prescribed functio...
This work was supported by an EMBO Long-term fellowship, ALTF 606–2018. This funding source did not ...
Computational circuit design with desired functions in a living cell is a challenging task in synthe...
Computational circuit design with desired functions in a living cell is a challenging task in synthe...
<div><p>Computational circuit design with desired functions in a living cell is a challenging task i...
Biological computation is a major area of focus in synthetic biology because it has the potential to...
Biological computation is a major area of focus in synthetic biology because it has the potential to...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Pa...
AbstractSynthetic biologists aim to construct novel genetic circuits with useful applications throug...
Motivation: In principle, novel genetic circuits can be engineered using standard parts with well-un...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2016.This electronic v...
RNAi system allows us to see the phenotypes when some genes are removed from living cells. By observ...
Biological computation is a major area of focus in synthetic biology because it has the potential to...
Gene regulatory networks lay at the foundation of biological function and are responsible for drivin...
International audienceMOTIVATION: The rational design of biological networks with prescribed functio...
International audienceMOTIVATION: The rational design of biological networks with prescribed functio...
This work was supported by an EMBO Long-term fellowship, ALTF 606–2018. This funding source did not ...
Computational circuit design with desired functions in a living cell is a challenging task in synthe...
Computational circuit design with desired functions in a living cell is a challenging task in synthe...
<div><p>Computational circuit design with desired functions in a living cell is a challenging task i...
Biological computation is a major area of focus in synthetic biology because it has the potential to...
Biological computation is a major area of focus in synthetic biology because it has the potential to...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Pa...
AbstractSynthetic biologists aim to construct novel genetic circuits with useful applications throug...
Motivation: In principle, novel genetic circuits can be engineered using standard parts with well-un...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2016.This electronic v...
RNAi system allows us to see the phenotypes when some genes are removed from living cells. By observ...
Biological computation is a major area of focus in synthetic biology because it has the potential to...
Gene regulatory networks lay at the foundation of biological function and are responsible for drivin...
International audienceMOTIVATION: The rational design of biological networks with prescribed functio...
International audienceMOTIVATION: The rational design of biological networks with prescribed functio...