Synthetic biology has enabled the creation of biological reconfigurable circuits, which perform multiple functions monopolizing a single biological machine; Such a system can switch between different behaviours in response to environmental cues. Previous work has demonstrated switchable dynamical behaviour employing reconfigurable logic gate genetic networks. Here we describe a computational framework for reconfigurable circuits in E.coli using combinations of logic gates, and also propose the biological implementation. The proposed system is an oscillator that can exhibit tunability of frequency and amplitude of oscillations. Further, the frequency of operation can be changed optogenetically. Insilico analysis revealed that two-component l...
Synthetically engineered genetic circuits can perform a wide variety of tasks but are generally less...
Networks of interacting biomolecules carry out many essential functions in living cells, but the ‘de...
We present the design and analysis of a synthetic gene network that performs frequency multiplicatio...
The use of in silico simulations as a basis for designing artificial biological systems (and experim...
Synthetic biology seeks to understand and engineer biological networks that perform a quantitative d...
Gene circuits are dynamical systems that regulate cellular behaviors, often using protein signals as...
The engineering of genetic circuits with predictive functionality in living cells represents a defin...
AbstractCells transmit and receive information via signalling pathways. A number of studies have rev...
Cells transmit and receive information via signalling pathways. A number of studies have revealed th...
While there has been significant progress in the development of engineering principles for synthetic...
Abstract—Biological clock, a self sustaining oscillation widely discov-ered in many species, is impo...
Synthetic biology integrates engineering and biology strategies to create artificial pathways, devic...
Genetic oscillators that arrive from the dynamic interaction of molecular components have been shown...
To program cells in a dynamic manner, synthetic biologists require precise control over the threshol...
Synthetic biology utilizes computer science, physics and molecular biology to create novel gene circ...
Synthetically engineered genetic circuits can perform a wide variety of tasks but are generally less...
Networks of interacting biomolecules carry out many essential functions in living cells, but the ‘de...
We present the design and analysis of a synthetic gene network that performs frequency multiplicatio...
The use of in silico simulations as a basis for designing artificial biological systems (and experim...
Synthetic biology seeks to understand and engineer biological networks that perform a quantitative d...
Gene circuits are dynamical systems that regulate cellular behaviors, often using protein signals as...
The engineering of genetic circuits with predictive functionality in living cells represents a defin...
AbstractCells transmit and receive information via signalling pathways. A number of studies have rev...
Cells transmit and receive information via signalling pathways. A number of studies have revealed th...
While there has been significant progress in the development of engineering principles for synthetic...
Abstract—Biological clock, a self sustaining oscillation widely discov-ered in many species, is impo...
Synthetic biology integrates engineering and biology strategies to create artificial pathways, devic...
Genetic oscillators that arrive from the dynamic interaction of molecular components have been shown...
To program cells in a dynamic manner, synthetic biologists require precise control over the threshol...
Synthetic biology utilizes computer science, physics and molecular biology to create novel gene circ...
Synthetically engineered genetic circuits can perform a wide variety of tasks but are generally less...
Networks of interacting biomolecules carry out many essential functions in living cells, but the ‘de...
We present the design and analysis of a synthetic gene network that performs frequency multiplicatio...