Accurate control of a biological process is essential for many critical functions in biology, from the cell cycle to proteome regulation. To achieve this, negative feedback is frequently employed to provide a highly robust and reliable output. Feedback is found throughout biology and technology, but due to challenges posed by its implementation, it is yet to be widely adopted in synthetic biology. In this paper we design a synthetic feedback network using a class of recombinase proteins called integrases, which can be re-engineered to flip the orientation of DNA segments in a digital manner. This system is highly orthogonal, and demonstrates a strong capability for regulating and reducing the expression variability of genes being transcribe...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...
A device that counts and records the number of events experienced by an individual cell could have m...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...
Accurate control of a biological process is essential for many critical functions in biology, from t...
Feedback plays a key role in nearly all biological processes, from the cell cycle to chemotaxis. Des...
The processes that keep a cell alive are constantly challenged by unpredictable changes in its envir...
The robustness and reliability of synthetic biological systems can be substantially improved by the ...
The ability of biological components to function reliably in different genetic contexts is one of th...
The ability of biological components to function reliably in different genetic contexts is one of th...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Chemical reaction networks can be utilised as basic components for nucleic acid feedback control sys...
Chemical reaction networks can be utilised as basic components for nucleic acid feedback control sys...
The concept of reengineering and rewiring of pathways and gene regulatory networks for novel uses, a...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...
A device that counts and records the number of events experienced by an individual cell could have m...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...
Accurate control of a biological process is essential for many critical functions in biology, from t...
Feedback plays a key role in nearly all biological processes, from the cell cycle to chemotaxis. Des...
The processes that keep a cell alive are constantly challenged by unpredictable changes in its envir...
The robustness and reliability of synthetic biological systems can be substantially improved by the ...
The ability of biological components to function reliably in different genetic contexts is one of th...
The ability of biological components to function reliably in different genetic contexts is one of th...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Chemical reaction networks can be utilised as basic components for nucleic acid feedback control sys...
Chemical reaction networks can be utilised as basic components for nucleic acid feedback control sys...
The concept of reengineering and rewiring of pathways and gene regulatory networks for novel uses, a...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...
A device that counts and records the number of events experienced by an individual cell could have m...
Synthetic biology aims to the rational design of gene circuits with predictable behaviours. Great ef...