Learning the underlying details of a gene network is a major challenge in cellular and synthetic biology. We address this challenge by building a chemical kinetic model that utilizes information encoded in the stochastic protein expression trajectories typically measured in experiments. The applicability of the proposed method is demonstrated in an auto-activating genetic circuit, a common motif in natural and synthetic gene networks. Our approach is based on the principle of maximum caliber (MaxCal)—a dynamical analog of the principle of maximum entropy—and builds a minimal model using only three constraints: 1) protein synthesis, 2) protein degradation, and 3) positive feedback. The MaxCal-generated model (described with four parameters) ...
Synthetic biology, by co-opting molecular machinery from existing organisms, can be used as a tool f...
We quantify the influence of the topology of a transcriptional regulatory network on its ability to ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Gene networks with feedback often involve interactions between multiple species of biomolecules, muc...
Single-cell protein expression time trajectories provide rich temporal data quantifying cellular var...
Single-cell protein expression time trajectories provide rich temporal data quantifying cellular var...
The analysis of natural genetic networks and the construction of new synthetic analogues is compli-c...
The advancement of synthetic biology lies heavily on key enabling technologies, one of which is the ...
We investigate the role of relative tRNA availabilities in limiting the rate of amino acid incorpora...
Because the components of genetic networks are present in small quantities, the detailed behavior of...
Abstract Background Gene circuits are important in many aspects of biology, and perform a wide varie...
AbstractThe current rapid expansion of biological knowledge offers a great opportunity to rationally...
© 2020 IEEE. Personal use of this material is permitted. Permissíon from IEEE must be obtained for a...
RNA genetic circuitry is emerging as a powerful tool to control gene expression. However, little wor...
This dissertation is concerned with inference methods for synthetic gene regulatory networks. In Cha...
Synthetic biology, by co-opting molecular machinery from existing organisms, can be used as a tool f...
We quantify the influence of the topology of a transcriptional regulatory network on its ability to ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Gene networks with feedback often involve interactions between multiple species of biomolecules, muc...
Single-cell protein expression time trajectories provide rich temporal data quantifying cellular var...
Single-cell protein expression time trajectories provide rich temporal data quantifying cellular var...
The analysis of natural genetic networks and the construction of new synthetic analogues is compli-c...
The advancement of synthetic biology lies heavily on key enabling technologies, one of which is the ...
We investigate the role of relative tRNA availabilities in limiting the rate of amino acid incorpora...
Because the components of genetic networks are present in small quantities, the detailed behavior of...
Abstract Background Gene circuits are important in many aspects of biology, and perform a wide varie...
AbstractThe current rapid expansion of biological knowledge offers a great opportunity to rationally...
© 2020 IEEE. Personal use of this material is permitted. Permissíon from IEEE must be obtained for a...
RNA genetic circuitry is emerging as a powerful tool to control gene expression. However, little wor...
This dissertation is concerned with inference methods for synthetic gene regulatory networks. In Cha...
Synthetic biology, by co-opting molecular machinery from existing organisms, can be used as a tool f...
We quantify the influence of the topology of a transcriptional regulatory network on its ability to ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...