A critical feature of all cellular processes is the ability to control the rate of gene or protein expression and metabolic flux in changing environments through regulatory feedback. We review the many ways that regulation is represented through causal, logical, and dynamical components. Formalizing the nature of these components promotes effective comparison among distinct regulatory networks and provides a common framework for the potential design and control of regulatory systems in synthetic biology
AbstractThe dynamic process of cell fate specification is regulated by networks of regulatory genes....
Global regulators are critical controllers of cellular function. They possess the ability to coordin...
BACKGROUND: Metabolic control analysis (MCA) and supply-demand theory have led to appreciable unders...
AbstractRevealing the control mechanisms responsible for the cell’s surprisingly well-organized func...
Biological cells use very effcient and hierarchically structured regulations to control their metabo...
Metabolic pathways can be engineered to maximize the synthesis of various products of interest. With...
Regulatory circuits are found at the basis of all non-trivial dynamical properties of biological net...
Living cells are exquisite systems. They are strongly regulated to perform in highly specific ways, ...
The signal-response characteristics of a living cell are determined by complex networks of interacti...
Engineering synthetic gene regulatory circuits proceeds through iterative cycles of design, building...
Cellular regulation comprises overwhelmingly complex interactions between genes and proteins that ul...
Cells need to respond to a vast range of different disturbances and changes over small and large tim...
International audienceBiological regulation is what allows an organism to handle the effects of a pe...
Life as we know it is based on cells that use proteins and RNA to carry out metabolism, self-replica...
Understanding organisms from a systems perspective is essential for predicting cellular behaviour as...
AbstractThe dynamic process of cell fate specification is regulated by networks of regulatory genes....
Global regulators are critical controllers of cellular function. They possess the ability to coordin...
BACKGROUND: Metabolic control analysis (MCA) and supply-demand theory have led to appreciable unders...
AbstractRevealing the control mechanisms responsible for the cell’s surprisingly well-organized func...
Biological cells use very effcient and hierarchically structured regulations to control their metabo...
Metabolic pathways can be engineered to maximize the synthesis of various products of interest. With...
Regulatory circuits are found at the basis of all non-trivial dynamical properties of biological net...
Living cells are exquisite systems. They are strongly regulated to perform in highly specific ways, ...
The signal-response characteristics of a living cell are determined by complex networks of interacti...
Engineering synthetic gene regulatory circuits proceeds through iterative cycles of design, building...
Cellular regulation comprises overwhelmingly complex interactions between genes and proteins that ul...
Cells need to respond to a vast range of different disturbances and changes over small and large tim...
International audienceBiological regulation is what allows an organism to handle the effects of a pe...
Life as we know it is based on cells that use proteins and RNA to carry out metabolism, self-replica...
Understanding organisms from a systems perspective is essential for predicting cellular behaviour as...
AbstractThe dynamic process of cell fate specification is regulated by networks of regulatory genes....
Global regulators are critical controllers of cellular function. They possess the ability to coordin...
BACKGROUND: Metabolic control analysis (MCA) and supply-demand theory have led to appreciable unders...