Much work has been done on the study of the biochemical mechanisms that result in ultrasensitive behavior of simple biochemical modules. However, in a living cell, such modules are embedded in a bigger network that constrains the range of inputs that the module will receive as well as the range of the module’s outputs that network will be able to detect. Here, we studied how the effective ultrasensitivity of a modular system is affected by these restrictions. We use a simple setup to explore to what extent the dynamic range spanned by upstream and downstream components of an ultrasensitive module impact on the effective sensitivity of the system. Interestingly, we found for some ultrasensitive motifs that dynamic range limitations imposed b...
Signaling networks that convert graded stimuli into binary, all-or-none cellular responses are criti...
The mitogen activated protein kinase (MAPK) cascade is one of the most prominent and well-studied si...
All living things have evolved to sense changes in their environment in order to respond in adaptive...
Ultrasensitive response motifs, capable of converting graded stimuli into binary responses, are well...
The ultrasensitive response of biological systems is a more sensitive one than that expected from th...
Many biological processes are regulated by molecular devices that respond in an ultrasensitive fashi...
Ultrasensitive response motifs, capable of converting graded stimuli into binary responses, are well...
The application of engineering principles to understand and design biological systems is a powerful ...
Synthetic biology promise to provide solutions to many challenges in energy, agriculture, and health...
Background: Interconnected cell signaling pathways are able to efficiently and accurately transmit a...
Abstract — One of the most important design parameters in synthetic biological circuits is the gain ...
Abstract Background Interconnected cell signaling pathways are able to efficiently and accurately tr...
The Escherichia coli chemotaxis-signaling pathway computes time derivatives of chemoeffector concent...
<div><p>Cellular signaling networks are subject to transcriptional and proteolytic regulation under ...
Cellular signaling networks are subject to transcriptional and proteolytic regulation under both phy...
Signaling networks that convert graded stimuli into binary, all-or-none cellular responses are criti...
The mitogen activated protein kinase (MAPK) cascade is one of the most prominent and well-studied si...
All living things have evolved to sense changes in their environment in order to respond in adaptive...
Ultrasensitive response motifs, capable of converting graded stimuli into binary responses, are well...
The ultrasensitive response of biological systems is a more sensitive one than that expected from th...
Many biological processes are regulated by molecular devices that respond in an ultrasensitive fashi...
Ultrasensitive response motifs, capable of converting graded stimuli into binary responses, are well...
The application of engineering principles to understand and design biological systems is a powerful ...
Synthetic biology promise to provide solutions to many challenges in energy, agriculture, and health...
Background: Interconnected cell signaling pathways are able to efficiently and accurately transmit a...
Abstract — One of the most important design parameters in synthetic biological circuits is the gain ...
Abstract Background Interconnected cell signaling pathways are able to efficiently and accurately tr...
The Escherichia coli chemotaxis-signaling pathway computes time derivatives of chemoeffector concent...
<div><p>Cellular signaling networks are subject to transcriptional and proteolytic regulation under ...
Cellular signaling networks are subject to transcriptional and proteolytic regulation under both phy...
Signaling networks that convert graded stimuli into binary, all-or-none cellular responses are criti...
The mitogen activated protein kinase (MAPK) cascade is one of the most prominent and well-studied si...
All living things have evolved to sense changes in their environment in order to respond in adaptive...