Abstract: During development, cells gain positional information through the interpretation of dynamic morphogen gradients. A proposed mechanism for interpreting opposing morphogen gradients is mutual inhibition of downstream transcription factors, but isolating the role of this specific motif within a natural network remains a challenge. Here, we engineer a synthetic morphogen-induced mutual inhibition circuit in E. coli populations and show that mutual inhibition alone is sufficient to produce stable domains of gene expression in response to dynamic morphogen gradients, provided the spatial average of the morphogens falls within the region of bistability at the single cell level. When we add sender devices, the resulting patterning circuit...
The formation of spatiotemporal patterns of gene expression is frequently guided by gradients of dif...
The patterning of many developing tissues is organized by morphogens. Genetic and environmental pert...
Designing and implementing synthetic biological pattern formation remains challenging due to underly...
During development, cells gain positional information through the interpretation of dynamic morphoge...
The earliest models for how morphogen gradients guide embryonic patterning failed to account for exp...
Multicellular entities are characterized by intricate spatial patterns, intimately related to the fu...
Multicellular entities are characterized by intricate spatial patterns, intimately related to the fu...
In metazoan tissues, cells decide their fates by sensing positional information provided by speciali...
BACKGROUND:Spatial pattern formation is a critical issue in developmental biology. Gene expression b...
BACKGROUND:Spatial pattern formation is a critical issue in developmental biology. Gene expression b...
AbstractDuring development, multicellular organisms must accurately control both temporal and spatia...
Biological organisms rely on spatial variation in cell activity to coordinate diverse activities, su...
The formation of spatiotemporal patterns of gene expression is frequently guided by gradients of dif...
Synthetic biology aims to develop new biological systems and devices, from the modification of exist...
The formation of spatiotemporal patterns of gene expression is frequently guided by gradients of dif...
The formation of spatiotemporal patterns of gene expression is frequently guided by gradients of dif...
The patterning of many developing tissues is organized by morphogens. Genetic and environmental pert...
Designing and implementing synthetic biological pattern formation remains challenging due to underly...
During development, cells gain positional information through the interpretation of dynamic morphoge...
The earliest models for how morphogen gradients guide embryonic patterning failed to account for exp...
Multicellular entities are characterized by intricate spatial patterns, intimately related to the fu...
Multicellular entities are characterized by intricate spatial patterns, intimately related to the fu...
In metazoan tissues, cells decide their fates by sensing positional information provided by speciali...
BACKGROUND:Spatial pattern formation is a critical issue in developmental biology. Gene expression b...
BACKGROUND:Spatial pattern formation is a critical issue in developmental biology. Gene expression b...
AbstractDuring development, multicellular organisms must accurately control both temporal and spatia...
Biological organisms rely on spatial variation in cell activity to coordinate diverse activities, su...
The formation of spatiotemporal patterns of gene expression is frequently guided by gradients of dif...
Synthetic biology aims to develop new biological systems and devices, from the modification of exist...
The formation of spatiotemporal patterns of gene expression is frequently guided by gradients of dif...
The formation of spatiotemporal patterns of gene expression is frequently guided by gradients of dif...
The patterning of many developing tissues is organized by morphogens. Genetic and environmental pert...
Designing and implementing synthetic biological pattern formation remains challenging due to underly...