AbstractWe develop a mathematical model of phosphoinositide-mediated gradient sensing that can be applied to chemotactic behavior in highly motile eukaryotic cells such as Dictyostelium and neutrophils. We generate four variants of our model by adjusting parameters that control the strengths of coupled positive feedbacks and the importance of molecules that translocate from the cytosol to the membrane. Each variant exhibits a qualitatively different mode of gradient sensing. Simulations of characteristic behaviors suggest that differences between the variants are most evident at transitions between efficient gradient detection and failure. Based on these results, we propose criteria to distinguish between possible modes of gradient sensing ...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
The behaviors of biological systems depend on complex networks of interactions between large numbers...
AbstractEukaryotic cells can detect shallow gradients of chemoattractants with exquisite precision a...
AbstractEukaryotic cells can detect shallow gradients of chemoattractants with exquisite precision a...
The behaviors of biological systems depend on complex networks of interactions between large numbers...
The phenomenon of chemotaxis — the motion of a cell in response to gradi-ents in external chemical c...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
Many eukaryotic cell types share the ability to migrate directionally in response to external chemoa...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
Many eukaryotic cell types share the ability to migrate directionally in response to external chemoa...
AbstractSmall chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoat...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
The behaviors of biological systems depend on complex networks of interactions between large numbers...
AbstractEukaryotic cells can detect shallow gradients of chemoattractants with exquisite precision a...
AbstractEukaryotic cells can detect shallow gradients of chemoattractants with exquisite precision a...
The behaviors of biological systems depend on complex networks of interactions between large numbers...
The phenomenon of chemotaxis — the motion of a cell in response to gradi-ents in external chemical c...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
Many eukaryotic cell types share the ability to migrate directionally in response to external chemoa...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
The ability to detect a chemical gradient is fundamental to many cellular processes. In multicellula...
Many eukaryotic cell types share the ability to migrate directionally in response to external chemoa...
AbstractSmall chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoat...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...
Small chemotactic cells like Dictyostelium and neutrophils transduce shallow spatial chemoattractant...