AbstractThe ability to sense and respond to shallow gradients of extracellular signals is remarkably similar in Dictyostelium discoideum amoebae and mammalian leukocytes. Chemoattractant receptors and G proteins are fairly evenly distributed along the cell surface. Receptor occupancy generates local excitatory and global inhibitory processes that balance to control the chemotactic response. Uniform stimuli transiently recruit PI3Ks to, and release PTEN from, the plasma membrane, while gradients of chemoattractant cause the two enzymes to bind to the membrane at the front and back of the cell, respectively. Interference with PI3Ks alters chemotaxis, and disruption of PTEN broadens PI localization and actin polymerization in parallel. Thus, c...
AbstractEukaryotic cells can detect shallow gradients of chemoattractants with exquisite precision a...
AbstractCells have the innate ability to sense and move towards a variety of chemoattractants. We in...
The role of PI(3,4,5)P3 in Dictyostelium signal transduction and chemotaxis was investigated using t...
AbstractThe ability to sense and respond to shallow gradients of extracellular signals is remarkably...
AbstractChemotaxing cells, such as Dictyostelium and mammalian neutrophils, sense shallow chemoattra...
AbstractWe have investigated the mechanisms of leading edge formation in chemotaxing Dictyostelium c...
The directional movement of cells in chemoattractant gradients requires sophisticated control of the...
AbstractShallow gradients of chemoattractants, sensed by G protein-linked signaling pathways, elicit...
AbstractThe PI3K/PTEN pathway, as the regulator of 3′-phosphoinositide (3′-PI) dynamics, has emerged...
Chemotaxis is the result of a refined interplay among various intracellular molecules that process s...
Chemotaxis is the ability of cells to move in the direction of an external gradient of signaling mol...
Current models of eukaryotic chemotaxis propose that directional sensing causes localized generation...
SummaryChemotaxing neutrophils and Dictyostelium amoebae produce in their plasma membranes the signa...
Chemotaxis is the result of a refined interplay among various intracellular molecules that process s...
AbstractPhosphatidylinositol lipids, such as PI(4,5)P2 and PI(3,4,5)P3, are key mediators in diverse...
AbstractEukaryotic cells can detect shallow gradients of chemoattractants with exquisite precision a...
AbstractCells have the innate ability to sense and move towards a variety of chemoattractants. We in...
The role of PI(3,4,5)P3 in Dictyostelium signal transduction and chemotaxis was investigated using t...
AbstractThe ability to sense and respond to shallow gradients of extracellular signals is remarkably...
AbstractChemotaxing cells, such as Dictyostelium and mammalian neutrophils, sense shallow chemoattra...
AbstractWe have investigated the mechanisms of leading edge formation in chemotaxing Dictyostelium c...
The directional movement of cells in chemoattractant gradients requires sophisticated control of the...
AbstractShallow gradients of chemoattractants, sensed by G protein-linked signaling pathways, elicit...
AbstractThe PI3K/PTEN pathway, as the regulator of 3′-phosphoinositide (3′-PI) dynamics, has emerged...
Chemotaxis is the result of a refined interplay among various intracellular molecules that process s...
Chemotaxis is the ability of cells to move in the direction of an external gradient of signaling mol...
Current models of eukaryotic chemotaxis propose that directional sensing causes localized generation...
SummaryChemotaxing neutrophils and Dictyostelium amoebae produce in their plasma membranes the signa...
Chemotaxis is the result of a refined interplay among various intracellular molecules that process s...
AbstractPhosphatidylinositol lipids, such as PI(4,5)P2 and PI(3,4,5)P3, are key mediators in diverse...
AbstractEukaryotic cells can detect shallow gradients of chemoattractants with exquisite precision a...
AbstractCells have the innate ability to sense and move towards a variety of chemoattractants. We in...
The role of PI(3,4,5)P3 in Dictyostelium signal transduction and chemotaxis was investigated using t...