SummaryBackgroundDuring cytokinesis, regulatory signals are presumed to emanate from the mitotic spindle. However, what these signals are and how they lead to the spatiotemporal changes in the cortex structure, mechanics, and regional contractility are not well understood in any system.ResultsTo investigate pathways that link the microtubule network to the cortical changes that promote cytokinesis, we used chemical genetics in Dictyostelium to identify genetic suppressors of nocodazole, a microtubule depolymerizer. We identified 14-3-3 and found that it is enriched in the cortex, helps maintain steady-state microtubule length, contributes to normal cortical tension, modulates actin wave formation, and controls the symmetry and kinetics of c...
SummaryBackgroundAfter anaphase, the segregated chromosomes are sequestered by cytokinesis into two ...
Cytokinesis requires the proper interactions between microtubules and actin filaments (F-actin) at t...
Microtubules assemble into arrays of bundled filaments that are critical for multiple steps in cell ...
Microtubules (MTs) are essential for cleavage furrow positioning during cytokinesis, but the mechani...
AbstractThe mechanism that positions the cytokinetic contractile ring is unknown, but derives from t...
SummaryIntroductionContractile networks are fundamental to many cellular functions, particularly cyt...
Microtubules stimulate contractile-ring formation in the equatorial cortex and simultaneously suppre...
Cytokinesis is the process where a mother cell cleaves into two daughter cells and is driven by the ...
The primary goal of cytokinesis is to produce two daughter cells, each having a full set of chromoso...
Microtubules are regulated by a diverse set of proteins that localize to microtubule plus ends (+TIP...
Cytokinesis is the final step of mitosis when a mother cell is separated into two daughter cells. Ma...
How microtubules act to position the plane of cell division during cytokinesis is a topic of much de...
Microtubules are polarized cytoskeletal filaments that serve as tracks for intracellular transport a...
SummaryThe mitotic microtubule array plays two primary roles in cell division. It acts as a scaffold...
Microtubules are involved in a wide range of cellular functions including the establishment of cell ...
SummaryBackgroundAfter anaphase, the segregated chromosomes are sequestered by cytokinesis into two ...
Cytokinesis requires the proper interactions between microtubules and actin filaments (F-actin) at t...
Microtubules assemble into arrays of bundled filaments that are critical for multiple steps in cell ...
Microtubules (MTs) are essential for cleavage furrow positioning during cytokinesis, but the mechani...
AbstractThe mechanism that positions the cytokinetic contractile ring is unknown, but derives from t...
SummaryIntroductionContractile networks are fundamental to many cellular functions, particularly cyt...
Microtubules stimulate contractile-ring formation in the equatorial cortex and simultaneously suppre...
Cytokinesis is the process where a mother cell cleaves into two daughter cells and is driven by the ...
The primary goal of cytokinesis is to produce two daughter cells, each having a full set of chromoso...
Microtubules are regulated by a diverse set of proteins that localize to microtubule plus ends (+TIP...
Cytokinesis is the final step of mitosis when a mother cell is separated into two daughter cells. Ma...
How microtubules act to position the plane of cell division during cytokinesis is a topic of much de...
Microtubules are polarized cytoskeletal filaments that serve as tracks for intracellular transport a...
SummaryThe mitotic microtubule array plays two primary roles in cell division. It acts as a scaffold...
Microtubules are involved in a wide range of cellular functions including the establishment of cell ...
SummaryBackgroundAfter anaphase, the segregated chromosomes are sequestered by cytokinesis into two ...
Cytokinesis requires the proper interactions between microtubules and actin filaments (F-actin) at t...
Microtubules assemble into arrays of bundled filaments that are critical for multiple steps in cell ...