Cells often employ fast, pressure-driven blebs to move through tissues or against mechanical resistance, but how bleb sites are selected and directed to the cell front remains an open question. Previously, we found that chemotaxing Dictyostelium cells preferentially bleb from concave regions, where membrane tension facilitates membrane-cortex detachment. Now, through a novel modeling approach based on actual cell contours, we use cell geometry to predict where blebs will form in migrating cells. We find that cell geometry alone, and by implication, physical forces in the membrane, is sufficient to predict the location of blebs in rounded cells moving in a highly resistive environment. The model is less successful with more polarized cells m...
When the plasma membrane of a cell locally delaminates from its actin cortex the membrane is pushed ...
Cell migration is critical for many vital processes, such as wound healing, as well as harmful proce...
The current dominant model of cell locomotion proposes that actin polymerization pushes against the ...
Cells often employ fast, pressure-driven blebs to move through tissues or against mechanical resista...
Cellular blebs are fast, pressure-driven protrusions of the cell membrane that are initially devoid ...
A cellular bleb grows when a portion of the cell membrane detaches from the underlying cortex under ...
Migrating cells can extend their leading edge by forming myosin-driven blebs and F-actin-driven pseu...
If the plasma membrane of a cell is able to delaminate locally from its actin cortex a cellular bleb...
We present a technical platform that allows us to monitor and measure cortex and membrane dynamics d...
We present a technical platform that allows us to monitor and measure cortex and membrane dynamics d...
At T1, the membrane detaches from the cortex, initiating a bleb. At T2, an actin scar in the origina...
We present a technical platform that allows us to monitor and measure cortex and membrane dynamics d...
Blebs are cellular protrusions that have been shown to be instrumental for cell migration in develop...
Blebs are cellular protrusions that are used by cells for multiple purposes including locomotion. A ...
If the plasma membrane of a cell is able to delaminate locally from its actin cortex a cellular bleb...
When the plasma membrane of a cell locally delaminates from its actin cortex the membrane is pushed ...
Cell migration is critical for many vital processes, such as wound healing, as well as harmful proce...
The current dominant model of cell locomotion proposes that actin polymerization pushes against the ...
Cells often employ fast, pressure-driven blebs to move through tissues or against mechanical resista...
Cellular blebs are fast, pressure-driven protrusions of the cell membrane that are initially devoid ...
A cellular bleb grows when a portion of the cell membrane detaches from the underlying cortex under ...
Migrating cells can extend their leading edge by forming myosin-driven blebs and F-actin-driven pseu...
If the plasma membrane of a cell is able to delaminate locally from its actin cortex a cellular bleb...
We present a technical platform that allows us to monitor and measure cortex and membrane dynamics d...
We present a technical platform that allows us to monitor and measure cortex and membrane dynamics d...
At T1, the membrane detaches from the cortex, initiating a bleb. At T2, an actin scar in the origina...
We present a technical platform that allows us to monitor and measure cortex and membrane dynamics d...
Blebs are cellular protrusions that have been shown to be instrumental for cell migration in develop...
Blebs are cellular protrusions that are used by cells for multiple purposes including locomotion. A ...
If the plasma membrane of a cell is able to delaminate locally from its actin cortex a cellular bleb...
When the plasma membrane of a cell locally delaminates from its actin cortex the membrane is pushed ...
Cell migration is critical for many vital processes, such as wound healing, as well as harmful proce...
The current dominant model of cell locomotion proposes that actin polymerization pushes against the ...