AbstractThe crawling locomotion and shape of eukaryotic cells have been associated with the stochastic molecular dynamics of actin and its protein regulators, chiefly Arp2/3 and Rho family GTPases, in making a cytoskeleton meshwork within cell extensions. However, the cell’s actin-dependent oscillatory shape and extension dynamics may also yield insights into locomotory mechanisms. Confocal observations of live Dictyostelium cells, expressing a green fluorescent protein–actin fusion protein, demonstrate oscillating supramolecular patterns of filamentous actin throughout the cell, which generate pseudopodia at the cell edge. The distinctively dissipative spatio-temporal behavior of these structures provides strong evidence that reversible ac...
The rapid reorganization of the actin cytoskeleton in response to external stimuli is an essential p...
Both Dictyostelium amoebae and mammalian cells are endowed with an elaborate actin cytoskeleton that...
<div><p>For directional movement, eukaryotic cells depend on the proper organization of their actin ...
AbstractBackground: In the cortical region of motile cells, the actin network rapidly reorganizes as...
BACKGROUND: In the cortical region of motile cells, the actin network rapidly reorganizes as require...
At the leading edge of a motile cell, actin polymerizes in close apposition to the plasma membrane. ...
AbstractAt the leading edge of a motile cell, actin polymerizes in close apposition to the plasma me...
AbstractBackground: The microfilament system in the cortex of highly motile cells, such as neutrophi...
Propagating actin waves are dynamic supramolecular structures formed by the self-assembly of protein...
Actin waves are complex dynamical patterns of the dendritic network of filamentous actin in eukaryot...
<div><p>Actin waves are complex dynamical patterns of the dendritic network of filamentous actin in ...
Cell motility is a very important life phenomenon. It involves dynamic and coordinated changes of th...
Background: In the absence of stimuli, most motile eukaryotic cells move by spontaneously coordinati...
Cell migration is an essential process, both in unicellular organisms such as amoeba and as individu...
Actin polymerization is typically initiated at specific sites in a cell by membrane-bound protein co...
The rapid reorganization of the actin cytoskeleton in response to external stimuli is an essential p...
Both Dictyostelium amoebae and mammalian cells are endowed with an elaborate actin cytoskeleton that...
<div><p>For directional movement, eukaryotic cells depend on the proper organization of their actin ...
AbstractBackground: In the cortical region of motile cells, the actin network rapidly reorganizes as...
BACKGROUND: In the cortical region of motile cells, the actin network rapidly reorganizes as require...
At the leading edge of a motile cell, actin polymerizes in close apposition to the plasma membrane. ...
AbstractAt the leading edge of a motile cell, actin polymerizes in close apposition to the plasma me...
AbstractBackground: The microfilament system in the cortex of highly motile cells, such as neutrophi...
Propagating actin waves are dynamic supramolecular structures formed by the self-assembly of protein...
Actin waves are complex dynamical patterns of the dendritic network of filamentous actin in eukaryot...
<div><p>Actin waves are complex dynamical patterns of the dendritic network of filamentous actin in ...
Cell motility is a very important life phenomenon. It involves dynamic and coordinated changes of th...
Background: In the absence of stimuli, most motile eukaryotic cells move by spontaneously coordinati...
Cell migration is an essential process, both in unicellular organisms such as amoeba and as individu...
Actin polymerization is typically initiated at specific sites in a cell by membrane-bound protein co...
The rapid reorganization of the actin cytoskeleton in response to external stimuli is an essential p...
Both Dictyostelium amoebae and mammalian cells are endowed with an elaborate actin cytoskeleton that...
<div><p>For directional movement, eukaryotic cells depend on the proper organization of their actin ...