AbstractMany processes in eukaryotic cells, including the crawling motion of the whole cell, rely on the growth of branched actin networks from surfaces. In addition to their well-known role in generating propulsive forces, actin networks can also sustain substantial pulling loads thanks to their persistent attachment to the surface from which they grow. The simultaneous network elongation and surface attachment inevitably generate a force that opposes network growth. Here, we study the local dynamics of a growing actin network, accounting for simultaneous network elongation and surface attachment, and show that there exist several dynamical regimes that depend on both network elasticity and the kinetic parameters of actin polymerization. W...
Rich understanding of a complex system can often emerge from simple but carefully constructed models...
AbstractThe actin cortex has a well-documented ability to rapidly remodel and flow while maintaining...
Actomyosin networks give cells the ability to move and divide. These networks contract and expand wh...
Many processes in eukaryotic cells, including the crawling motion of the whole cell, rely on the gro...
AbstractMany processes in eukaryotic cells, including the crawling motion of the whole cell, rely on...
International audienceMany processes in eukaryotic cells, including cell motility, rely on the growt...
International audienceCells use their dynamic actin network to control their mechanics and motility....
Polymerization of dendritic actin networks underlies important mechanical processes in cell biology ...
Actin networks are essential for living cells to move, reproduce, and sense their environments. The ...
9 pages, 7 figures. Submitted to and accepted by Nat. CommunInternational audienceThe actin cytoskel...
Growing networks of actin fibers are able to organize into compact, stiff two-dimensional structures...
Actin filaments polymerizing against membranes power endocytosis, vesicular traffic, and cell motili...
International audienceThe growth of branched actin networks powers cell-edge protrusions and motilit...
Contractile actomyosin network flows are crucial for many cellular processes including cell division...
International audienceTissue remodeling requires cell shape changes associated with pulsation and fl...
Rich understanding of a complex system can often emerge from simple but carefully constructed models...
AbstractThe actin cortex has a well-documented ability to rapidly remodel and flow while maintaining...
Actomyosin networks give cells the ability to move and divide. These networks contract and expand wh...
Many processes in eukaryotic cells, including the crawling motion of the whole cell, rely on the gro...
AbstractMany processes in eukaryotic cells, including the crawling motion of the whole cell, rely on...
International audienceMany processes in eukaryotic cells, including cell motility, rely on the growt...
International audienceCells use their dynamic actin network to control their mechanics and motility....
Polymerization of dendritic actin networks underlies important mechanical processes in cell biology ...
Actin networks are essential for living cells to move, reproduce, and sense their environments. The ...
9 pages, 7 figures. Submitted to and accepted by Nat. CommunInternational audienceThe actin cytoskel...
Growing networks of actin fibers are able to organize into compact, stiff two-dimensional structures...
Actin filaments polymerizing against membranes power endocytosis, vesicular traffic, and cell motili...
International audienceThe growth of branched actin networks powers cell-edge protrusions and motilit...
Contractile actomyosin network flows are crucial for many cellular processes including cell division...
International audienceTissue remodeling requires cell shape changes associated with pulsation and fl...
Rich understanding of a complex system can often emerge from simple but carefully constructed models...
AbstractThe actin cortex has a well-documented ability to rapidly remodel and flow while maintaining...
Actomyosin networks give cells the ability to move and divide. These networks contract and expand wh...