AbstractIn vitro actin based motility assays with bacterial pathogens have provided powerful systems to both understand and dissect actin dynamics as well as cell motility. Taking advantage of endogenous membrane vesicles in Xenopus extracts we have developed an in vitro assay to study membrane dependent actin polymerization. Our results demonstrate that membrane dependent actin polymerization, in contrast to Listeria stimulated actin filament assembly, is dependent on small GTPases of the Rho family. Using a combination of depletion and reconstitution experiments we have shown that Cdc42 but not Rac or Rho is required to stimulate actin polymerization from membranes. The in vitro system we have described here is amenable to identification ...
AbstractBackground: During cytokinesis in animal cells, an equatorial actomyosin-based contractile r...
peer reviewedThe actin cytoskeleton is a dynamic network that is composed of a variety of F-actin st...
Most animal cells use a combination of actin-myosin–based contraction and actin polymerization– base...
AbstractIn vitro actin based motility assays with bacterial pathogens have provided powerful systems...
In the accompanying chapter, we describe an in vitro system that uses Xenopus egg extracts to study ...
AbstractBackground: Actin filaments polymerize in vivo primarily from their fast-growing barbed ends...
Cells that move in response to an external signal are crucial for diverse physiological processes su...
AbstractBackground: Cdc42, a GTP-binding protein of the Rho family, controls actin cytoskeletal orga...
AbstractAlthough small GTP-binding proteins of the Rho family have been implicated in signaling to t...
The small GTPase RhoA is involved in cell morphology and migration. RhoA activity is tightly regulat...
The small GTPase RhoA is involved in cell morphology and migration. RhoA activity is tightly regulat...
The actin cytoskeleton is crucial for maintaining the morphology of many cells and for dynamic proce...
The actin cytoskeleton mediates a variety of essential biological functions in all eukaryotic cells....
The Rho GTPases comprise a subfamily of the Ras superfamily of small GTPases. Their importance in re...
Bosse T, Ehinger J, Czuchra A, et al. Cdc42 and phosphoinositide 3-kinase drive Rac-mediated actin p...
AbstractBackground: During cytokinesis in animal cells, an equatorial actomyosin-based contractile r...
peer reviewedThe actin cytoskeleton is a dynamic network that is composed of a variety of F-actin st...
Most animal cells use a combination of actin-myosin–based contraction and actin polymerization– base...
AbstractIn vitro actin based motility assays with bacterial pathogens have provided powerful systems...
In the accompanying chapter, we describe an in vitro system that uses Xenopus egg extracts to study ...
AbstractBackground: Actin filaments polymerize in vivo primarily from their fast-growing barbed ends...
Cells that move in response to an external signal are crucial for diverse physiological processes su...
AbstractBackground: Cdc42, a GTP-binding protein of the Rho family, controls actin cytoskeletal orga...
AbstractAlthough small GTP-binding proteins of the Rho family have been implicated in signaling to t...
The small GTPase RhoA is involved in cell morphology and migration. RhoA activity is tightly regulat...
The small GTPase RhoA is involved in cell morphology and migration. RhoA activity is tightly regulat...
The actin cytoskeleton is crucial for maintaining the morphology of many cells and for dynamic proce...
The actin cytoskeleton mediates a variety of essential biological functions in all eukaryotic cells....
The Rho GTPases comprise a subfamily of the Ras superfamily of small GTPases. Their importance in re...
Bosse T, Ehinger J, Czuchra A, et al. Cdc42 and phosphoinositide 3-kinase drive Rac-mediated actin p...
AbstractBackground: During cytokinesis in animal cells, an equatorial actomyosin-based contractile r...
peer reviewedThe actin cytoskeleton is a dynamic network that is composed of a variety of F-actin st...
Most animal cells use a combination of actin-myosin–based contraction and actin polymerization– base...