Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation

View through CrossRef
The Arp2/3 complex generates branched actin filament networks operating in cell edge protrusion and vesicle trafficking. Here we employ a conditional knockout mouse model permitting tissue- or cell-type specific deletion of the murine Actr3 gene (encoding Arp3). A functional Actr3 gene appeared essential for fibroblast viability and growth. Thus, we developed cell lines for exploring the consequences of acute, tamoxifen-induced Actr3 deletion causing near-complete loss of functional Arp2/3 complex expression as well as abolished lamellipodia formation and membrane ruffling, as expected. Interestingly, Arp3-depleted cells displayed enhanced rather than reduced cell spreading, employing numerous filopodia, and showed little defects in the rates of random cell migration. However, both exploration of new space by individual cells and collective migration were clearly compromised by the incapability to efficiently maintain directionality of migration, while the principal ability to chemotax was only moderately affected. Examination of actin remodeling at the cell periphery revealed reduced actin turnover rates in Arp2/3-deficient cells, clearly deviating from previous sequestration approaches. Most surprisingly, induced removal of Arp2/3 complexes reproducibly increased FMNL formin expression, which correlated with the explosive induction of filopodia formation. Our results thus highlight both direct and indirect effects of acute Arp2/3 complex removal on actin cytoskeleton regulation.
Title: Induced Arp2/3 Complex Depletion Increases FMNL2/3 Formin Expression and Filopodia Formation
Description:
The Arp2/3 complex generates branched actin filament networks operating in cell edge protrusion and vesicle trafficking.
Here we employ a conditional knockout mouse model permitting tissue- or cell-type specific deletion of the murine Actr3 gene (encoding Arp3).
A functional Actr3 gene appeared essential for fibroblast viability and growth.
Thus, we developed cell lines for exploring the consequences of acute, tamoxifen-induced Actr3 deletion causing near-complete loss of functional Arp2/3 complex expression as well as abolished lamellipodia formation and membrane ruffling, as expected.
Interestingly, Arp3-depleted cells displayed enhanced rather than reduced cell spreading, employing numerous filopodia, and showed little defects in the rates of random cell migration.
However, both exploration of new space by individual cells and collective migration were clearly compromised by the incapability to efficiently maintain directionality of migration, while the principal ability to chemotax was only moderately affected.
Examination of actin remodeling at the cell periphery revealed reduced actin turnover rates in Arp2/3-deficient cells, clearly deviating from previous sequestration approaches.
Most surprisingly, induced removal of Arp2/3 complexes reproducibly increased FMNL formin expression, which correlated with the explosive induction of filopodia formation.
Our results thus highlight both direct and indirect effects of acute Arp2/3 complex removal on actin cytoskeleton regulation.

Related Results

Filopodia numbers impact chemotactic migration speed
Filopodia numbers impact chemotactic migration speed
Summary Migrating cells sense and respond to external chemical and physical cues, enabling them to efficiently reach their destinations. Filopodi...
Regulation of the invasion suppressor Arpin by Tankyrases
Regulation of the invasion suppressor Arpin by Tankyrases
Régulation du suppresseur d'invasion Arpin par les Tankyrases Le complexe Arp2/3, conservé sur le plan évolutif, joue un rôle central dans la nucléation d’actine br...
Induced Arp2/3 complex depletion increases FMNL2/3 formin expression and filopodia formation
Induced Arp2/3 complex depletion increases FMNL2/3 formin expression and filopodia formation
Abstract The Arp2/3 complex generates branched actin filament networks operating in cell edge protrusion and vesicle trafficking. Here we employ ...
Regulation of filopodia by transmembrane agrin
Regulation of filopodia by transmembrane agrin
Filopodial activity is implicated in control of growth and movement in many cell types. Neuronal filopodia are involved in control of axon guidance, neurite branching and in synaps...
Regulation of axon collateral branch morphogenesis by septin GTPases
Regulation of axon collateral branch morphogenesis by septin GTPases
Development of a functional nervous system requires the formation of correct innervation patterns, which are largely shaped by the axon collateral branching. Axon collateral branch...
Filopodia are dispensable for endothelial tip cell guidance
Filopodia are dispensable for endothelial tip cell guidance
Actin filaments are instrumental in driving processes such as migration, cytokinesis and endocytosis and provide cells with mechanical support. During angiogenesis, actin-rich filo...
Rôles d’Arpin dans la migration cellulaire et la réparation de l’ADN
Rôles d’Arpin dans la migration cellulaire et la réparation de l’ADN
Au front de migration, la protrusion de la membrane appelée lamellipode est générée par la polymérisation de l'actine branchée par Arp2/3. Ce processus est orchestré par la petite ...
Abstract 434: Formin Dependent Regulation of Adherens Junction Assembly
Abstract 434: Formin Dependent Regulation of Adherens Junction Assembly
Adherens junctions are cadherin-dependent structures that mediate intercellular signaling and structural integrity. In endothelial cells, adherens junctions are the primary determi...

Back to Top