Contractile actomyosin bundles, stress fibers, contribute to morphogenesis, migration, and mechanosensing of non-muscle cells. In addition to actin and non-muscle myosin II (NMII), stress fibers contain a large array of proteins that control their assembly, turnover, and contractility. Calponin-3 (Cnn3) is an actin-binding protein that associates with stress fibers. However, whether Cnn3 promotes stress fiber assembly, or serves as either a positive or negative regulator of their contractility has remained obscure. Here, we applied U2OS osteosarcoma cells as a model system to study the function of Cnn3. We show that Cnn3 localizes to both NMII-containing contractile ventral stress fibers and transverse arcs, as well as to non-contractile do...
Contractile actomyosin bundles, stress fibers, are crucial for adhesion, morphogenesis, and mechanos...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...
Contractile actomyosin bundles, stress fibers, contribute to morphogenesis, migration, and mechanose...
Fundamental processes of essentially each cell of the human body depend on structures built of actin...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
Summary: Stress fibers are contractile actomyosin bundles that guide cell adhesion, migration, and m...
SummaryBackgroundCell migration and morphogenesis are driven by both protrusive and contractile acti...
In this study the authors report that Caldesmon controls force-balance and architecture of stress fi...
Calponin-3 (CNN3) is a cytoskeletal associated factor that binds and regulates actin mediated transp...
To study the dynamics of stress fiber components in cultured fibroblasts, we expressed α-actinin and...
Actin is a highly ubiquitous and evolutionarily conserved protein capable of polymerizing and formin...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
BackgroundMyogenesis is a complex process that requires optimal outside–in substrate–cell signaling....
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
Contractile actomyosin bundles, stress fibers, are crucial for adhesion, morphogenesis, and mechanos...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...
Contractile actomyosin bundles, stress fibers, contribute to morphogenesis, migration, and mechanose...
Fundamental processes of essentially each cell of the human body depend on structures built of actin...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
Summary: Stress fibers are contractile actomyosin bundles that guide cell adhesion, migration, and m...
SummaryBackgroundCell migration and morphogenesis are driven by both protrusive and contractile acti...
In this study the authors report that Caldesmon controls force-balance and architecture of stress fi...
Calponin-3 (CNN3) is a cytoskeletal associated factor that binds and regulates actin mediated transp...
To study the dynamics of stress fiber components in cultured fibroblasts, we expressed α-actinin and...
Actin is a highly ubiquitous and evolutionarily conserved protein capable of polymerizing and formin...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
BackgroundMyogenesis is a complex process that requires optimal outside–in substrate–cell signaling....
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
Contractile actomyosin bundles, stress fibers, are crucial for adhesion, morphogenesis, and mechanos...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...