To study the dynamics of stress fiber components in cultured fibroblasts, we expressed α-actinin and the myosin II regulatory myosin light chain (MLC) as fusion proteins with green fluorescent protein. Myosin activation was stimulated by treatment with calyculin A, a serine/threonine phosphatase inhibitor that elevates MLC phosphorylation, or with LPA, another agent that ultimately stimulates phosphorylation of MLC via a RhoA-mediated pathway. The resulting contraction caused stress fiber shortening and allowed observation of changes in the spacing of stress fiber components. We have observed that stress fibers, unlike muscle myofibrils, do not contract uniformly along their lengths. Although peripheral regions shortened, more central regio...
The ability of a cell to distribute contractile stresses across the extracellular matrix in a spatia...
AbstractThe ability of a cell to distribute contractile stresses across the extracellular matrix in ...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...
To study the dynamics of stress fiber components in cultured fibroblasts, we expressed α-actinin and...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
SummaryBackgroundCell migration and morphogenesis are driven by both protrusive and contractile acti...
One of the most exciting recent developments in cell biology is the recognition that the geometry, t...
The purpose of this study was to analyze where monomeric actin first becomes incorporated into the s...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
Stress fibers (SFs) are often the most prominent cytoskeletal structures in cells growing in tissue ...
AbstractTension generation in endothelial cells of the aorta, spleen, and eye occurs in actin stress...
In this study the authors report that Caldesmon controls force-balance and architecture of stress fi...
AbstractActin stress fibers (SFs) are load-bearing and mechanosensitive structures. To our knowledge...
The ability of a cell to distribute contractile stresses across the extracellular matrix in a spatia...
AbstractThe ability of a cell to distribute contractile stresses across the extracellular matrix in ...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...
To study the dynamics of stress fiber components in cultured fibroblasts, we expressed α-actinin and...
Actin filaments assemble into diverse protrusive and contractile structures to provide force for a n...
SummaryBackgroundCell migration and morphogenesis are driven by both protrusive and contractile acti...
One of the most exciting recent developments in cell biology is the recognition that the geometry, t...
The purpose of this study was to analyze where monomeric actin first becomes incorporated into the s...
AbstractStress fibers are actomyosin-based bundles whose structural and contractile properties under...
Contractile actomyosin bundles, stress fibers, govern key cellular processes including migration, ad...
Adhesion and morphogenesis of many non-muscle cells are guided by contractile actomyosin bundles cal...
Stress fibers (SFs) are often the most prominent cytoskeletal structures in cells growing in tissue ...
AbstractTension generation in endothelial cells of the aorta, spleen, and eye occurs in actin stress...
In this study the authors report that Caldesmon controls force-balance and architecture of stress fi...
AbstractActin stress fibers (SFs) are load-bearing and mechanosensitive structures. To our knowledge...
The ability of a cell to distribute contractile stresses across the extracellular matrix in a spatia...
AbstractThe ability of a cell to distribute contractile stresses across the extracellular matrix in ...
SummaryTo maintain mechanical homeostasis, cells must recognize and respond to changes in cytoskelet...