SummaryNonmuscle myosin II (NMII) is thought to be the master integrator of force within epithelial apical junctions, mediating epithelial tissue morphogenesis and tensional homeostasis [1–3]. Mutations in NMII are associated with a number of diseases due to failures in cell-cell adhesion [4–8]. However, the organization and the precise mechanism by which NMII generates and responds to tension along the intercellular junctional line are still not known. We discovered that periodic assemblies of bipolar NMII filaments interlace with perijunctional actin and α-actinin to form a continuous belt of muscle-like sarcomeric units (∼400–600 nm) around each epithelial cell. Remarkably, the sarcomeres of adjacent cells are precisely paired across the...
Under conditions of homeostasis, dynamic changes in the length of individual adherens junctions (AJs...
The epithelial zonula adherens (ZA) is a specialized adhesive junction where actin dynamics and myos...
The contractile system of nonmuscle cells consists of interconnected actomyosin networks and bundles...
SummaryNonmuscle myosin II (NMII) is thought to be the master integrator of force within epithelial ...
\u3cp\u3eAdherens junction (AJ) assembly under force is essential for many biological processes like...
The integrity and function of the epithelial barrier is dependent on the apical junctional complex (...
Non-muscle myosin II (NMII) form bipolar filaments, which bind F-actin to exert cellular contractili...
SummaryBackgroundClass II myosins generate contractile forces in cells by polymerizing into bipolar ...
Cell–cell adhesion couples the contractile cortices of epithelial cells together, generating tension...
SummaryBackgroundActomyosin-based contractility acts on cadherin junctions to support tissue integri...
International audienceActomyosin contractility plays a central role in a wide range of cellular proc...
Nonmuscle myosin II (NMII) is a multimeric protein complex that generates most mechanical force in e...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2017.This electronic v...
Background: Actomyosin-based contractility acts on cadherin junctions to support tissue integrity an...
The propagation of force in epithelial tissues requires that the contractile cytoskeletal machinery ...
Under conditions of homeostasis, dynamic changes in the length of individual adherens junctions (AJs...
The epithelial zonula adherens (ZA) is a specialized adhesive junction where actin dynamics and myos...
The contractile system of nonmuscle cells consists of interconnected actomyosin networks and bundles...
SummaryNonmuscle myosin II (NMII) is thought to be the master integrator of force within epithelial ...
\u3cp\u3eAdherens junction (AJ) assembly under force is essential for many biological processes like...
The integrity and function of the epithelial barrier is dependent on the apical junctional complex (...
Non-muscle myosin II (NMII) form bipolar filaments, which bind F-actin to exert cellular contractili...
SummaryBackgroundClass II myosins generate contractile forces in cells by polymerizing into bipolar ...
Cell–cell adhesion couples the contractile cortices of epithelial cells together, generating tension...
SummaryBackgroundActomyosin-based contractility acts on cadherin junctions to support tissue integri...
International audienceActomyosin contractility plays a central role in a wide range of cellular proc...
Nonmuscle myosin II (NMII) is a multimeric protein complex that generates most mechanical force in e...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2017.This electronic v...
Background: Actomyosin-based contractility acts on cadherin junctions to support tissue integrity an...
The propagation of force in epithelial tissues requires that the contractile cytoskeletal machinery ...
Under conditions of homeostasis, dynamic changes in the length of individual adherens junctions (AJs...
The epithelial zonula adherens (ZA) is a specialized adhesive junction where actin dynamics and myos...
The contractile system of nonmuscle cells consists of interconnected actomyosin networks and bundles...