SummaryCell rearrangements shape the Drosophila embryo via spatially regulated changes in cell shape and adhesion. We show that Bazooka/Par-3 (Baz) is required for the planar polarized distribution of myosin II and adherens junction proteins and polarized intercalary behavior is disrupted in baz mutants. The myosin II activator Rho-kinase is asymmetrically enriched at the anterior and posterior borders of intercalating cells in a pattern complementary to Baz. Loss of Rho-kinase results in expansion of the Baz domain, and activated Rho-kinase is sufficient to exclude Baz from the cortex. The planar polarized distribution of Baz requires its C-terminal domain. Rho-kinase can phosphorylate this domain and inhibit its interaction with phosphoin...
AbstractEstablishment and maintenance of apical basal cell polarity are essential for epithelial mor...
Polarity of many cell types is controlled by a protein complex consisting of Bazooka/PAR-3 (Baz), PA...
SummaryBazooka (PAR-3), PAR-6, and aPKC form a complex that plays a key role in the polarization of ...
Cell rearrangements shape the Drosophila embryo via spatially regulated changes in cell shape and ad...
Cell rearrangements shape the Drosophila embryo via spatially regulated changes in cell shape and ad...
SummaryCell rearrangements shape the Drosophila embryo via spatially regulated changes in cell shape...
SummaryCell polarity in higher animals is controlled by evolutionarily conserved protein complexes, ...
Epithelial cell polarity is essential for animal development. The scaffold protein Bazooka (Baz/PAR-...
Cell and tissue morphogenesis depends on the correct regulation of non-muscle Myosin II, but how thi...
Cell shape changes drive tissue remodeling. Polarized activity of actin and myosin drive apical cons...
AbstractPAR-1 kinases are required for polarity in diverse cell types, such as epithelial cells, whe...
SummaryTo form regulated barriers between body compartments, epithelial cells polarize into apical a...
PAR-1 kinases are required for polarity in diverse cell types, such as epithelial cells, where they ...
Epithelial sheets line the surfaces of the body and our organs, acting as semi-permeable barriers be...
PAR-1 kinases are required for polarity in diverse cell types, such as epithelial cells, where they ...
AbstractEstablishment and maintenance of apical basal cell polarity are essential for epithelial mor...
Polarity of many cell types is controlled by a protein complex consisting of Bazooka/PAR-3 (Baz), PA...
SummaryBazooka (PAR-3), PAR-6, and aPKC form a complex that plays a key role in the polarization of ...
Cell rearrangements shape the Drosophila embryo via spatially regulated changes in cell shape and ad...
Cell rearrangements shape the Drosophila embryo via spatially regulated changes in cell shape and ad...
SummaryCell rearrangements shape the Drosophila embryo via spatially regulated changes in cell shape...
SummaryCell polarity in higher animals is controlled by evolutionarily conserved protein complexes, ...
Epithelial cell polarity is essential for animal development. The scaffold protein Bazooka (Baz/PAR-...
Cell and tissue morphogenesis depends on the correct regulation of non-muscle Myosin II, but how thi...
Cell shape changes drive tissue remodeling. Polarized activity of actin and myosin drive apical cons...
AbstractPAR-1 kinases are required for polarity in diverse cell types, such as epithelial cells, whe...
SummaryTo form regulated barriers between body compartments, epithelial cells polarize into apical a...
PAR-1 kinases are required for polarity in diverse cell types, such as epithelial cells, where they ...
Epithelial sheets line the surfaces of the body and our organs, acting as semi-permeable barriers be...
PAR-1 kinases are required for polarity in diverse cell types, such as epithelial cells, where they ...
AbstractEstablishment and maintenance of apical basal cell polarity are essential for epithelial mor...
Polarity of many cell types is controlled by a protein complex consisting of Bazooka/PAR-3 (Baz), PA...
SummaryBazooka (PAR-3), PAR-6, and aPKC form a complex that plays a key role in the polarization of ...