Pathogens can alter epithelial polarity by recruiting polarity proteins to the apical membrane, but how a change in protein localization is linked to polarity disruption is not clear. In this study, we used chemically induced dimerization to rapidly relocalize proteins from the cytosol to the apical surface. We demonstrate that forced apical localization of Par3, which is normally restricted to tight junctions, is sufficient to alter apical membrane identity through its interactions with phosphatidylinositol 3-kinase (PI3K) and the Rac1 guanine nucleotide exchange factor Tiam1. We further show that PI3K activity is required upstream of Rac1, and that simultaneously targeting PI3K and Tiam1 to the apical membrane has a synergistic ef...
Cell migration is key to fundamental processes ranging from wound healing to cancer. In directed cel...
In epithelial cells, establishment of apical-basal polarity and specification of distinct membrane d...
SummaryAtypical protein kinase C (aPKC) is a key apical-basal polarity determinant and Par complex c...
Pathogens can alter epithelial polarity by recruiting polarity proteins to the apical membrane, but...
Pathogens can alter epithelial polarity by recruiting polarity proteins to the apical membrane, but ...
Apical-basal polarization is essential for epithelial tissue formation, segregating cortical domains...
AbstractBackground: aPKC and PAR-1 are required for cell polarity in various contexts. In mammalian ...
Animal cells polarize their membranes into discrete functional domains required for a host of cellul...
AbstractProteins can be localized either by inclusion or exclusion, and the Par polarity proteins il...
The molecular mechanisms that integrate cellular polarity with tissue architecture during epithelial...
SummaryBackgroundThe establishment and maintenance of cell polarity is crucial for many biological f...
SummaryThe PAR complex, consisting of the evolutionarily conserved PAR-3, PAR-6, and aPKC, regulates...
AbstractThe mammalian homologs of the C. elegans partitioning-defective (Par) proteins have been dem...
Apical-basal polarization is essential for epithelial tissue formation, segregating cortical domains...
Apical-basal polarization is essential for epithelial tissue formation, segregating cortical domains...
Cell migration is key to fundamental processes ranging from wound healing to cancer. In directed cel...
In epithelial cells, establishment of apical-basal polarity and specification of distinct membrane d...
SummaryAtypical protein kinase C (aPKC) is a key apical-basal polarity determinant and Par complex c...
Pathogens can alter epithelial polarity by recruiting polarity proteins to the apical membrane, but...
Pathogens can alter epithelial polarity by recruiting polarity proteins to the apical membrane, but ...
Apical-basal polarization is essential for epithelial tissue formation, segregating cortical domains...
AbstractBackground: aPKC and PAR-1 are required for cell polarity in various contexts. In mammalian ...
Animal cells polarize their membranes into discrete functional domains required for a host of cellul...
AbstractProteins can be localized either by inclusion or exclusion, and the Par polarity proteins il...
The molecular mechanisms that integrate cellular polarity with tissue architecture during epithelial...
SummaryBackgroundThe establishment and maintenance of cell polarity is crucial for many biological f...
SummaryThe PAR complex, consisting of the evolutionarily conserved PAR-3, PAR-6, and aPKC, regulates...
AbstractThe mammalian homologs of the C. elegans partitioning-defective (Par) proteins have been dem...
Apical-basal polarization is essential for epithelial tissue formation, segregating cortical domains...
Apical-basal polarization is essential for epithelial tissue formation, segregating cortical domains...
Cell migration is key to fundamental processes ranging from wound healing to cancer. In directed cel...
In epithelial cells, establishment of apical-basal polarity and specification of distinct membrane d...
SummaryAtypical protein kinase C (aPKC) is a key apical-basal polarity determinant and Par complex c...