The differential activation of Wnt pathways (canonical: Wnt/β-catenin; non-canonical: planar cell polarity (PCP), Wnt/Ca2+) depends on the cell-specific availability and regulation of Wnt receptors, called Frizzled (FZD). FZDs selectively recruit co-receptors to activate various downstream effectors. We established a proximity ligation assay (PLA) for the detection of endogenous FZD–co-receptor interactions and analyzed time-dependent Wnt pathway activation in cultured cells. Prostate cancer cells (PC-3) stimulated by Wnt ligands (Wnt5A, Wnt10B) were analyzed by Cy3-PLA for the co-localization of FZD6 and co-receptors (canonical: LRP6, non-canonical: ROR1) at the single-cell level. Downstream effector activation was assayed by immunocytoche...
Wnt/beta-catenin signaling is of fundamental importance in the regulation of self-renewal, migration...
The WNT signaling system governs critical processes during embryonic development and tissue homeosta...
<div><p>The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several fa...
The differential activation of Wnt pathways (canonical: Wnt/-catenin; non-canonical: planar cell pol...
WNT/Frizzled receptor (FZD) signaling pathways are piv-otal for physiological and pathophysiological...
Morphogens of the Wnt protein family are the secreted lipoglycoprotein ligands which initiate severa...
The processes of differentiation and self renewal in human pluripotent stem cells (hPSCs) is regulat...
Frizzled receptors are the mediators of the wnt canonical and non-canonical pathways, which play fun...
Cells sense and respond to their environment via receptors embedded in the plasma membrane. Receptor...
The seven-transmembrane-spanning receptors of the FZD1-10 class are bound and activated by the WNT f...
AbstractWnts control mammalian developmental morphogenesis and are critical for adult stem cell main...
The Wingless/Int1 (Wnt) signaling system plays multiple, essential roles in embryonic development, t...
Signaling via the conserved WNT/β-CATENIN pathway controls diverse developmental processes. To explo...
Wnts control mammalian developmental morphogenesis and are critical for adult stem cell maintenance....
The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several families o...
Wnt/beta-catenin signaling is of fundamental importance in the regulation of self-renewal, migration...
The WNT signaling system governs critical processes during embryonic development and tissue homeosta...
<div><p>The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several fa...
The differential activation of Wnt pathways (canonical: Wnt/-catenin; non-canonical: planar cell pol...
WNT/Frizzled receptor (FZD) signaling pathways are piv-otal for physiological and pathophysiological...
Morphogens of the Wnt protein family are the secreted lipoglycoprotein ligands which initiate severa...
The processes of differentiation and self renewal in human pluripotent stem cells (hPSCs) is regulat...
Frizzled receptors are the mediators of the wnt canonical and non-canonical pathways, which play fun...
Cells sense and respond to their environment via receptors embedded in the plasma membrane. Receptor...
The seven-transmembrane-spanning receptors of the FZD1-10 class are bound and activated by the WNT f...
AbstractWnts control mammalian developmental morphogenesis and are critical for adult stem cell main...
The Wingless/Int1 (Wnt) signaling system plays multiple, essential roles in embryonic development, t...
Signaling via the conserved WNT/β-CATENIN pathway controls diverse developmental processes. To explo...
Wnts control mammalian developmental morphogenesis and are critical for adult stem cell maintenance....
The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several families o...
Wnt/beta-catenin signaling is of fundamental importance in the regulation of self-renewal, migration...
The WNT signaling system governs critical processes during embryonic development and tissue homeosta...
<div><p>The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several fa...