Frizzled7 is arguably the most studied member of the Frizzled family, which are the cognate Wnt receptors. Frizzled7 is highly conserved through evolution, from Hydra through to humans, and is expressed in diverse organisms, tissues and human disease contexts. Frizzled receptors can homo- or hetero-polymerise and associate with several co-receptors to transmit Wnt signalling. Notably, Frizzled7 can transmit signalling via multiple Wnt transduction pathways and bind to several different Wnt ligands, Frizzled receptors and co-receptors. These promiscuous binding and functional properties are thought to underlie the pivotal role Frizzled7 plays in embryonic developmental and stem cell function. Recent studies have identified that Frizzled7 is ...
Cells sense and respond to their environment via receptors embedded in the plasma membrane. Receptor...
Dissecting the impact of Frizzled receptors in Wnt / β-catenin signaling of human mesenchymal stem c...
Wnt signalling plays a critical role in development, producing signals that regulate stem cell self-...
Frizzled7 is arguably the most studied member of the Frizzled family, which are the cognate Wnt rece...
Frizzled7 is arguably the most studied member of the Frizzled family, which are the cognate Wnt rece...
Frizzled7 activates β-catenin-dependent and β-catenin-independent Wnt signalling pathways, is highly...
The Wnt signaling is of paramount pathophysiological importance. Despite showing promising anticance...
WNT signaling is a highly conserved pathway with dual roles in development and disease. In human plu...
Frizzled receptors (FZDs) are a family of seven-span transmembrane receptors with hallmarks of G pro...
Frizzled receptors (FZDs) are 7-pass transmembrane proteins and members of the G protein-coupled rec...
We investigated whether one of the Wnt receptors, frizzled-7 (FZD7), functions in the canonical Wnt ...
AbstractWe investigated whether one of the Wnt receptors, frizzled-7 (FZD7), functions in the canoni...
Triple negative breast cancer (TNBC) is one of the most difficult malignancy to treat due to a lack ...
Wnt/beta-catenin signaling is of fundamental importance in the regulation of self-renewal, migration...
Frizzled is the earliest discovered glycosylated Wnt protein receptor and is critical for the initia...
Cells sense and respond to their environment via receptors embedded in the plasma membrane. Receptor...
Dissecting the impact of Frizzled receptors in Wnt / β-catenin signaling of human mesenchymal stem c...
Wnt signalling plays a critical role in development, producing signals that regulate stem cell self-...
Frizzled7 is arguably the most studied member of the Frizzled family, which are the cognate Wnt rece...
Frizzled7 is arguably the most studied member of the Frizzled family, which are the cognate Wnt rece...
Frizzled7 activates β-catenin-dependent and β-catenin-independent Wnt signalling pathways, is highly...
The Wnt signaling is of paramount pathophysiological importance. Despite showing promising anticance...
WNT signaling is a highly conserved pathway with dual roles in development and disease. In human plu...
Frizzled receptors (FZDs) are a family of seven-span transmembrane receptors with hallmarks of G pro...
Frizzled receptors (FZDs) are 7-pass transmembrane proteins and members of the G protein-coupled rec...
We investigated whether one of the Wnt receptors, frizzled-7 (FZD7), functions in the canonical Wnt ...
AbstractWe investigated whether one of the Wnt receptors, frizzled-7 (FZD7), functions in the canoni...
Triple negative breast cancer (TNBC) is one of the most difficult malignancy to treat due to a lack ...
Wnt/beta-catenin signaling is of fundamental importance in the regulation of self-renewal, migration...
Frizzled is the earliest discovered glycosylated Wnt protein receptor and is critical for the initia...
Cells sense and respond to their environment via receptors embedded in the plasma membrane. Receptor...
Dissecting the impact of Frizzled receptors in Wnt / β-catenin signaling of human mesenchymal stem c...
Wnt signalling plays a critical role in development, producing signals that regulate stem cell self-...