WNT/Frizzled receptor (FZD) signaling pathways are pivotal for physiological and pathophysiological processes. In humans, the complexity of WNT/FZD signaling is based on 19 WNTs, 10 FZDs and at least two (co)receptors (LRP5/6) mediating supposably four different signaling cascades. The detailed investigation of the specific function of the different initiating components is primarily hampered by the lack of most WNT proteins in a purified form. Therefore, we constructed and examined a chimeric protein of WNT3a and FZD4 as a suitable approach to overcome this obstacle for future studies of the specificity of other WNT/FZD combinations. Furthermore, we produced four different reporter HEK 293 cell lines to quantify the induced activation of t...
Mutations in components of the Wnt pathways are a frequent cause of many human diseases, particularl...
Frizzled receptors are the mediators of the wnt canonical and non-canonical pathways, which play fun...
Mouse F9 cells differentiate into primitive endoderm (PrE) following the activation of the canonical...
WNT/Frizzled receptor (FZD) signaling pathways are pivotal for physiological and pathophysiological ...
The Wingless/Int1 (Wnt) signaling system plays multiple, essential roles in embryonic development, t...
The wingless/int1 (WNT)/Frizzled (FZD) family of signal transduction pathways is highly conserved a...
Animals’ Wnt signaling pathways are highly preserved signal transduction pathways, which play a cruc...
The WNT signaling system governs critical processes during embryonic development and tissue homeosta...
The differential activation of Wnt pathways (canonical: Wnt/-catenin; non-canonical: planar cell pol...
AbstractWnts control mammalian developmental morphogenesis and are critical for adult stem cell main...
Wnt signalling plays a critical role in development, producing signals that regulate stem cell self-...
Signaling via the conserved WNT/β-CATENIN pathway controls diverse developmental processes. To explo...
Wnt/β-catenin signaling is of fundamental importance in the regulation of self-renewal, migration/in...
Wnt/beta-catenin signaling is of fundamental importance in the regulation of self-renewal, migration...
Cells sense and respond to their environment via receptors embedded in the plasma membrane. Receptor...
Mutations in components of the Wnt pathways are a frequent cause of many human diseases, particularl...
Frizzled receptors are the mediators of the wnt canonical and non-canonical pathways, which play fun...
Mouse F9 cells differentiate into primitive endoderm (PrE) following the activation of the canonical...
WNT/Frizzled receptor (FZD) signaling pathways are pivotal for physiological and pathophysiological ...
The Wingless/Int1 (Wnt) signaling system plays multiple, essential roles in embryonic development, t...
The wingless/int1 (WNT)/Frizzled (FZD) family of signal transduction pathways is highly conserved a...
Animals’ Wnt signaling pathways are highly preserved signal transduction pathways, which play a cruc...
The WNT signaling system governs critical processes during embryonic development and tissue homeosta...
The differential activation of Wnt pathways (canonical: Wnt/-catenin; non-canonical: planar cell pol...
AbstractWnts control mammalian developmental morphogenesis and are critical for adult stem cell main...
Wnt signalling plays a critical role in development, producing signals that regulate stem cell self-...
Signaling via the conserved WNT/β-CATENIN pathway controls diverse developmental processes. To explo...
Wnt/β-catenin signaling is of fundamental importance in the regulation of self-renewal, migration/in...
Wnt/beta-catenin signaling is of fundamental importance in the regulation of self-renewal, migration...
Cells sense and respond to their environment via receptors embedded in the plasma membrane. Receptor...
Mutations in components of the Wnt pathways are a frequent cause of many human diseases, particularl...
Frizzled receptors are the mediators of the wnt canonical and non-canonical pathways, which play fun...
Mouse F9 cells differentiate into primitive endoderm (PrE) following the activation of the canonical...