TY - JOUR
T1 - ARF6-Regulated Endocytosis of Growth Factor Receptors Links Cadherin-Based Adhesion to Canonical Wnt Signaling in Epithelia
AU - Pellon-Cardenas, Oscar
AU - Clancy, James
AU - Uwimpuhwe, Henriette
AU - D'Souza-Schorey, Crislyn
PY - 2013/8
Y1 - 2013/8
N2 - Wnt signaling has an essential role in embryonic development as well as stem/progenitor cell renewal, and its aberrant activation is implicated in many diseases, including several cancers. β-Catenin is a critical component of Wnt-mediated transcriptional activation. Here we show that ARF6 activation during canonical Wnt signaling promotes the intracellular accumulation of β-Catenin via a mechanism that involves the endocytosis of growth factor receptors and robust activation of extracellular signalregulated kinase(ERK). ERK promotes casein kinase 2-mediated phosphorylation of α-Catenin, leading to destabilization of the adherens junctions and a subsequent increase in cytoplasmic pools of active β-Catenin and E-cadherin. ERK also phosphorylates LRP6 to amplify the Wnt transduction pathway. The aforementioned Wnt-ERK signaling pathway initiates lumen filling of epithelial cysts by promoting cell proliferation in three-dimensional cell cultures. This study elucidates a mechanism responsible for the switch in β-Catenin functions in cell adhesion at the adherens junctions and Wnt-induced nuclear signaling.
AB - Wnt signaling has an essential role in embryonic development as well as stem/progenitor cell renewal, and its aberrant activation is implicated in many diseases, including several cancers. β-Catenin is a critical component of Wnt-mediated transcriptional activation. Here we show that ARF6 activation during canonical Wnt signaling promotes the intracellular accumulation of β-Catenin via a mechanism that involves the endocytosis of growth factor receptors and robust activation of extracellular signalregulated kinase(ERK). ERK promotes casein kinase 2-mediated phosphorylation of α-Catenin, leading to destabilization of the adherens junctions and a subsequent increase in cytoplasmic pools of active β-Catenin and E-cadherin. ERK also phosphorylates LRP6 to amplify the Wnt transduction pathway. The aforementioned Wnt-ERK signaling pathway initiates lumen filling of epithelial cysts by promoting cell proliferation in three-dimensional cell cultures. This study elucidates a mechanism responsible for the switch in β-Catenin functions in cell adhesion at the adherens junctions and Wnt-induced nuclear signaling.
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U2 - 10.1128/MCB.01698-12
DO - 10.1128/MCB.01698-12
M3 - Article
C2 - 23716594
AN - SCOPUS:84880677234
SN - 0270-7306
VL - 33
SP - 2963
EP - 2975
JO - Molecular and cellular biology
JF - Molecular and cellular biology
IS - 15
ER -