Breast cancer-specific mutations in CK1epsilon inhibit Wnt/beta-catenin and activate the Wnt/Rac1/JNK and NFAT

Silvie Foldynová-Trantírková1, Petra Sekyrová, Katerina Tmejová

  • 1Biology Centre AS CR, v,v,i, AND University of South Bohemia, Branisovska 31, Ceske Budejovice, Czech Republic. fosil@paru.cas.cz

Abstract

Insights

Mutations in casein kinase 1 epsilon (CK1epsilon) found in breast cancer disrupt Wnt/beta-catenin signaling while promoting other Wnt pathways. This impacts cell adhesion and migration, potentially driving cancer development.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Cell Signaling

Background:

  • Breast cancer is a prevalent malignancy in women.
  • Mutations in casein kinase 1 epsilon (CK1epsilon) are observed in breast cancer.
  • CK1epsilon plays a key role in regulating Wnt signaling cascades.

Purpose of the Study:

  • To investigate how CK1epsilon mutations interfere with Wnt pathway signaling.
  • To determine the effect of CK1epsilon mutations on breast cancer cell behavior.
  • To elucidate the molecular mechanisms underlying CK1epsilon's role in breast cancer.

Main Methods:

  • In silico modeling of CK1epsilon mutations.
  • In vitro and in vivo kinase activity assays of CK1epsilon mutants.
  • Reporter and small GTPase assays to analyze Wnt pathway branches.
  • Cell adhesion and migration assays in MCF7 cells.

Main Results:

  • CK1epsilon mutations impair autophosphorylation at Thr 44, affecting kinase activity.
  • Mutated CK1epsilon acts as a loss-of-function in the Wnt/beta-catenin pathway.
  • CK1epsilon mutants activate noncanonical Wnt/Rac-1 and NFAT pathways.
  • Inhibition of CK1 in MCF7 cells decreased cell adhesion and E-cadherin expression, promoting migration.

Conclusions:

  • Breast cancer-associated CK1epsilon mutations suppress Wnt/beta-catenin signaling.
  • Mutated CK1epsilon promotes Wnt/Rac-1/JNK and Wnt/NFAT pathways.
  • These pathway alterations contribute to breast cancer development by affecting cell adhesion and migration.
  • The molecular mechanism involves interference with CK1epsilon autophosphorylation at Thr 44.

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