4.5 Article

Down's-syndrome-related kinase Dyrk1A modulates the p120-catenin-Kaiso trajectory of the Wnt signaling pathway

Journal

JOURNAL OF CELL SCIENCE
Volume 125, Issue 3, Pages 561-569

Publisher

COMPANY BIOLOGISTS LTD
DOI: 10.1242/jcs.086173

Keywords

Dyrk1A; Hipk; Siamois; Wnt11; p120-catenin

Categories

Funding

  1. National Institute of Health [RO1GM52112]
  2. Texas Advanced Research Project Grant [003657-0008-2006]
  3. University of Texas M.D. Anderson Cancer Center National Cancer Institute [CA-16672]
  4. William Randolf Hearst Foundation
  5. University of Texas [P50 CA070907]

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The Wnt pathways contribute to many processes in cancer and development, with beta-catenin being a key canonical component. p120-catenin, which is structurally similar to beta-catenin, regulates the expression of certain Wnt target genes, relieving repression conferred by the POZ- and zinc-finger-domain-containing transcription factor Kaiso. We have identified the kinase Dyrk1A as a component of the p120-catenin Kaiso trajectory of the Wnt pathway. Using rescue and other approaches in Xenopus laevis embryos and mammalian cells, we found that Dyrk 1 A positively and selectively modulates p120-catenin protein levels, thus having an impact on p120-catenin and Kaiso (and canonical Wnt) gene targets such as siamois and wnt11. The Dyrk1A gene resides within the Down's syndrome critical region, which is amplified in Down's syndrome. A consensus Dyrk phosphorylation site in p120-catenin was identified, with a mutant mimicking phosphorylation exhibiting the predicted enhanced capacity to promote endogenous Wnt-11 and Siamois expression, and gastrulation defects. In summary, we report the biochemical and functional relationship of Dyrk1A with the p120-catenin Kaiso signaling trajectory, with a linkage to canonical Wnt target genes. Conceivably, this work might also prove relevant to understanding the contribution of Dyrk1A dosage imbalance in Down's syndrome.

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