4.8 Article

The Axin1 scaffold protein promotes formation of a degradation complex for c-Myc

Journal

EMBO JOURNAL
Volume 28, Issue 5, Pages 500-512

Publisher

WILEY
DOI: 10.1038/emboj.2008.279

Keywords

Axin1; c-Myc; GSK3 beta; Pin1; PP2A-B56 alpha

Funding

  1. NIH/NCI [R01-CA100855]
  2. Department of Defense [BC061306]

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Expression of the c-Myc proto-oncoprotein is tightly regulated in normal cells. Phosphorylation at two conserved residues, threonine58 (T58) and serine62 (S62), regulates c-Myc protein stability. In cancer cells, c-Myc can become aberrantly stabilized associated with altered T58 and S62 phosphorylation. A complex signalling cascade involving GSK3b kinase, the Pin1 prolyl isomerase, and the PP2A-B56a phosphatase controls phosphorylation at these sites. We report here a novel role for the tumour suppressor scaffold protein Axin1 in facilitating the formation of a degradation complex for c-Myc containing GSK3b, Pin1, and PP2A-B56a. Although knockdown of Axin1 decreases the association of c-Myc with these proteins, reduces T58 and enhances S62 phosphorylation, and increases c-Myc stability, acute expression of Axin1 reduces c-Myc levels and suppresses c-Myc transcriptional activity. Moreover, the regulation of c-Myc by Axin1 is impaired in several tested cancer cell lines with known stabilization of c-Myc or loss of Axin1. This study provides critical insight into the regulation of c-Myc expression, how this can be disrupted in three cancer types, and adds to our knowledge of the tumour suppressor activity of Axin1.

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