Threonine 209 phosphorylation on RUNX3 by Pak1 is a molecular switch for its dualistic functions

A Kumar1, M Singhal1, C Chopra1

  • 1Department of Biotechnology, Indian Institute of Technology Madras (IITM), Chennai, India.

Oncogene
|February 23, 2016
PubMed

Insights

P21 Activated Kinase 1 (Pak1) phosphorylates Runx3 at Threonine 209, switching its function from tumor suppressor to oncogene. This phosphorylation alters Runx3 localization and increases tumor growth, offering a potential therapeutic target.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cell Biology

Background:

  • P21 Activated Kinase 1 (Pak1) is an oncogenic kinase regulating cytoskeleton and cellular morphology.
  • Runx3, traditionally a tumor suppressor, exhibits oncogenic roles in various cancers, with unclear regulatory mechanisms.

Purpose of the Study:

  • To investigate the interaction between Pak1 and Runx3.
  • To elucidate the mechanism controlling Runx3's paradoxical functions in cancer.

Main Methods:

  • Mass spectrometry and site-directed mutagenesis to identify Runx3 phosphorylation site.
  • Development of a site-specific antibody for confirmation.
  • Functional studies on Runx3 phosphorylation.
  • In vivo tumor xenograft studies in nude mouse models.
  • Analysis of clinical samples.

Main Results:

  • Runx3 is a direct substrate of Pak1, with phosphorylation occurring at Threonine 209.
  • Threonine 209 phosphorylation causes Runx3 mislocalization from the nucleus to the cytoplasm, altering its function.
  • Runx3-T209E mutant cells exhibited increased tumorigenic potential in vivo.
  • Clinical samples suggest Threonine 209 phosphorylation is relevant in cancers where Runx3 is oncogenic.

Conclusions:

  • Runx3-Threonine 209 phosphorylation by Pak1 acts as a molecular switch, dictating Runx3's dualistic functions.
  • This phosphorylation is a potential therapeutic target for cancers where Runx3 plays an oncogenic role.

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