A new paradigm for regulation of protein phosphatase 2A function via Src and Fyn kinase-mediated tyrosine

Jean-Marie Sontag1, Diana Schuhmacher1, Goce Taleski1

  • 1School of Biomedical Sciences and Pharmacy, University of Newcastle, Callaghan, New South Wales, Australia.

Insights

Protein phosphatase 2A (PP2A) regulation is complex. New findings show Src family kinases phosphorylate PP2A at Tyr127 and Tyr284, impacting its function in Alzheimer's disease and cancer.

Area of Science:

  • Cellular Biology
  • Molecular Biology
  • Biochemistry

Background:

  • Protein phosphatase 2A (PP2A) is a key regulator of signal transduction.
  • PP2A dysfunction is implicated in cancer and Alzheimer's disease (AD).
  • PP2A regulation, particularly by tyrosine phosphorylation, is not fully understood.

Purpose of the Study:

  • To investigate novel phosphorylation sites on PP2A catalytic subunit (PP2Ac) regulated by Src family kinases (SFKs).
  • To elucidate the functional consequences of PP2Ac phosphorylation by SFKs.
  • To challenge the established model of PP2A inhibition via Tyr307 phosphorylation.

Main Methods:

  • Utilized PP2Ac phosphomutants and phosphosite-specific antibodies.
  • Investigated PP2Ac phosphorylation upon Src and Fyn activation.
  • Assessed PP2A interaction with SFKs and Bα subunit dissociation.
  • Examined SFK-mediated phosphorylation of Tau and ERK activation.

Main Results:

  • PP2Ac is phosphorylated on Tyr127 and Tyr284 by Src, and Tyr284 by Fyn.
  • These phosphorylations enhance PP2Ac interaction with SFKs.
  • SFK-mediated Y284 phosphorylation promotes Bα subunit dissociation, altering substrate specificity.
  • PP2Ac Y127/284F and Y284F mutants prevented SFK-mediated Tau phosphorylation (pathological hallmark of AD) and ERK activation (implicated in cancer).

Conclusions:

  • Novel PP2A regulatory mechanism involving SFK-mediated phosphorylation at Tyr127 and Tyr284 is identified.
  • This mechanism challenges the dogma of Tyr307 as the sole inhibitory phosphorylation site.
  • Dysregulated SFK signaling in cancer and AD may lead to altered PP2A phosphorylation, impacting key substrates like ERK and Tau.

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