Ca2+/Calmodulin and Apo-Calmodulin Both Bind to and Enhance the Tyrosine Kinase Activity of c-Src

Silviya R Stateva1, Valentina Salas2, Estefanía Anguita1

  • 1Department of Cancer Biology, Instituto de Investigaciones Biomédicas, Consejo Superior de Investigaciones Científicas and Universidad Autónoma de Madrid, c/ Arturo Duperier 4, E-28029, Madrid, Spain.

Plos One
|June 10, 2015
PubMed

Insights

Calmodulin (CaM) directly interacts with Src kinase. Ca2+-free CaM activates Src more strongly than Ca2+-bound CaM, suggesting CaM regulates Src activity independently of calcium levels.

Area of Science:

  • Biochemistry
  • Cell Biology
  • Molecular Oncology

Background:

  • Src family kinases are crucial for cellular processes and implicated in cancer when deregulated.
  • Calmodulin (CaM) is a key calcium-binding protein involved in cellular signaling.
  • Src kinase activity is known to be regulated by phosphorylation and potentially by calcium signals via CaM.

Purpose of the Study:

  • To investigate the direct interaction between CaM and Src kinase.
  • To determine the role of Ca2+ in CaM-mediated regulation of Src activity.
  • To explore the impact of CaM on Src auto-phosphorylation and kinase activity.

Main Methods:

  • In vitro and in vivo interaction studies between CaM and Src.
  • Inhibition assays using the CaM antagonist W-7.
  • Assessment of Src auto-phosphorylation and kinase activity under various conditions (e.g., with Ca2+/CaM, apo-CaM, EGFR activation, oxidative stress).

Main Results:

  • CaM directly interacts with Src in both Ca2+-dependent and Ca2+-independent manners.
  • The CaM antagonist W-7 inhibited Src activation induced by EGFR or hydrogen peroxide.
  • Ca2+/CaM complex activated Src, but Ca2+-free CaM (apo-CaM) demonstrated significantly higher activation of Src auto-phosphorylation and kinase activity.

Conclusions:

  • CaM directly binds and regulates Src kinase activity.
  • Src activation can be modulated by CaM independently of cytosolic Ca2+ levels.
  • Apo-CaM may play a more significant role in regulating Src activity than previously understood, offering new therapeutic targets.

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