Oxidative stress inhibits MEKK1 by site-specific glutathionylation in the ATP-binding domain

Janet V Cross1, Dennis J Templeton

  • 1Department of Pathology, University of Virginia Medical School, PO Box 800214, Charlottesville, VA 22908-0214, U.S.A.

Insights

Reactive oxygen species regulate cellular stress signaling. MEKK1 kinase is inhibited by oxidative stress via cysteine modification, while ASK1 is activated, impacting apoptosis.

Area of Science:

  • Cellular signaling
  • Oxidative stress
  • Protein modification

Background:

  • Intracellular signaling pathways often involve reactive oxygen species.
  • Oxidation of protein thiols is a key mechanism in signal transduction.
  • MEKK1 (MAPK/ERK kinase kinase 1) activates the SAPK/JNK pathway.

Purpose of the Study:

  • To investigate the role of cysteine oxidation in MEKK1 and ASK1 regulation by oxidative stress.
  • To elucidate the specific cysteine residue involved in MEKK1 inhibition.
  • To understand how cellular redox state influences stress signaling.

Main Methods:

  • Inhibition of MEKK1 and ASK1 using N-ethylmaleimide (NEM).
  • Induction of oxidative stress with menadione.
  • Site-directed mutagenesis to identify critical cysteine residues.
  • Re-activation assays using dithiothreitol and glutathione.
  • Mass spectrometry (MS) to identify protein modifications.

Main Results:

  • MEKK1 was inhibited by NEM and menadione via Cys1238.
  • ASK1 was activated by NEM and menadione.
  • Oxidant-induced MEKK1 inhibition was reversible by reducing agents.
  • MS confirmed glutathionylation of MEKK1 at Cys1238.
  • S-nitrosylation, disulphide bond formation were excluded.

Conclusions:

  • Cellular redox environment selectively regulates MEKK1 and ASK1 activity.
  • MEKK1 inhibition by cysteine oxidation is a key mechanism in oxidative stress response.
  • This redox-sensitive regulation may contribute to apoptosis induction.

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