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Ratiometric Biosensors that Measure Mitochondrial Redox State and ATP in Living Yeast Cells
Published on: July 22, 2013
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.
Abstract:
Many intracellular signalling events are accompanied by generation of reactive oxygen species in cells. Oxidation of protein thiol groups is an emerging theme in signal-transduction research. We have found that MEKK1 [MAPK (mitogen-activated protein kinase)/ERK (extracellular-signal-regulated kinase) kinase kinase 1], an upstream activator of the SAPK/JNK (stress-activated protein kinase/c-Jun N-terminal kinase) pathway, is directly inhibited by cysteine alkylation using NEM (N-ethylmaleimide). The related kinase, ASK1 (apoptosis signal-regulating kinase 1), was not inhibited, but was instead activated by NEM. Inhibition of MEKK1 requires a single unique cysteine residue (Cys1238) in the ATP-binding domain of MEKK1. Oxidative stress induced by menadione (2-methyl-1,4-naphthoquinone) also inhibited MEKK1, but activated ASK1, in cells. MEKK1 inhibition by menadione also required Cys1238. Oxidant-inhibited MEKK1 was re-activated by dithiothreitol and glutathione, supporting reversible cysteine oxidation as a mechanism. Using various chemical probes, we excluded modification by S-nitrosylation or oxidation of cysteine to sulphenic acid. Oxidant-inhibited MEKK1 migrated normally on non-reducing gels, excluding the possibility of intra- or inter-molecular disulphide bond formation. MEKK1 was inhibited by glutathionylation in vitro, and MEKK1 isolated from menadione-treated cells was shown by MS to be modified by glutathione on Cys1238. Our results support a model whereby the redox environment within the cell selectively regulates stress signalling through MEKK1 versus ASK1, and may thereby participate in the induction of apoptosis by oxidative stress.
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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