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Published on: March 1, 2011
In vitro suppression of inflammatory cytokine response by methionine sulfoximine
Tyler J Peters1,2, Amruta A Jambekar1, William S A Brusilow1,2
11Department of Biochemistry and Molecular Biology, Wayne State University School of Medicine, Scott Hall, 540 E. Canfield Ave, Detroit, MI 48201 USA.
Background:
The glutamine synthetase inhibitor methionine sulfoximine (MSO), shown previously to prevent death caused by an inflammatory liver response in mice, was tested on in vitro production of cytokines by mouse peritoneal macrophages triggered with lipopolysaccharide (LPS).
Results:
MSO significantly reduced the production of Interleukin 6 (IL-6) and Tumor Necrosis Factor Alpha (TNFα) at 4 and 6 h after LPS-treatment. This reduction did not result from decreased transcription of IL-6 and TNFα genes, and therefore appeared to result from post-transcriptional inhibition of synthesis of these cytokines. MSO treatment did not inhibit total protein synthesis and did not reduce the production of a third LPS-triggered cytokine CXCL1, so the effect was not a toxic or global downregulation of the LPS response. The anti-inflammatory effects of a glutamine synthetase inhibitor were seen even though the medium contained abundant (2 mM) glutamine, suggesting that the target for this activity was not glutamine synthetase. In agreement with this hypothesis, the L,R isomer of MSO, which does not inhibit glutamine synthetase and was previously thought to be inert, both significantly reduced IL-6 secretion in isolated macrophages and increased survival in a mouse model for inflammatory liver failure.
Conclusions:
Our findings provide evidence for a novel target of MSO. Future attempts to identify the additional target would therefore also provide a target for therapies to treat diseases involving damaging cytokine responses.
Insights
Methionine sulfoximine (MSO) reduces inflammatory cytokine production by inhibiting post-transcriptional synthesis. This suggests a novel therapeutic target for inflammatory diseases, even when glutamine is abundant.
Area of Science:
- Immunology
- Pharmacology
Background:
- Methionine sulfoximine (MSO), a glutamine synthetase inhibitor, previously protected mice from lethal inflammatory liver responses.
- Investigated MSO's in vitro effect on cytokine production by macrophages stimulated with lipopolysaccharide (LPS).
Purpose of the Study:
- To investigate the mechanism of MSO's anti-inflammatory effects.
- To identify potential novel therapeutic targets for inflammatory diseases.
Main Methods:
- Mouse peritoneal macrophages were treated with LPS and MSO.
- Cytokine production (IL-6, TNFα, CXCL1) and gene transcription were measured.
- Protein synthesis was assessed.
- The L,R isomer of MSO was tested in vitro and in vivo.
Main Results:
- MSO significantly reduced Interleukin 6 (IL-6) and Tumor Necrosis Factor Alpha (TNFα) production post-LPS stimulation.
- Inhibition occurred at the post-transcriptional level, not affecting gene transcription or total protein synthesis.
- MSO did not inhibit CXCL1 production, indicating a specific rather than global effect.
- The inert L,R isomer of MSO also reduced IL-6 secretion and improved survival in an inflammatory liver failure model, suggesting a non-glutamine synthetase target.
Conclusions:
- MSO exhibits anti-inflammatory properties through a novel mechanism, likely independent of glutamine synthetase inhibition.
- The findings identify a new target for MSO, potentially useful for treating diseases with damaging cytokine responses.
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