Target intelligence / Profile preview

Microsomal prostaglandin E synthase-1 (mPGES-1)

Target
mPGES-1
Molecular classification
Enzyme, Glutathione-dependent membrane-associated enzyme, Member of the MAPEG (Membrane Associated Proteins in Eicosanoid and Glutathione metabolism) superfamily
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Overview

Microsomal prostaglandin E synthase‑1 is an inducible membrane-bound enzyme that catalyzes the final step in the formation of prostaglandin E₂ from PGH₂ using glutathione as a cofactor. It is upregulated during inflammation alongside cyclooxygenase‑2 (COX‑2), making it central to pathological increases in PGE₂ associated with pain, fever, arthritis, and certain cancers. Unlike traditional NSAIDs or COXIBs—which block upstream steps affecting multiple eicosanoids—selective inhibition of mPGES–1 offers potential for anti-inflammatory therapy with improved safety due to sparing other physiologically important prostanoids. Its structure reveals unique features within the MAPEG family that support ongoing drug discovery efforts aimed at developing safer anti-inflammatory agents.

Other names
Prostaglandin E synthaseMPGES1PTGES (gene symbol)
02

Mechanism of action

Drugs targeting mPGES‑1 act primarily by: - Inhibiting conversion of PGH2 to PGE2, thereby reducing levels of this pro-inflammatory mediator without affecting other prostanoids as broadly as COX inhibitors do. - This selectivity is expected to reduce side effects compared to NSAIDs or COX‑2 inhibitors.

03

Biological functions

Catalyzes the terminal step in the biosynthesis of prostaglandin E2 (PGE2) from PGH2Inducible under inflammatory conditions; upregulated by pro-inflammatory cytokines such as IL1BPlays a key role in mediating inflammation, pain, fever responses
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Disease associations

Inflammation (including arthritis)Pain syndromesFever responseCancer progression and tumorigenesis (notably prostate and lung cancer)Potential roles in cardiovascular disease/remodeling after myocardial infarction
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Safety considerations

Potential safety concerns include:Possible impact on cardiac tissue remodeling post-myocardial infarction—animal studies suggest inhibition may worsen cardiac function after MI despite lowering PGE₂ levels.The full safety profile remains under investigation since no selective inhibitor has reached broad clinical use.
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Interacting drugs

Currently no selective mPGES‑1 inhibitors are approved for clinical use. However:

3 more in the full profile.

07

Biomarkers

No widely validated biomarkers for patient selection or efficacy monitoring are established yet. However:Expression levels of mPGES‑1 itself may serve as a biomarker for disease activity or drug response in research settings.PGE₂ levels could be monitored pharmacodynamically.

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