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Expression of COX-2 in platelet-monocyte interactions occurs via combinatorial regulation involving adhesion and cytokine signaling
Dan A. Dixon, … , Stephen M. Prescott, Guy A. Zimmerman
Dan A. Dixon, … , Stephen M. Prescott, Guy A. Zimmerman
Published October 2, 2006
Citation Information: J Clin Invest. 2006;116(10):2727-2738. https://doi.org/10.1172/JCI27209.
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Research Article Inflammation

Expression of COX-2 in platelet-monocyte interactions occurs via combinatorial regulation involving adhesion and cytokine signaling

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Abstract

Tight regulation of COX-2 expression is a key feature controlling eicosanoid production in atherosclerosis and other inflammatory syndromes. Adhesive interactions between platelets and monocytes occur in these conditions and deliver specific signals that trigger inflammatory gene expression. Using a cellular model of monocyte signaling induced by activated human platelets, we identified the central posttranscriptional mechanisms that regulate timing and magnitude of COX-2 expression. Tethering of monocytes to platelets and to purified P-selectin, a key adhesion molecule displayed by activated platelets, induces NF-κB activation and COX-2 promoter activity. Nevertheless, COX-2 mRNA is rapidly degraded, leading to aborted protein synthesis. Time-dependent signaling of monocytes induces a second phase of transcript accumulation accompanied by COX-2 enzyme synthesis and eicosanoid production. Here, generation of IL-1β, a proinflammatory cytokine, promoted stabilization of COX-2 mRNA by silencing of the AU-rich mRNA decay element (ARE) in the 3′-untranslated region (3'UTR) of the mRNA. Consistent with observed mRNA stabilization, activated platelets or IL-1β treatment induced cytoplasmic accumulation and enhanced ARE binding of the mRNA stability factor HuR in monocytes. These findings demonstrate that activated platelets induce COX-2 synthesis in monocytes by combinatorial signaling to transcriptional and posttranscriptional checkpoints. These checkpoints may be altered in disease and therefore useful as targets for antiinflammatory intervention.

Authors

Dan A. Dixon, Neal D. Tolley, Kristi Bemis-Standoli, Mark L. Martinez, Andrew S. Weyrich, Jason D. Morrow, Stephen M. Prescott, Guy A. Zimmerman

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Figure 9

Adhesion-dependent regulation of COX-2 expression in human monocytes by activated platelets.

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Adhesion-dependent regulation of COX-2 expression in human monocytes by ...
Cellular activation promotes rapid translocation of P-selectin to the platelet surface. Engagement of PSGL-1 on the monocyte surface by P-selectin mediates formation of heterotypic, mixed-cell aggregates and outside-in signaling that induces the transcription of COX-2. Subsequent rapid decay and translational silencing of COX-2 mRNA controls protein expression and prostaglandin synthesis. Prolonged adhesion-dependent signaling promotes the expression of IL-1β, which modifies the influence of COX-2 ARE by promoting increased cytoplasmic levels of the mRNA stability factor HuR, resulting in increased mRNA t1/2 and enhanced COX-2 protein synthesis. Details are discussed in the text. AAAAn, polyadenylated tail.

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