Abstract
Background: Activated protein C (APC) has been introduced as a therapeutic agent for treatment of patients with severe sepsis due to its unique anticoagulant and anti-inflammatory properties in the vascular system. In this study we investigated novel targets for the anti-inflammatory action of APC in human macrophages. Methods: Using a genome-wide approach, effects of APC on the expression profile in inflammatory activated human macrophages were analyzed. Results: We identified, for the first time, genes that are specifically regulated by APC under inflammatory conditions, such as chromatin binding protein 4B (CHMP4B) and p300/CBP-associated factor (PCAF), thus indicating a role of APC in the epigenetic control of gene transcription. A functional assay showed the influence of APC in the acetyltransferase/ deacetylase activity of nuclear extracts from inflamed macrophages. Conclusion: Our data sheds new light on APC targets in inflammation and opens new lines of investigation that may be explored in order to further elucidate its unique molecule properties. © 2010 Pereira, et al.
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CITATION STYLE
Pereira, C. P., Bachli, E. B., Schaer, D. J., & Schoedon, G. (2010). Transcriptome analysis revealed unique genes as targets for the anti-inflammatory action of activated protein C in human macrophages. PLoS ONE, 5(10). https://doi.org/10.1371/journal.pone.0015352
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