Toxoplasma gondii Prevents Chromatin Remodeling Initiated by TLR-Triggered Macrophage Activation

  • Leng J
  • Butcher B
  • Egan C
  • et al.
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Abstract

Macrophages infected with the opportunistic protozoan Toxoplasma gondii are unable to up-regulate many proinflammatory cytokine genes, including TNF (TNF-α), upon stimulation with LPS and other TLR ligands. In this study, we examined the influence of T. gondii on transcription factors associated with TNF-α transcription, as well as phosphorylation and acetylation of histone H3 at distal and proximal regions of the TNF-α promoter. During LPS stimulation, we found that Toxoplasma blocks nuclear accumulation of transcription factor c-Jun, but not that of cAMP response element-binding protein or NF-κB. However, chromatin immunoprecipitation studies revealed that binding of all of these transcription factors to the TNF promoter was decreased by T. gondii infection. Furthermore, the parasite blocked LPS-induced Ser10 phosphorylation and Lys9/Lys14 acetylation of histone H3 molecules associated with distal and proximal regions of the TNF-α promoter. Our results show that Toxoplasma inhibits TNF-α transcription by interfering with chromatin remodeling events required for transcriptional activation at the TNF promoter, revealing a new mechanism by which a eukaryotic pathogen incapacitates proinflammatory cytokine production during infection.

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APA

Leng, J., Butcher, B. A., Egan, C. E., Abi Abdallah, D. S., & Denkers, E. Y. (2009). Toxoplasma gondii Prevents Chromatin Remodeling Initiated by TLR-Triggered Macrophage Activation. The Journal of Immunology, 182(1), 489–497. https://doi.org/10.4049/jimmunol.182.1.489

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