International Journal of Molecular Sciences (Nov 2018)

Genome-Wide Transcriptional and Functional Analysis of Human T Lymphocytes Treated with Benzo[<i>α</i>]pyrene

  • Marie Liamin,
  • Hélène Le Mentec,
  • Bertrand Evrard,
  • Laurence Huc,
  • Frédéric Chalmel,
  • Elisa Boutet-Robinet,
  • Eric Le Ferrec,
  • Lydie Sparfel

DOI
https://doi.org/10.3390/ijms19113626
Journal volume & issue
Vol. 19, no. 11
p. 3626

Abstract

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Polycyclic aromatic hydrocarbons (PAHs) are widely distributed environmental contaminants, known to affect T lymphocytes. However, the molecular targets and pathways involved in their immunotoxic effects in human T lymphocytes remain unknown. Here, we analyzed the gene expression profile of primary human T lymphocytes treated with the prototypical PAH, benzo[α]pyrene (B[α]P), using a microarray-based transcriptome analysis. After a 48 h exposure to B[α]P, we identified 158 genes differentially expressed in T lymphocytes, including not only genes well-known to be affected by PAHs such as the cytochromes P450 (CYP) 1A1 and 1B1, but also others not previously shown to be targeted by B[α]P such as genes encoding the gap junction beta (GJB)-2 and 6 proteins. Functional enrichment analysis revealed that these candidates were significantly associated with the aryl hydrocarbon (AhR) and interferon (IFN) signaling pathways; a marked alteration in T lymphocyte recruitment was also observed. Using functional tests in transwell migration experiments, B[α]P was then shown to significantly decrease the chemokine (C-X-C motif) ligand 12-induced chemotaxis and transendothelial migration of T lymphocytes. In total, this study opens the way to unsuspected responsive pathway of interest, i.e., T lymphocyte migration, thus providing a more thorough understanding of the molecular basis of the immunotoxicity of PAHs.

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