Organochlorine Pesticide Dieldrin Suppresses Cellular Interferon-Related Antiviral Gene Expression

Author:

Russo Max1,Humes Sara T2,Figueroa Ariana M1,Tagmount Abderrahmane3,Zhang Ping1,Loguinov Alex3,Lednicky John A2,Sabo-Attwood Tara2,Vulpe Chris D3ORCID,Liu Bin1ORCID

Affiliation:

1. Department of Pharmacodynamics, University of Florida, College of Pharmacy, Gainesville, Florida 32610, USA

2. Department of Environmental and Global Health, University of Florida, College of Public Health and Health Professions, Gainesville, Florida 32610, USA

3. Department of Physiological Sciences, University of Florida, College of Veterinary Medicine, Gainesville, Florida 32610, USA

Abstract

Abstract Organochlorine pesticides (OCPs) are persistent pollutants linked to diverse adverse health outcomes. Environmental exposure to OCPs has been suggested to negatively impact the immune system but their effects on cellular antiviral responses remain unknown. Transcriptomic analysis of N27 rat dopaminergic neuronal cells unexpectedly detected high level expression of genes in the interferon (IFN)-related antiviral response pathways including the IFN-induced protein with tetratricopeptide repeats 1 and 2 (Ifit1/2) and the MX Dynamin Like GTPases Mx1 and Mx2. Interestingly, treatment of N27 cells with dieldrin markedly downregulated the expression of many of these genes. Dieldrin exterted a similar effect in inhibiting IFIT2 and MX1 gene expression in human SH-SY5Y neuronal cells induced by an RNA viral mimic, polyinosinic: polycytidylic acid (poly I:C) and IFIT2/3 gene expression in human pulmonary epithelial cells exposed to human influenza H1N1 virus. Mechanistically, dieldrin induced a rapid rise in levels of intracellular reactive oxygen species (iROS) and a decrease in intracellular glutathione (GSH) levels in SH-SY5Y cells. Treatment with N-acetylcysteine, an antioxidant and GSH biosynthesis precursor, effectively blocked both dieldrin-induced increases in iROS and its inhibition of poly I:C-induced upregulation of IFIT and MX gene expression, suggesting a role for intracellular oxidative status in dieldrin’s modulation of antiviral gene expression. This study demonstrates that dieldrin modulates key genes of the cellular innate immune responses that are normally involved in the host’s cellular defense against viral infections. Our findings have potential relevance to understanding the organismal effects of environmentally persistent organochlorine contaminants on the mammalian cellular immune system.

Funder

University of Florida College of Pharmacy PROSPER Fund

Publisher

Oxford University Press (OUP)

Subject

Toxicology

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