Sex differences in the recognition of and innate antiviral responses to Seoul virus in Norway rats

Michele F. Hannah, Vladimir B. Bajic, Sabra L. Klein

Research output: Contribution to journalArticlepeer-review

76 Scopus citations

Abstract

Among rodents that carry hantaviruses, more males are infected than females. Male rats also have elevated copies of Seoul virus RNA and reduced transcription of immune-related genes in the lungs than females. To further characterize sex differences in antiviral defenses and whether these differences are mediated by gonadal hormones, we examined viral RNA in the lungs, virus shedding in saliva, and antiviral defenses among male and female rats that were intact, gonadectomized neonatally, or gonadectomized in adulthood. Following inoculation with Seoul virus, high amounts viral RNA persisted longer in lungs from intact males than intact females. Removal of the gonads in males reduced the amount of viral RNA to levels comparable with intact females at 40 days post-inoculation (p.i.). Intact males shed more virus in saliva than intact females 15 days p.i.; removal of the gonads during either the neonatal period or in adulthood increased virus shedding in females and decreased virus shedding in males. Induction of pattern recognition receptors (PRRs; Tlr7 and Rig-I), expression of antiviral genes (Myd88, Visa, Jun, Irf7, Ifnβ, Ifnar1, Jak2, Stat3, and Mx2), and production of Mx protein was elevated in the lungs of intact females compared with intact males. Gonadectomy had more robust effects on the induction of PRRs than on downstream IFNβ or Mx2 expression. Putative androgen and estrogen response elements are present in the promoters of several of these antiviral genes, suggesting the propensity for sex steroids to directly affect dimorphic antiviral responses against Seoul virus infection.

Original languageEnglish (US)
Pages (from-to)503-516
Number of pages14
JournalBrain, Behavior, and Immunity
Volume22
Issue number4
DOIs
StatePublished - May 2008

Keywords

  • Biodefense
  • Estrogen
  • Hemorrhagic fever
  • Interferon
  • Mx
  • RNA helicase
  • Seoul virus
  • Sex steroid
  • TLR3
  • TLR7
  • Testosterone

ASJC Scopus subject areas

  • Immunology
  • Endocrine and Autonomic Systems
  • Behavioral Neuroscience

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