Abstract

The sensing of double-stranded RNA (dsRNA) in the liver is important for antiviral defenses but can also contribute to sterile inflammation during liver injury. Hepatocytes are often the target of viral infection and are easily injured by inflammatory insults. Here we sought to establish the pathways involved in the production of type I interferons (IFN-I) in response to extracellular poly(I:C), a dsRNA mimetic, in hepatocytes. This was of interest because hepatocytes are long-lived and, unlike most immune cells that readily die after activation with dsRNA, are not viewed as cells with robust antimicrobial capacity. We found that poly(I:C) leads to rapid up-regulation of inducible nitric oxide synthase (iNOS), double-stranded RNA-dependent protein kinase (PKR), and Src. The production of IFN-β was dependent on iNOS, PKR, and Src and partially dependent on TLR3/Trif. iNOS and Src up-regulation was partially dependent on TLR3/Trif but entirely dependent on PKR. The phosphorylation of TLR3 on tyrosine 759 was shown to increase in parallel to IFN-β production in an iNOS- and Src-dependent manner, and Src was found to directly interact with TLR3 in the endosomal compartment of poly(I:C)-treated cells. Furthermore, we identified a robust NO/cGMP/PKG-dependent feedforward pathway for the amplification of iNOS expression. These data identify iNOS/NO as an integral component of IFN-β production in response to dsRNA in hepatocytes in a pathway that involves the coordinated activities of TLR3/Trif and PKR.

Highlights

  • The innate immune system responds rapidly to molecular patterns from invading micro-organisms or damaged tissue through pattern recognition receptors expressed by both immune cells and non-immune cell types [1,2,3,4,5]

  • We show that IFN-␤ production in response to poly(I:C) is entirely inducible nitric oxide synthase (iNOS)-dependent and that NO exerts a feedforward up-regulation on iNOS expression in a cGMP/PKG-dependent manner. iNOS/NO promotes TLR3 Tyr759 phosphorylation through an Src-dependent mechanism associated with a direct interaction of Src with TLR3 localized to the endosomal compartment

  • Poly(I:C) Stimulates TLR3-Tyr759 Phosphorylation and IFN-␤ Production and Up-regulates Expression of Src and PKR in Hepatocytes—It has been shown previously in macrophages that the iNOS/Src axis is involved in doublestranded RNA (dsRNA)-induced TLR3Tyr759 phosphorylation and IFN-I up-regulation [7, 29]

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Summary

Introduction

The innate immune system responds rapidly to molecular patterns from invading micro-organisms or damaged tissue through pattern recognition receptors expressed by both immune cells and non-immune cell types [1,2,3,4,5]. DsRNA induces TLR3 Tyr759 phosphorylation to promote IFN-␤ secretion that is dependent on the up-regulation of iNOS, which activates Src [7]. Poly(I:C) Stimulates TLR3-Tyr759 Phosphorylation and IFN-␤ Production and Up-regulates Expression of Src and PKR in Hepatocytes—It has been shown previously in macrophages that the iNOS/Src axis is involved in dsRNA-induced TLR3Tyr759 phosphorylation and IFN-I up-regulation [7, 29].

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