Abstract

Cytoplasmic caspase recruiting domain (CARD)-containing molecules often function in the induction of potent antimicrobial responses in order to protect mammalian cells from invading pathogens. Retinoic acid-induced gene-I (RIG-I) and nucleotide binding oligomerization domain 2 (NOD2) serve as key factors in the detection of viral and bacterial pathogens, and in the subsequent initiation of innate immune signals to combat infection. RIG-I and NOD2 share striking similarities in their cellular localization, both localize to membrane ruffles in non-polarized epithelial cells and both exhibit a close association with the junctional complex of polarized epithelia. Here we show that RIG-I and NOD2 not only colocalize to cellular ruffles and cell-cell junctions, but that they also form a direct interaction that is mediated by the CARDs of RIG-I and multiple regions of NOD2. Moreover, we show that RIG-I negatively regulates ligand-induced nuclear factor-κB (NF-κB) signaling mediated by NOD2, and that NOD2 negatively regulates type I interferon induction by RIG-I. We also show that the three main Crohn disease-associated mutants of NOD2 (1007fs, R702W, G908R) form an interaction with RIG-I and negatively regulate its signaling to a greater extent than wild-type NOD2. Our results show that in addition to their role in innate immune recognition, RIG-I and NOD2 form a direct interaction at actin-enriched sites within cells and suggest that this interaction may impact RIG-I- and NOD2-dependent innate immune signaling.

Highlights

  • Work suggests that nucleotide binding oligomerization domain 2 (NOD2) might play a role in viral detection [1])

  • We show that Retinoic acid-induced gene-I (RIG-I) and NOD2 alone (NOD)-2 colocalize to cellular ruffles and cell-cell junctions and form a direct interaction that is mediated by the caspase recruiting domain (CARD) of RIG-I and multiple regions of NOD2

  • We found that endogenous RIG-I and NOD2 colocalized to cellular junctions in confluent HT29 cells (Fig. 1A) and to actin-enriched membrane ruffles when HT29 cells were grown under subconfluent conditions

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Summary

Introduction

Work suggests that NOD2 might play a role in viral detection [1]). CARDs are protein-protein interaction modules that play key roles in apoptosis and inflammatory signaling. To further confirm a direct interaction between RIG-I and NOD2, we overexpressed full-length HA-tagged NOD2 in HEK293 cells and performed in vitro binding experiments with GST- RIG-I-CARDs (or GST alone) immobilized on glutathione-Sepharose beads in lysates of transfected cells.

Results
Conclusion

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