Dependence of RIG-I nucleic acid-binding and ATP hydrolysis on activation of type i interferon response

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Abstract

Exogenous nucleic acids induce an innate immune response in mammalian host cells through activation of the retinoic acid-inducible gene I (RIG-I). We evaluated RIG-I protein for RNA binding and ATPase stimulation with RNA ligands to investigate the correlation with the extent of immune response through RIG-I activation in cells. RIG-I protein favored blunt-ended, double-stranded RNA (dsRNA) ligands over sticky-ended dsRNA. Moreover, the presence of the 5ʹ-triphosphate (5ʹ-ppp) moiety in dsRNA further enhanced binding affinity to RIG-I. Two structural motifs in RNA, blunt ends in dsRNA and 5ʹ-ppp, stimulated the ATP hydrolysis activity of RIG-I. These structural motifs also strongly induced IFN expression as an innate immune response in cells. Therefore, we suggest that IFN induction through RIG-I activation is mainly determined by structural motifs in dsRNA that increase its affinity for RIG-I protein and stimulate ATPase activity in RIG-I.

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Baek, Y. M., Yoon, S., Hwang, Y. E., & Kim, D. E. (2016). Dependence of RIG-I nucleic acid-binding and ATP hydrolysis on activation of type i interferon response. Immune Network, 16(4), 249–255. https://doi.org/10.4110/in.2016.16.4.249

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