Infection-specific phosphorylation of glutamyl-prolyl tRNA synthetase induces antiviral immunity
- Authors
- Lee, Eun-Young; Lee, Hyun-Cheol; Kim, Hyun-Kwan; Jang, Song Yee; Park, Seong-Jun; Kim, Yong-Hoon; Kim, Jong Hwan; Hwang, Jungwon; Kim, Jae-Hoon; Kim, Tae-Hwan; Abul Arif; Kim, Seon-Young; Choi, Young-Ki; Lee, Cheolju; Lee, Chul-Ho; Jung, Jae U.; Fox, Paul L.; Kim, Sunghoon; Lee, Jong-Soo; Kim, Myung Hee
- Issue Date
- 2016-11
- Publisher
- NATURE PUBLISHING GROUP
- Citation
- NATURE IMMUNOLOGY, v.17, no.11, pp.1252 - 1262
- Abstract
- The mammalian cytoplasmic multi-tRNA synthetase complex (MSC) is a depot system that regulates non-translational cellular functions. Here we found that the MSC component glutamyl-prolyl-tRNA synthetase (EPRS) switched its function following viral infection and exhibited potent antiviral activity. Infection-specific phosphorylation of EPRS at Ser990 induced its dissociation from the MSC, after which it was guided to the antiviral signaling pathway, where it interacted with PCBP2, a negative regulator of mitochondrial antiviral signaling protein (MAVS) that is critical for antiviral immunity. This interaction blocked PCBP2-mediated ubiquitination of MAVS and ultimately suppressed viral replication. EPRS-haploid (Eprs(+/-)) mice showed enhanced viremia and inflammation and delayed viral clearance. This stimulus-inducible activation of MAVS by EPRS suggests an unexpected role for the MSC as a regulator of immune responses to viral infection.
- Keywords
- RIG-I; TRANSLATIONAL CONTROL; INNATE IMMUNITY; NONCANONICAL FUNCTION; INTERFERON-GAMMA; MAVS DEGRADATION; UBIQUITIN LIGASE; RESPONSES; COMPLEX; BINDING; RIG-I; TRANSLATIONAL CONTROL; INNATE IMMUNITY; NONCANONICAL FUNCTION; INTERFERON-GAMMA; MAVS DEGRADATION; UBIQUITIN LIGASE; RESPONSES; COMPLEX; BINDING
- ISSN
- 1529-2908
- URI
- https://pubs.kist.re.kr/handle/201004/123471
- DOI
- 10.1038/ni.3542
- Appears in Collections:
- KIST Article > 2016
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