Viral RNA recognition by LGP2 and MDA5, and activation of signaling through step-by-step conformational changes

Author:

Duic Ivana12,Tadakuma Hisashi34,Harada Yoshie3,Yamaue Ryo12,Deguchi Katashi1,Suzuki Yuki5,Yoshimura Shige H1,Kato Hiroki26,Takeyasu Kunio1,Fujita Takashi126ORCID

Affiliation:

1. Division of Integrated Life Science, Graduate School of Biostudies, Kyoto University, Kyoto 606-8501, Japan

2. Laboratory of Molecular Genetics, Institute for Frontier Life and Medical Sciences, Kyoto University, Kyoto 606-8397, Japan

3. Division of Protein Chemistry, Institute for Protein Research, Osaka University, Osaka 565-0871, Japan

4. School of Life Science and Technology, ShanghaiTech University, Shanghai 201210, China

5. Frontier Research Institute for Interdisciplinary Sciences, Tohoku University, Sendai 980-8578, Japan

6. Institute for Cardiovascular Immunology, University Hospital Bonn, University of Bonn, Bonn 53127, Germany

Abstract

Abstract Cytoplasmic RIG-I-like receptor (RLR) proteins in mammalian cells recognize viral RNA and initiate an antiviral response that results in IFN-β induction. Melanoma differentiation-associated protein 5 (MDA5) forms fibers along viral dsRNA and propagates an antiviral response via a signaling domain, the tandem CARD. The most enigmatic RLR, laboratory of genetics and physiology (LGP2), lacks the signaling domain but functions in viral sensing through cooperation with MDA5. However, it remains unclear how LGP2 coordinates fiber formation and subsequent MDA5 activation. We utilized biochemical and biophysical approaches to observe fiber formation and the conformation of MDA5. LGP2 facilitated MDA5 fiber assembly. LGP2 was incorporated into the fibers with an average inter-molecular distance of 32 nm, suggesting the formation of hetero-oligomers with MDA5. Furthermore, limited protease digestion revealed that LGP2 induces significant conformational changes on MDA5, promoting exposure of its CARDs. Although the fibers were efficiently dissociated by ATP hydrolysis, MDA5 maintained its active conformation to participate in downstream signaling. Our study demonstrated the coordinated actions of LGP2 and MDA5, where LGP2 acts as an MDA5 nucleator and requisite partner in the conversion of MDA5 to an active conformation. We revealed a mechanistic basis for LGP2-mediated regulation of MDA5 antiviral innate immune responses.

Funder

Ministry of Education, Culture, Sports, Science and Technology

Japan Agency for Medical Research and Development

Japan Society for the Promotion of Science

Grant-in-Aid for Scientific Research on Innovative Areas

Fund for the Promotion of Joint International Research

University of Bonn

Publisher

Oxford University Press (OUP)

Subject

Genetics

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