CSNK2B modulates IRF1 binding to functional DNA elements and promotes basal and agonist-induced antiviral signaling

Author:

Matsumoto Moe1,Modliszewski Jennifer L2,Shinozaki Kotomi1,Maezawa Reona1,Perez Vincent M2,Ishikawa Yuki1,Suzuki Ryosuke3,McKnight Kevin L4,Masaki Takahiro5,Hirai-Yuki Asuka6,Kohara Michinori1,Lemon Stanley M4,Selitsky Sara R2,Yamane Daisuke1ORCID

Affiliation:

1. Department of Diseases and Infection, Tokyo Metropolitan Institute of Medical Science , Setagaya-ku, Tokyo  156-8506, Japan

2. QuantBio , LLC, Durham , NC  27705, USA

3. Department of Virology II, National Institute of Infectious Diseases , 162-8640  Tokyo , Japan

4. Lineberger Comprehensive Cancer Center, and Departments of Medicine and Microbiology & Immunology, The University of North Carolina at Chapel Hill , Chapel Hill, NC  27599-7292, USA

5. Department of Laboratory Medicine, The Jikei University School of Medicine , Tokyo  105-8461, Japan

6. Management Department of Biosafety, Laboratory Animal and Pathogen Bank, National Institute of Infectious Diseases , 162-8640  Tokyo , Japan

Abstract

Abstract Interferon regulatory factor 1 (IRF1) is a critical component of cell-intrinsic innate immunity that regulates both constitutive and induced antiviral defenses. Due to its short half-life, IRF1 function is generally considered to be regulated by its synthesis. However, how IRF1 activity is controlled post-translationally has remained poorly characterized. Here, we employed a proteomics approach to identify proteins interacting with IRF1, and found that CSNK2B, a regulatory subunit of casein kinase 2, interacts directly with IRF1 and constitutively modulates its transcriptional activity. Genome-wide CUT&RUN analysis of IRF1 binding loci revealed that CSNK2B acts generally to enhance the binding of IRF1 to chromatin, thereby enhancing transcription of key antiviral genes, such as PLAAT4 (also known as RARRES3/RIG1/TIG3). On the other hand, depleting CSNK2B triggered abnormal accumulation of IRF1 at AFAP1 loci, thereby down-regulating transcription of AFAP1, revealing contrary effects of CSNK2B on IRF1 binding at different loci. AFAP1 encodes an actin crosslinking factor that mediates Src activation. Importantly, CSNK2B was also found to mediate phosphorylation-dependent activation of AFAP1-Src signaling and exert suppressive effects against flaviviruses, including dengue virus. These findings reveal a previously unappreciated mode of IRF1 regulation and identify important effector genes mediating multiple cellular functions governed by CSNK2B and IRF1.

Funder

Japan Society for the Promotion of Science

Japan Agency for Medical Research and Development

Publisher

Oxford University Press (OUP)

Subject

Genetics

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