Cereblon promotes influenza A virus replication through AMPK ubiquitination

Influenza A and B viruses (IAV and IBV) continually threaten global health, with IAV posing a risk of emerging pandemics. Rapid viral evolution makes current treatments less effective, highlighting the urgent need for broad-spectrum antivirals. Targeting host factors essential for viral replication may offer a highly promising broad-spectrum antiviral strategy. In this context, cereblon (CRBN), a substrate adaptor of the CRL4 E3 ubiquitin ligase complex, is found to promote both IAV and IBV replication as a key pro-viral host factor. Mechanistically, CRBN targets and degrades AMP-activated protein kinase (AMPK) via the proteasome. This CRBN-driven degradation shifts the metabolism of infected cells toward anabolism, promoting lipid droplet (LD) formation and creating a microenvironment conducive to viral replication. Genetic depletion or inhibition of CRBN stabilizes AMPK, significantly reduces LD formation, and effectively suppresses the replication of various IAV and IBV strains in vivo , demonstrating its broad-spectrum potential. Notably, Crbn knockout mice show marked resistance to lethal IAV infection. CRBN inhibition with immunomodulatory imide drugs, known CRBN inhibitors, significantly decreases IAV replication in vivo . This research underscores CRBN as a crucial regulator of host metabolism during IAV infection, revealing the CRBN-AMPK axis as a promising target for developing host-directed antivirals against IAV.

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Publication Details

Journal
Biochemistry and Biophysics Reports
Published
2026-09-28
DOI
https://doi.org/10.1016/j.bbrep.2026.102815
Primary Topic
interferon and immune responses
Type
article
Field-Weighted Citation Impact
0.00
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article

Cereblon promotes influenza A virus replication through AMPK ubiquitination

Kyoung‐Oh Cho, Ian Goodfellow, Don‐Kyu Kim, Tae‐Il Jeon et al.
Biochemistry and Biophysics Reports
interferon and immune responses
article

Cereblon promotes influenza A virus replication through AMPK ubiquitination

Kyoung‐Oh Cho, Ian Goodfellow, Don‐Kyu Kim, Tae‐Il Jeon, Thu Ha Nguyen, Dong Ju Lee, Dae‐Eun Cheong, Sunwoo Lee, Hae-Rang Seo, Myra Hosmillo, Hueng-Sik Choi, Hyung-Jun Kwon, Seong-Hun Jeong, Mahmoud Soliman, Muhammad Sharif, Chul-Seung Park
article en

Abstract

Influenza A and B viruses (IAV and IBV) continually threaten global health, with IAV posing a risk of emerging pandemics. Rapid viral evolution makes current treatments less effective, highlighting the urgent need for broad-spectrum antivirals. Targeting host factors essential for viral replication may offer a highly promising broad-spectrum antiviral strategy. In this context, cereblon (CRBN), a substrate adaptor of the CRL4 E3 ubiquitin ligase complex, is found to promote both IAV and IBV replication as a key pro-viral host factor. Mechanistically, CRBN targets and degrades AMP-activated protein kinase (AMPK) via the proteasome. This CRBN-driven degradation shifts the metabolism of infected cells toward anabolism, promoting lipid droplet (LD) formation and creating a microenvironment conducive to viral replication. Genetic depletion or inhibition of CRBN stabilizes AMPK, significantly reduces LD formation, and effectively suppresses the replication of various IAV and IBV strains in vivo , demonstrating its broad-spectrum potential. Notably, Crbn knockout mice show marked resistance to lethal IAV infection. CRBN inhibition with immunomodulatory imide drugs, known CRBN inhibitors, significantly decreases IAV replication in vivo . This research underscores CRBN as a crucial regulator of host metabolism during IAV infection, revealing the CRBN-AMPK axis as a promising target for developing host-directed antivirals against IAV.

Biochemistry and Biophysics ReportsVol. 48
Chonnam National University (KR), University of Cambridge (GB), Gwangju Institute of Science and Technology (KR), Addenbrooke's Hospital (GB), Korea Research Institute of Bioscience and Biotechnology (KR), Assiut University (EG)
Good health and well-being
Openalex Percentile: Top 19%
interferon and immune responses
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