FAM134B Restricts African Swine Fever Virus Capsid Assembly via Reticulophagy and Its Antiviral Activity is Antagonized by the Viral Virulence‐Associated Factor pMGF300‐2R

African swine fever (ASF), caused by African swine fever virus (ASFV), is a devastating viral disease in domestic pigs and wild boar. ASFV is a large DNA virus whose capsid assembly takes place within perinuclear viral factories (VFs). Accumulating evidence has demonstrated that reticulophagy confers antiviral activity against multiple RNA viruses. Nevertheless, the roles of reticulophagy in DNA virus replication and viral immunoevasion mechanisms remain largely uncharacterized. Here, we revealed that FAM134B, a reticulophagy receptor, markedly inhibits the maturation of ASFV in VFs. Mechanistically, FAM134B interacts with the major viral capsid proteins p72 and pA137R, facilitating their delivery to lysosomes for reticulophagy-mediated degradation and thus blocking ASFV capsid assembly. Additionally, we found that ASFV exploits its virulence-associated factor pMGF300-2R to target FAM134B and enhance viral replication. Further investigations revealed that pMGF300-2R binds to FAM134B and triggers its autophagic degradation via the C-terminal LC3-interacting region (LIR) motif. Importantly, the MGF300-2R-deleted ASFV mutant exhibited significantly reduced replication and virulence compared with wild-type ASFV in pigs, which was attributed to increased FAM134B expression. Collectively, this study establishes the first mechanistic link between reticulophagy and DNA virus replication and underscores the critical role of FAM134B-mediated reticulophagy in host defense against ASFV infection.

Authors

Institutions

Publication Details

Journal
Advanced Science
Published
2026-09-16
DOI
https://doi.org/10.1002/advs.77741
Primary Topic
Animal Disease Management and Epidemiology
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

FAM134B Restricts African Swine Fever Virus Capsid Assembly via Reticulophagy and Its Antiviral Activity is Antagonized by the Viral Virulence‐Associated Factor pMGF300‐2R

Hua‐Ji Qiu, Xianfeng Zhang, Jing Zhang, Tao Wang et al.
Advanced Science
Animal Disease Management and Epidemiology
article

FAM134B Restricts African Swine Fever Virus Capsid Assembly via Reticulophagy and Its Antiviral Activity is Antagonized by the Viral Virulence‐Associated Factor pMGF300‐2R

Hua‐Ji Qiu, Xianfeng Zhang, Jing Zhang, Tao Wang, Rui Luo, Zhanhao Lu, Jing Lan, Yuan Sun, Lian‐Feng Li, Ruojia Huang
article en

Abstract

African swine fever (ASF), caused by African swine fever virus (ASFV), is a devastating viral disease in domestic pigs and wild boar. ASFV is a large DNA virus whose capsid assembly takes place within perinuclear viral factories (VFs). Accumulating evidence has demonstrated that reticulophagy confers antiviral activity against multiple RNA viruses. Nevertheless, the roles of reticulophagy in DNA virus replication and viral immunoevasion mechanisms remain largely uncharacterized. Here, we revealed that FAM134B, a reticulophagy receptor, markedly inhibits the maturation of ASFV in VFs. Mechanistically, FAM134B interacts with the major viral capsid proteins p72 and pA137R, facilitating their delivery to lysosomes for reticulophagy-mediated degradation and thus blocking ASFV capsid assembly. Additionally, we found that ASFV exploits its virulence-associated factor pMGF300-2R to target FAM134B and enhance viral replication. Further investigations revealed that pMGF300-2R binds to FAM134B and triggers its autophagic degradation via the C-terminal LC3-interacting region (LIR) motif. Importantly, the MGF300-2R-deleted ASFV mutant exhibited significantly reduced replication and virulence compared with wild-type ASFV in pigs, which was attributed to increased FAM134B expression. Collectively, this study establishes the first mechanistic link between reticulophagy and DNA virus replication and underscores the critical role of FAM134B-mediated reticulophagy in host defense against ASFV infection.

Advanced Science
Harbin Veterinary Research Institute (CN)
National Natural Science Foundation of China
Good health and well-being
Openalex Percentile: Top 9%
Animal Disease Management and Epidemiology
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.