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  2. The ASFV CD2v protein inhibits apoptosis by inducing proteasomal degradation of BimEL via activation of the TPL2-MEK-ERK signaling pathway

The ASFV CD2v protein inhibits apoptosis by inducing proteasomal degradation of BimEL via activation of the TPL2-MEK-ERK signaling pathway

  • J Virol. 2026 Mar 24;100(3):e0195225. doi: 10.1128/jvi.01952-25.
Jianyu Zeng # 1 2 Xin Zhang # 1 2 Jingting Zhao 1 2 Qiang Li 1 2 Zhiyong Xiang 1 2 Fengyang Shi 1 2 Hua Wang 1 2 Wenlian Weng 1 2 Qiongqiong Zhou 1 2 Peng Gao 1 2 Lei Zhou 1 2 Xinna Ge 1 2 Jun Han 1 2 Xin Guo 1 2 Yongning Zhang 1 2 Hanchun Yang 1 2
Affiliations

Affiliations

  • 1 State Key Laboratory of Veterinary Public Health and Safety, College of Veterinary Medicine, China Agricultural University, Beijing, China.
  • 2 Key Laboratory of Animal Epidemiology of Ministry of Agriculture and Rural Affairs, College of Veterinary Medicine, China Agricultural University, Beijing, China.
  • # Contributed equally.
Abstract

African swine fever virus (ASFV) employs sophisticated regulatory strategies to manipulate host cell Apoptosis, a process critical for its pathogenesis and immune evasion; however, the mechanisms underlying this process remain incompletely understood. Here, we report a novel mechanism by which the ASFV-encoded envelope protein CD2v suppresses Apoptosis by activating the TPL2 (tumor progression locus 2)-MEK (mitogen-activated protein kinase kinase)-ERK (extracellular signal-regulated kinase) signaling axis, leading to proteasomal degradation of the pro-apoptotic protein BimEL in primary porcine alveolar macrophages and wild boar lung (WSL) cells. We further demonstrated that ASFV Infection triggers ERK1/2-dependent phosphorylation and degradation of BimEL, a process independent of viral replication and mediated by viral structural components. A targeted screen identified CD2v as the key viral protein driving this pathway. Both the purified extracellular domain of CD2v (Asp17-Tyr206) and virion-associated CD2v activated TPL2-MEK-ERK signaling without requiring internalization into cells, resulting in BimEL downregulation and subsequent suppression of Apoptosis. Crucially, CRISPR-Cas9-mediated knockout of CD2v abolished ASFV-induced ERK1/2 activation and consequential BimEL degradation. Furthermore, we discovered that soluble CD2v released from ASFV-infected cells can activate this signaling axis in uninfected bystander cells, thereby inhibiting Apoptosis distantly. This paracrine function, alongside its intrinsic role in directly infected cells, enables CD2v to establish a pro-survival microenvironment conducive to viral propagation. Our findings uncover a multifaceted anti-apoptotic mechanism employed by ASFV, expanding the functional repertoire of CD2v and providing new insights into ASFV pathogenesis with potential therapeutic implications.IMPORTANCEThis study elucidates a distinct mechanism of Apoptosis inhibition by African swine fever virus (ASFV), a pathogen that causes a devastating disease in swine. We identify the ASFV CD2v protein as a key suppressor of cell death that operates by hijacking the host TPL2-MEK-ERK signaling pathway to degrade the pro-apoptotic protein BimEL. Importantly, CD2v mediates this effect not only within infected cells but also, in a soluble form, on surrounding uninfected bystander cells. This dual action helps create a protective, pro-survival cellular environment that facilitates viral spread and persistence. Understanding this novel apoptotic suppression mechanism advances our knowledge of ASFV-host interactions and highlights potential new avenues for therapeutic intervention.

Keywords

African swine fever virus (ASFV); BimEL; ERK; MEK; TPL2; apoptosis; porcine alveolar macrophages (PAMs).

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