Zhu Qing, Liang Chengyu
Program in Molecular and Cellular Oncogenesis, The Wistar Institute, Philadelphia, Pennsylvania, USA.
Autophagy. 2025 Jun 30:1-2. doi: 10.1080/15548627.2025.2522130.
Viral subversion of macroautophagy/autophagy is a well-established immune evasion strategy, with BCL2 homologs from γ-herpesviruses serving as prototypical inhibitors through BECN1 (beclin 1) sequestration. Yet the full spectrum of their functions remains incompletely understood. In our recent study, we uncovered a non-canonical role for the Kaposi's sarcoma-associated herpesvirus (KSHV)-encoded BCL2 homolog (vBCL2) during late lytic replication. Unexpectedly, vBCL2 hijacks the host NDP kinase NME2/NM23-H2 to activate the mitochondrial fission GTPase DNM1L/DRP1, promoting mitochondrial fragmentation. This organelle remodeling dismantles MAVS-mediated antiviral signaling and facilitates virion assembly. A vBCL2 mutant unable to bind NME2 fails to induce fission or complete the viral lifecycle. These findings provide a long-sought answer to why vBCL2 is indispensable during lytic infection, and uncover a new immune evasion strategy centered on mitochondrial control. Our work expands the current view of virus-organelle interactions beyond canonical autophagy control and offers new targets for therapeutic intervention.
病毒对巨自噬/自噬的颠覆是一种成熟的免疫逃逸策略,γ-疱疹病毒的BCL2同源物通过隔离BECN1(贝林1)作为典型抑制剂。然而,它们功能的全貌仍未完全了解。在我们最近的研究中,我们发现卡波西肉瘤相关疱疹病毒(KSHV)编码的BCL2同源物(vBCL2)在晚期裂解复制过程中具有非经典作用。出乎意料的是,vBCL2劫持宿主NDP激酶NME2/NM23-H2来激活线粒体裂变GTP酶DNM1L/DRP1,促进线粒体碎片化。这种细胞器重塑破坏了MAVS介导的抗病毒信号传导并促进病毒体组装。无法结合NME2的vBCL2突变体无法诱导裂变或完成病毒生命周期。这些发现为vBCL2在裂解感染期间为何不可或缺提供了长期寻求的答案,并揭示了一种以线粒体控制为中心的新免疫逃逸策略。我们的工作扩展了目前对病毒-细胞器相互作用的看法,超越了经典的自噬控制,并为治疗干预提供了新的靶点。