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◆ Nature Communications2025-11-18· Palmitoylation

Palmitoylation of TBK1 enhances the type I interferon signaling and strengthens anti-malarial immunity in mice

Zhongxin Han, Siyi Xiong, Ke Zeng, Zilong Xiao, Liying Zhang, Yufen Zhang, Jiaying Guo, Wenqiang Peng, Yingchao Xie, Weiwei Liu, Xiao Yu

原始摘要(英文原文)· Original abstract
Precise regulation of type I interferon signaling is crucial for effective immune defense against infectious diseases. However, the molecular mechanisms governing this pathway are not fully understood. Here, we show a function for palmitoylation in enhancing anti-malarial immune responses. Our findings reveal that ZDHHC9 enhances the type I interferon signaling by palmitoylating TBK1 at cysteine 292. Following infection with Plasmodium yoelii N67, the delicate balance between palmitoylation and depalmitoylation of TBK1 is disrupted. Specifically, upregulation of APT2 promotes persistent depalmitoylation of TBK1 and triggers its selective autophagic degradation via K48-linked polyubiquitination at lysine 251/372 by E3 ligase TRIM27. This process acts as a recognition signal for the cargo receptor NDP52, resulting in inhibition of the type I interferon pathway. Notably, inhibition of APT2 using ML349 elevates type I interferon levels and improves survival rates against N67 infection. Here, we show that targeting APT2-mediated TBK1 depalmitoylation is a potential therapeutic strategy for malaria and may also be applicable to other diseases driven by dysregulated type I interferon signaling. Anti-malarial immune responses involve type I IFN responses and innate immune pathways. Here the authors show the palmitoylation of TANK-binding kinase 1 (TBK1), a kinase which promotes the type I IFN pathway, is disrupted in malaria infection and that this disruption leads to less effective anti-malarial responses.
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Palmitoylation of TBK1 enhances the type I interferon signaling and strengthens anti-malarial immunity in mice — 科研速览 Science Skim