错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Mycobacterium tuberculosis IDH-PPARγ interaction suppresses GPX4 to drive macrophage ferroptosis and sustain persistent infection

  • Wenyuan Pu,
  • Ximeng Zhang,
  • Man Tian,
  • Zhiyi He,
  • Jin Zhu,
  • Shiyu Song,
  • Li Li,
  • Panpan Lian,
  • Renwei Lu,
  • Ranran Wang,
  • Kai Lin,
  • Chaode Gu,
  • Junaid Wazir,
  • Caiyun Wang,
  • Yixuan Sun,
  • Jing Yang,
  • Yingwei Zhang,
  • Huimei Chen,
  • Enrico Petretto,
  • Wangsen Cao,
  • Rongrong Fan,
  • Eckardt Treuter,
  • Xia Zhang,
  • Nannan Liu,
  • Airong Yang,
  • Xinchun Chen,
  • Hongwei Wang,
  • Zhiqiang Huang

摘要

Mycobacterium tuberculosis (M.tb) actively reprograms host lipid metabolism during infection; however, the underlying mechanism remains poorly understood. How M.tb manipulates macrophage lipid metabolism to induce lipid peroxidation and ferroptosis for bacterial persistence remains a fundamental question. Here, using single-cell RNA sequencing and proteomics, we show that M.tb infection substantially upregulates peroxisome proliferator-activated receptor gamma (PPARγ) in macrophages. Mechanistically, M.tb isocitrate dehydrogenase (IDH) interacts with PPARγ and impairs its proteasomal degradation. Elevated PPARγ suppresses glutathione peroxidase 4 (Gpx4) expression by recruiting the NCOR/SMRT corepressor complex to the Gpx4 promoter, resulting in increased lipid peroxidation and ferroptosis in infected macrophages. In mice, PPARγ knockout or pharmacological inhibition decreases lung inflammation and M.tb burden, restores GPX4 expression, and enhances macrophage survival. Our findings reveal a mechanism by which M.tb exploits the IDH-PPARγ axis to induce ferroptosis and sustain persistent infection, identifying therapeutic targets for tuberculosis treatment through disruption of this interaction.