<p>The mitochondrial unfolded protein response (UPR<sup>mt</sup>), a mitochondria-to-nucleus retrograde pathway that promotes the maintenance of mitochondrial function in response to stress, plays an important role in promoting lifespan extension in <i>Caenorhabditis elegans</i><sup><CitationRef CitationID="CR1">1</CitationRef>,<CitationRef CitationID="CR2">2</CitationRef></sup>. However, its role in mammals, including its contributions to development or cell fate decisions, remains largely unexplored. Here, we show that transient UPR<sup>mt</sup> activation occurs during somatic reprogramming in mouse embryonic fibroblasts. We observe a c-Myc-dependent, transient decrease in mitochondrial proteolysis, accompanied by UPR<sup>mt</sup> activation at the early phase of pluripotency acquisition. UPR<sup>mt</sup> impedes the mesenchymal-to-epithelial transition (MET) through c-Jun, thereby inhibiting pluripotency acquisition. Mechanistically, c-Jun enhances the expression of acetyl-CoA metabolic enzymes and reduces acetyl-CoA levels, thereby affecting levels of H3K9Ac, linking mitochondrial signalling to the epigenetic state of the cell and cell fate decisions. c-Jun also decreases the occupancy of H3K9Ac at MET genes, further inhibiting MET. Our findings reveal the crucial role of mitochondrial UPR-modulated MET in pluripotent stem cell plasticity. Additionally, we demonstrate that the UPR<sup>mt</sup> promotes cancer cell migration and invasion by enhancing epithelial-to-mesenchymal transition (EMT). Given the crucial role of EMT in tumour metastasis<sup><CitationRef CitationID="CR3">3</CitationRef>,<CitationRef CitationID="CR4">4</CitationRef></sup>, our findings on the connection between the UPR<sup>mt</sup> and EMT have important pathological implications and reveal potential targets for tumour treatment.</p>

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The mitochondrial unfolded protein response inhibits pluripotency acquisition and mesenchymal-to-epithelial transition in somatic cell reprogramming

  • Zhongfu Ying,
  • Yanmin Xin,
  • Zihuang Liu,
  • Tianxin Tan,
  • Yile Huang,
  • Yingzhe Ding,
  • Xuejun Hong,
  • Qiuzhi Li,
  • Chong Li,
  • Jingyi Guo,
  • Gaoshen Liu,
  • Qi Meng,
  • Shihe Zhou,
  • Wenxin Li,
  • Yao Yao,
  • Ge Xiang,
  • Linpeng Li,
  • Yi Wu,
  • Yang Liu,
  • Miaohui Mu,
  • Zifeng Ruan,
  • Wenxi Liang,
  • Junwei Wang,
  • Yaofeng Wang,
  • Baojian Liao,
  • Yang Liu,
  • Wuming Wang,
  • Gang Lu,
  • Dajiang Qin,
  • Duanqing Pei,
  • Wai-Yee Chan,
  • Xingguo Liu

摘要

The mitochondrial unfolded protein response (UPRmt), a mitochondria-to-nucleus retrograde pathway that promotes the maintenance of mitochondrial function in response to stress, plays an important role in promoting lifespan extension in Caenorhabditis elegans1,2. However, its role in mammals, including its contributions to development or cell fate decisions, remains largely unexplored. Here, we show that transient UPRmt activation occurs during somatic reprogramming in mouse embryonic fibroblasts. We observe a c-Myc-dependent, transient decrease in mitochondrial proteolysis, accompanied by UPRmt activation at the early phase of pluripotency acquisition. UPRmt impedes the mesenchymal-to-epithelial transition (MET) through c-Jun, thereby inhibiting pluripotency acquisition. Mechanistically, c-Jun enhances the expression of acetyl-CoA metabolic enzymes and reduces acetyl-CoA levels, thereby affecting levels of H3K9Ac, linking mitochondrial signalling to the epigenetic state of the cell and cell fate decisions. c-Jun also decreases the occupancy of H3K9Ac at MET genes, further inhibiting MET. Our findings reveal the crucial role of mitochondrial UPR-modulated MET in pluripotent stem cell plasticity. Additionally, we demonstrate that the UPRmt promotes cancer cell migration and invasion by enhancing epithelial-to-mesenchymal transition (EMT). Given the crucial role of EMT in tumour metastasis3,4, our findings on the connection between the UPRmt and EMT have important pathological implications and reveal potential targets for tumour treatment.