Mitochondrial E3 ligase MARCH5 is a safeguard against DNA-PKcs-mediated immune signaling in mitochondria-damaged cells

  • Heo, June; 
  • Park, Yeon-Ji; 
  • Kim, Yonghyeon; 
  • Lee, Ho-Soo; 
  • Kim, Jeongah; 
  • ... Sun, Woong; 
  • 외 5명
Citations

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6
Citations

SCOPUS

6

초록

Mitochondrial dysfunction is important in various chronic degenerative disorders, and aberrant immune responses elicited by cytoplasmic mitochondrial DNA (mtDNA) may be related. Here, we developed mtDNA-targeted MTERF1-FokI and TFAM-FokI endonuclease systems to induce mitochondrial DNA double-strand breaks (mtDSBs). In these cells, the mtDNA copy number was significantly reduced upon mtDSB induction. Interestingly, in cGAS knockout cells, synthesis of interferon beta 1 and interferon-stimulated gene was increased upon mtDSB induction. We found that mtDSBs activated DNA-PKcs and HSPA8 in a VDAC1-dependent manner. Importantly, the mitochondrial E3 ligase MARCH5 bound active DNA-PKcs in cells with mtDSBs and reduced the type CYRILLIC CAPITAL LETTER BYELORUSSIAN-UKRAINIAN I interferon response through the degradation of DNA-PKcs. Likewise, mitochondrial damage caused by LPS treatment in RAW264.7 macrophage cells increased phospho-HSPA8 levels and the synthesis of mIFNB1 mRNA in a DNA-PKcs-dependent manner. Accordingly, in March5 knockout macrophages, phospho-HSPA8 levels and the synthesis of mIFNB1 mRNA were prolonged after LPS stimulation. Together, cytoplasmic mtDNA elicits a cellular immune response through DNA-PKcs, and mitochondrial MARCH5 may be a safeguard to prevent persistent inflammatory reactions.

키워드

DEPENDENT PROTEIN-KINASE; CYCLIC GMP-AMP; TRANSCRIPTION-FACTOR; MTDNA; INFLAMMASOME; DYNAMICS; RELEASE; REPAIR; RECOGNITION; MAINTENANCE
제목
Mitochondrial E3 ligase MARCH5 is a safeguard against DNA-PKcs-mediated immune signaling in mitochondria-damaged cells
저자
Heo, June; Park, Yeon-Ji; Kim, Yonghyeon; Lee, Ho-Soo; Kim, Jeongah; Kwon, Soon-Hwan; Kang, Myeong-Gyun; Rhee, Hyun-Woo; Sun, Woong; Lee, Jae-Ho; Cho, Hyeseong
DOI
10.1038/s41419-023-06315-9
발행일
2023-12-01
유형
Article
저널명
Cell Death & Disease
권
14
호
12