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MESH1-mediated coenzyme A degradation drives ferroptosis sensitivity and muscle pathology.

Journal articles  - Journal Article
Lin, C-C; Rose, J; Mestre, AA; Ding, C-KC; Chen, S-Y; Choy, SM; Goh, KY; Jiang, W; Lee, WX; Jiang, Q; Chen, Y; Sun, T; Wu, J; Chen, Y ...
Published in: J Clin Invest
June 1, 2026

CoA facilitates fatty acid synthesis, energy production, gene regulation, and antioxidant function. While CoA biosynthesis is well characterized, the mechanisms governing CoA degradation remain poorly understood. Here, we identify the Metazoan Homolog of SpoT, MESH1, as a CoA phosphatase that dephosphorylates CoA at the 3' position of the ribose ring to form dephospho-CoA. Recent studies have shown that CoA, similar to glutathione, is a cysteine-derived metabolite that protects cells against ferroptosis. Ferroptosis induced by blocking cystine import depletes CoA biosynthesis, while CoA restoration rescues cells from ferroptosis. We found that MESH1 knockdown preserved CoA levels by preventing its degradation, contributing to ferroptosis protection, indicating the bifunctional role of MESH1 in regulating CoA and previously reported NADPH. Mechanistically, MESH1 knockdown elevates CoA levels, maintaining a functional mitochondrial thioredoxin system, thereby preventing mitochondrial lipid peroxidation. In Drosophila, we found that dMesh1 overexpression leads to ferroptosis-mediated muscle atrophy, which can be rescued by increasing CoA and NADPH levels. Taken together, these findings establish MESH1 as a key phosphatase that governs ferroptosis sensitivity by coordinating CoA and NADPH homeostasis, unveiling a link between CoA degradation, mitochondrial integrity, and muscle health.

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Published In

J Clin Invest

DOI

EISSN

1558-8238

Publication Date

June 1, 2026

Volume

136

Issue

11

Location

United States

Related Subject Headings

  • Phosphoprotein Phosphatases
  • Muscle, Skeletal
  • Immunology
  • Humans
  • Ferroptosis
  • Drosophila melanogaster
  • Drosophila Proteins
  • Coenzyme A
  • Animals
  • 42 Health sciences
 

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Lin, C.-C., Rose, J., Mestre, A. A., Ding, C.-K., Chen, S.-Y., Choy, S. M., … Chi, J.-T. (2026). MESH1-mediated coenzyme A degradation drives ferroptosis sensitivity and muscle pathology. J Clin Invest, 136(11). https://doi.org/10.1172/JCI202212
Lin, Chao-Chieh, Joshua Rose, Alexander A. Mestre, Chien-Kung Cornelia Ding, Ssu-Yu Chen, Sze Mun Choy, Kah Yong Goh, et al. “MESH1-mediated coenzyme A degradation drives ferroptosis sensitivity and muscle pathology.J Clin Invest 136, no. 11 (June 1, 2026). https://doi.org/10.1172/JCI202212.
Lin C-C, Rose J, Mestre AA, Ding C-KC, Chen S-Y, Choy SM, et al. MESH1-mediated coenzyme A degradation drives ferroptosis sensitivity and muscle pathology. J Clin Invest. 2026 Jun 1;136(11).
Lin, Chao-Chieh, et al. “MESH1-mediated coenzyme A degradation drives ferroptosis sensitivity and muscle pathology.J Clin Invest, vol. 136, no. 11, June 2026. Pubmed, doi:10.1172/JCI202212.
Lin C-C, Rose J, Mestre AA, Ding C-KC, Chen S-Y, Choy SM, Goh KY, Jiang W, Lee WX, Jiang Q, Chen Y, Sun T, Wu J, Oh Y, Jeong P, Hong J, Chua K, Fitzgerald MC, Zhang G-F, Tang H-W, Zhou P, Chi J-T. MESH1-mediated coenzyme A degradation drives ferroptosis sensitivity and muscle pathology. J Clin Invest. 2026 Jun 1;136(11).

Published In

J Clin Invest

DOI

EISSN

1558-8238

Publication Date

June 1, 2026

Volume

136

Issue

11

Location

United States

Related Subject Headings

  • Phosphoprotein Phosphatases
  • Muscle, Skeletal
  • Immunology
  • Humans
  • Ferroptosis
  • Drosophila melanogaster
  • Drosophila Proteins
  • Coenzyme A
  • Animals
  • 42 Health sciences