Lipid Metabolism

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Pesini, A., Barriocanal-Casado, E., Compagnoni, G. M., Hidalgo-Gutierrez, A., Yanez, G., Bakkali, M., Chhonker, Y. S., Kleiner, G., Larrea, D., Tadesse, S., Lopez, L. C., Murry, D. J., Di Fonzo, A., Area-Gomez, E., & Quinzii, C. M. (2025). Coenzyme Q10 deficiency disrupts lipid metabolism by altering cholesterol homeostasis in neurons. Free Radical Biology and Medicine, 229, 441–457. https://doi.org/10.1016/j.freeradbiomed.2025.01.009
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Hernandez-Ono, A., Zhao, Y. P., Murray, J. W., Östlund, C., Lee, M. J., Shi, A., Dauer, W. T., Worman, H. J., Ginsberg, H. N., & Shin, J.-Y. (2024). Dynamic regulation of hepatic lipid metabolism by torsinA and its activators. JCI Insight. https://doi.org/10.1172/jci.insight.175328
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Senatus, L., Egaña-Gorroño, L., López-Díez, R., Bergaya, S., Aranda, J. F., Amengual, J., Arivazhagan, L., Manigrasso, M. B., Yepuri, G., Nimma, R., Mangar, K. N., Bernadin, R., Zhou, B., Gugger, P. F., Li, H., Friedman, R. A., Theise, N. D., Shekhtman, A., Fisher, E. A., … Schmidt, A. M. (2023). DIAPH1 mediates progression of atherosclerosis and regulates hepatic lipid metabolism in mice. Communications Biology, 6(1). https://doi.org/10.1038/s42003-023-04643-2
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Bhat, N., Esteghamat, F., Chaube, B. K., Gunawardhana, K., Mani, M., Thames, C., Jain, D., Ginsberg, H. N., Fernandes‐Hernando, C., & Mani, A. (2022). TCF7L2 transcriptionally regulates Fgf15 to maintain bile acid and lipid homeostasis through gut‐liver crosstalk. The FASEB Journal, 36(3). Portico. https://doi.org/10.1096/fj.202101607r
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