An alternative route for β-hydroxybutyrate metabolism supports fatty acid synthesis in cancer cells

新陈代谢 脂肪酸合成 癌症 生物化学 化学 脂肪酸代谢 脂肪酸 癌细胞 内科学 医学
作者
Faith C. Kaluba,Thomas J. Rogers,Yu‐Jin Jeong,Althea N. Waldhart,Kelly H. Sokol,Cameron J. Lee,Samuel Daniels,Joseph Longo,Amy Johnson,Ryan D. Sheldon,Russell G. Jones,Evan C. Lien
标识
DOI:10.1101/2024.10.31.621317
摘要

Abstract Cancer cells are exposed to diverse metabolites in the tumor microenvironment that are used to support the synthesis of nucleotides, amino acids, and lipids needed for rapid cell proliferation 1–3 . Recent work has shown that ketone bodies such as β-hydroxybutyrate (β-OHB), which are elevated in circulation under fasting conditions or low glycemic diets, can serve as an alternative fuel that is metabolized in the mitochondria to provide acetyl-CoA for the tricarboxylic acid (TCA) cycle in some tumors 4–7 . Here, we discover a non-canonical route for β-OHB metabolism, in which β-OHB can bypass the TCA cycle to generate cytosolic acetyl-CoA for de novo fatty acid synthesis in cancer cells. We show that β-OHB-derived acetoacetate in the mitochondria can be shunted into the cytosol, where acetoacetyl-CoA synthetase (AACS) and thiolase convert it into acetyl-CoA for fatty acid synthesis. This alternative metabolic routing of β-OHB allows it to avoid oxidation in the mitochondria and net contribute to anabolic biosynthetic processes. In cancer cells, β-OHB is used for fatty acid synthesis to support cell proliferation under lipid-limited conditions in vitro and contributes to tumor growth under lipid-limited conditions induced by a calorie-restricted diet in vivo . Together, these data demonstrate that β-OHB is preferentially used for fatty acid synthesis in cancer cells to support tumor growth.

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