丁酸盐
细胞凋亡
SIRT3
细胞生物学
柠檬酸循环
化学
瓦博格效应
癌细胞
细胞周期检查点
糖酵解
乙酰化
生物
细胞周期
生物化学
癌症研究
癌症
新陈代谢
发酵
锡尔图因
基因
遗传学
作者
Sha Xu,Caixia Liu,Wei Xu,Lei Huang,Jian‐Yuan Zhao,Shimin Zhao
标识
DOI:10.1038/sigtrans.2016.35
摘要
Abstract The underlying anticancer effects of butyrate, an end-product of the intestinal microbial fermentation of dietary fiber, remain elusive. Here, we report that butyrate promotes cancer cell apoptosis by acting as a SIRT3 inhibitor. Butyrate inhibits SIRT3 both in cultured cells and in vitro . Butyrate-induced PDHA1 hyperacetylation relieves the inhibitory phosphorylation of PDHA1 at serine 293, thereby activating an influx of glycolytic intermediates into the tricarboxylic acid (TCA) cycle and reversing the Warburg effect. Meanwhile, butyrate-induced hyperacetylation inactivates complex I of the electron transfer chain and prevents the utilization of TCA cycle intermediates. These metabolic stresses promote apoptosis in hyperglycolytic cancer cells, such as HCT116 p53 −/− cells. SIRT3 deacetylates both PDHA1 and complex I. Genetic ablation of Sirt3 in mouse hepatocytes abrogated the ability of butyrate to induce apoptosis. Our results identify a butyrate-mediated anti-tumor mechanism and indicate that the combined activation of PDC and inhibition of complex I is a novel tumor treatment strategy.
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