Institute of Cardiology, Lithuanian University of Health Sciences, LT 50162, Kaunas, Lithuania.
Institute of Pharmaceutical Technologies, Lithuanian University of Health Sciences, LT 50162, Kaunas, Lithuania.
Biochem Biophys Res Commun. 2021 Dec 31;585:61-67. doi: 10.1016/j.bbrc.2021.11.034. Epub 2021 Nov 12.
Leucine, isoleucine and valine, known as branched chain amino acids (BCAAs), have been reported to be degraded by different cancer cells, and their biodegradation pathways have been suggested as anticancer targets. However, the mechanisms by which the degradation of BCAAs could support the growth of cancer cells remains unclear. In this work, C experiments have been carried out in order to elucidate the metabolic role of BCAA degradation in two breast cancer cell lines (MCF-7 and BCC). The results revealed that up to 36% of the energy production via respiration by MCF-7 cells was supported by the degradation of BCAAs. Also, 67% of the mevalonate (the precursor of cholesterol) synthesized by the cells was coming from the degradation of leucine. The results were lower for BCC cells (14 and 30%, respectively). The non-tumorigenic epythelial cell line MCF-10A was used as a control, showing that 10% of the mitochondrial acetyl-CoA comes from the degradation of BCAAs and no mevalonate production. Metabolic flux analysis around the mevalonate node, also revealed that significant amounts of acetoacetate are being produced from BCAA derived carbon, which could be at the source of lipid synthesis. From these results we can conclude that the degradation of BCAAs is an important energy and carbon source for the proliferation of some cancer cells and its therapeutic targeting could be an interesting option.
亮氨酸、异亮氨酸和缬氨酸,被称为支链氨基酸(BCAAs),已被报道在不同的癌细胞中被降解,并且它们的生物降解途径被认为是抗癌靶点。然而,BCAA 降解如何支持癌细胞生长的机制尚不清楚。在这项工作中,进行了 C 实验,以阐明 BCAA 降解在两种乳腺癌细胞系(MCF-7 和 BCC)中的代谢作用。结果表明,多达 36%的 MCF-7 细胞通过呼吸产生的能量是由 BCAAs 降解提供的。此外,细胞合成的甲羟戊酸(胆固醇的前体)有 67%来自亮氨酸的降解。对于 BCC 细胞,这一比例分别为 14%和 30%。非致瘤上皮细胞系 MCF-10A 被用作对照,结果表明 10%的线粒体乙酰辅酶 A 来自 BCAAs 的降解,没有甲羟戊酸的产生。围绕甲羟戊酸节点的代谢通量分析还表明,大量的乙酰乙酸酯是由源自 BCAAs 的碳产生的,这可能是脂质合成的来源。从这些结果可以得出结论,BCAA 的降解是一些癌细胞增殖的重要能量和碳源,其治疗靶向可能是一个有趣的选择。