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Myc-dependent Mitochondrial Generation of Acetyl-CoA Contributes to Fatty Acid Biosynthesis and Histone Acetylation during Cell Cycle Entry*

机译:乙酰辅酶A的Myc依赖线粒体产生有助于细胞周期进入过程中脂肪酸的生物合成和组蛋白乙酰化*

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摘要

Cell reprogramming from a quiescent to proliferative state requires coordinate activation of multiple -omic networks. These networks activate histones, increase cellular bioenergetics and the synthesis of macromolecules required for cell proliferation. However, mechanisms that coordinate the regulation of these interconnected networks are not fully understood. The oncogene c-Myc (Myc) activates cellular metabolism and global chromatin remodeling. Here we tested for an interconnection between Myc regulation of metabolism and acetylation of histones. Using [13C6]glucose and a combination of GC/MS and LC/ESI tandem mass spectrometry, we determined the fractional incorporation of 13C-labeled 2-carbon fragments into the fatty acid palmitate, and acetyl-lysines at the N-terminal tail of histone H4 in myc−/− and myc+/+ Rat1A fibroblasts. Our data demonstrate that Myc increases mitochondrial synthesis of acetyl-CoA, as the de novo synthesis of 13C-labeled palmitate was increased 2-fold in Myc-expressing cells. Additionally, Myc induced a forty percent increase in 13C-labeled acetyl-CoA on H4-K16. This is linked to the capacity of Myc to increase mitochondrial production of acetyl-CoA, as we show that mitochondria provide 50% of the acetyl groups on H4-K16. These data point to a key role for Myc in directing the interconnection of -omic networks, and in particular, epigenetic modification of proteins in response to proliferative signals.
机译:从静止状态到增殖状态的细胞重编程需要多个组学网络的协调激活。这些网络激活组蛋白,增加细胞生物能和细胞增殖所需的大分子合成。但是,尚未完全了解协调这些互连网络的规则的机制。癌基因c-Myc(Myc)激活细胞代谢和整体染色质重塑。在这里,我们测试了Myc代谢调节和组蛋白乙酰化之间的相互关系。使用[13C6]葡萄糖以及GC / MS和LC / ESI串联质谱的组合,我们确定了13C标记的2-碳片段在脂肪酸棕榈酸酯和乙酰赖氨酸在N末端尾巴中的部分掺入。 myc-/-和myc + / + Rat1A成纤维细胞中的组蛋白H4。我们的数据表明Myc增加了乙酰辅酶A的线粒体合成,因为在Myc表达细胞中13C标记的棕榈酸酯的从头合成增加了2倍。此外,Myc诱导H4-K16上13C标记的乙酰辅酶A增加40%。这与Myc增加乙酰辅酶A的线粒体产生的能力有关,因为我们表明线粒体提供了H4-K16上50%的乙酰基。这些数据指出了Myc在指导基因组网络互连,尤其是响应增殖信号的蛋白质的表观遗传修饰方面的关键作用。

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