Histone deacetylase inhibition results in a common metabolic profile associated with HT29 differentiation.

Gema Alcarraz-Vizán, Joan Boren, Wai-Nang Paul Lee, Marta Cascante
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引用次数: 33

Abstract

Cell differentiation is an orderly process that begins with modifications in gene expression. This process is regulated by the acetylation state of histones. Removal of the acetyl groups of histones by specific enzymes (histone deacetylases, HDAC) usually downregulates expression of genes that can cause cells to differentiate, and pharmacological inhibitors of these enzymes have been shown to induce differentiation in several colon cancer cell lines. Butyrate at high (mM) concentration is both a precursor for acetyl-CoA and a known HDAC inhibitor that induces cell differentiation in colon cells. The dual role of butyrate raises the question whether its effects on HT29 cell differentiation are due to butyrate metabolism or to its HDAC inhibitor activity. To distinguish between these two possibilities, we used a tracer-based metabolomics approach to compare the metabolic changes induced by two different types of HDAC inhibitors (butyrate and the non-metabolic agent trichostatin A) and those induced by other acetyl-CoA precursors that do not inhibit HDAC (caprylic and capric acids). [1,2-(13)C(2)]-d-glucose was used as a tracer and its redistribution among metabolic intermediates was measured to estimate the contribution of glycolysis, the pentose phosphate pathway and the Krebs cycle to the metabolic profile of HT29 cells under the different treatments. The results demonstrate that both HDAC inhibitors (trichostatin A and butyrate) induce a common metabolic profile that is associated with histone deacetylase inhibition and differentiation of HT29 cells whereas the metabolic effects of acetyl-CoA precursors are different from those of butyrate. The experimental findings support the concept of crosstalk between metabolic and cell signalling events, and provide an experimental approach for the rational design of new combined therapies that exploit the potential synergism between metabolic adaptation and cell differentiation processes through modification of HDAC activity.

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组蛋白去乙酰化酶抑制导致与HT29分化相关的共同代谢谱。
细胞分化是一个有序的过程,始于基因表达的改变。这个过程是由组蛋白的乙酰化状态调节的。通过特定的酶(组蛋白去乙酰化酶,HDAC)去除组蛋白的乙酰基通常会下调导致细胞分化的基因的表达,这些酶的药理抑制剂已被证明可以诱导几种结肠癌细胞系的分化。高(mM)浓度的丁酸盐既是乙酰辅酶a的前体,也是已知的诱导结肠细胞分化的HDAC抑制剂。丁酸盐的双重作用提出了一个问题,即其对HT29细胞分化的影响是由于丁酸盐代谢还是由于其HDAC抑制剂活性。为了区分这两种可能性,我们使用了一种基于示踪剂的代谢组学方法来比较两种不同类型的HDAC抑制剂(丁酸盐和非代谢剂trichostatin a)和其他不抑制HDAC的乙酰辅酶a前体(辛酸和癸酸)诱导的代谢变化。以[1,2-(13)C(2)]-d-葡萄糖为示踪剂,测定其在代谢中间体中的再分布,以估计不同处理下糖酵解、戊糖磷酸途径和克雷布斯循环对HT29细胞代谢谱的贡献。结果表明,两种HDAC抑制剂(曲古菌素A和丁酸盐)诱导了与组蛋白去乙酰化酶抑制和HT29细胞分化相关的共同代谢谱,而乙酰辅酶A前体的代谢作用与丁酸盐不同。实验结果支持了代谢和细胞信号传导事件之间的串扰概念,并为合理设计新的联合疗法提供了实验方法,这些疗法通过改变HDAC活性来利用代谢适应和细胞分化过程之间的潜在协同作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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