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Metabolic intermediates – Cellular messengers talking to chromatin modifiers

机译:代谢中间体–与染色质修饰剂对话的细胞信使

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Background To maintain homeostasis, cells need to coordinate the expression of their genes. Epigenetic mechanisms controlling transcription activation and repression include DNA methylation and post-translational modifications of histones, which can affect the architecture of chromatin and/or create 'docking platforms' for multiple binding proteins. These modifications can be dynamically set and removed by various enzymes that depend on the availability of key metabolites derived from different intracellular pathways. Therefore, small metabolites generated in anabolic and catabolic processes can integrate multiple external and internal stimuli and transfer information on the energetic state of a cell to the transcriptional machinery by regulating the activity of chromatin-modifying enzymes. Scope of review This review provides an overview of the current literature and concepts on the connections and crosstalk between key cellular metabolites, enzymes responsible for their synthesis, recycling, and conversion and chromatin marks controlling gene expression. Major conclusions Whereas current evidence indicates that many chromatin-modifying enzymes respond to alterations in the levels of their cofactors, cosubstrates, and inhibitors, the detailed molecular mechanisms and functional consequences of such processes are largely unresolved. A deeper investigation of mechanisms responsible for altering the total cellular concentration of particular metabolites, as well as their nuclear abundance and accessibility for chromatin-modifying enzymes, will be necessary to better understand the crosstalk between metabolism, chromatin marks, and gene expression.
机译:背景为了维持体内平衡,细胞需要协调其基因的表达。控制转录激活和抑制的表观遗传机制包括DNA甲基化和组蛋白的翻译后修饰,这可能会影响染色质的结构和/或为多种结合蛋白创造“对接平台”。这些修饰可以通过各种酶动态设置和除去,这些酶取决于衍生自不同细胞内途径的关键代谢物的可用性。因此,合成代谢和分解代谢过程中产生的小代谢物可以整合多种外部和内部刺激,并通过调节染色质修饰酶的活性将有关细胞高能状态的信息转移至转录机制。综述范围本综述概述了有关关键细胞代谢物,负责其合成,再循环和转化的酶以及控制基因表达的染色质标记之间的连接和串扰的当前文献和概念。主要结论尽管目前的证据表明许多染色质修饰酶对其辅因子,辅底物和抑制剂水平的改变有反应,但这些过程的详细分子机理和功能后果在很大程度上尚未得到解决。为了更好地了解新陈代谢,染色质标记和基因表达之间的相互影响,有必要对导致特定代谢物总细胞浓度改变的机制及其核丰度和染色质修饰酶的可及性进行更深入的研究。

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