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Chromatin and Metabolism
Annual Review of Biochemistry ( IF 12.1 ) Pub Date : 2018-06-20 00:00:00 , DOI: 10.1146/annurev-biochem-062917-012634
Tamaki Suganuma 1 , Jerry L. Workman 1
Affiliation  

Chromatin is a mighty consumer of cellular energy generated by metabolism. Metabolic status is efficiently coordinated with transcription and translation, which also feed back to regulate metabolism. Conversely, suppression of energy utilization by chromatin processes may serve to preserve energy resources for cell survival. Most of the reactions involved in chromatin modification require metabolites as their cofactors or coenzymes. Therefore, the metabolic status of the cell can influence the spectra of posttranslational histone modifications and the structure, density and location of nucleosomes, impacting epigenetic processes. Thus, transcription, translation, and DNA/RNA biogenesis adapt to cellular metabolism. In addition to dysfunctions of metabolic enzymes, imbalances between metabolism and chromatin activities trigger metabolic disease and life span alteration. Here, we review the synthesis of the metabolites and the relationships between metabolism and chromatin function. Furthermore, we discuss how the chromatin response feeds back to metabolic regulation in biological processes.

中文翻译:


染色质和代谢

染色质是代谢产生的细胞能量的强大消耗者。代谢状态可以有效地与转录和翻译协调,这些反馈和反馈也可以调节新陈代谢。相反,染色质过程对能量利用的抑制可用于保存能量资源以用于细胞存活。参与染色质修饰的大多数反应都需要代谢产物作为其辅因子或辅酶。因此,细胞的代谢状态会影响翻译后组蛋白修饰的光谱以及核小体的结构,密度和位置,从而影响表观遗传过程。因此,转录,翻译和DNA / RNA生物发生适应细胞代谢。除了代谢酶的功能障碍之外,代谢和染色质活性之间的不平衡触发了代谢疾病和寿命的改变。在这里,我们审查了代谢产物的合成以及代谢和染色质功能之间的关系。此外,我们讨论了染色质反应如何反馈到生物过程中的代谢调节。

更新日期:2018-06-20
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