Stowers Institute for Medical Research, 1000 E. 50th Street, Kansas City, MO, 64110, USA.
Epigenetics Chromatin. 2023 Nov 28;16(1):46. doi: 10.1186/s13072-023-00520-8.
Chromatin plays a central role in the conversion of energy in cells: alteration of chromatin structure to make DNA accessible consumes energy, and compaction of chromatin preserves energy. Alteration of chromatin structure uses energy sources derived from carbon metabolism such as ATP and acetyl-CoA; conversely, chromatin compaction and epigenetic modification feedback to metabolism and energy homeostasis by controlling gene expression and storing metabolites. Coordination of these dual chromatin events must be flexibly modulated in response to environmental changes such as during development and exposure to stress. Aging also alters chromatin structure and the coordination of metabolism, chromatin dynamics, and other cell processes. Noncoding RNAs and other RNA species that associate directly with chromatin or with chromatin modifiers contribute to spatiotemporal control of transcription and energy conversion. The time required for generating the large amounts of RNAs and chromatin modifiers observed in super-enhancers may be critical for regulation of transcription and may be impacted by aging. Here, taking into account these factors, we review alterations of chromatin that are fundamental to cell responses to metabolic changes due to stress and aging to maintain redox and energy homeostasis. We discuss the relationship between spatiotemporal control of energy and chromatin function, as this emerging concept must be considered to understand how cell homeostasis is maintained.
改变染色质结构以使其 DNA 可被利用会消耗能量,而染色质的紧缩则可保存能量。染色质结构的改变利用了源自碳代谢的能量来源,如 ATP 和乙酰辅酶 A;相反,染色质的紧缩和表观遗传修饰通过控制基因表达和储存代谢物来反馈代谢和能量稳态。这些双重染色质事件的协调必须灵活调节,以响应环境变化,如在发育过程中或暴露于应激下。衰老也会改变染色质结构以及代谢、染色质动力学和其他细胞过程的协调。直接与染色质或与染色质修饰物相关的非编码 RNA 和其他 RNA 种类有助于转录和能量转换的时空控制。在超级增强子中观察到的大量 RNA 和染色质修饰物的产生可能需要时间,这对于转录的调节可能是至关重要的,并且可能会受到衰老的影响。在这里,我们考虑到这些因素,综述了由于应激和衰老导致的代谢变化而引起的细胞反应中染色质的改变,以维持氧化还原和能量稳态。我们讨论了能量的时空控制与染色质功能之间的关系,因为这个新兴概念必须被考虑在内,以了解细胞稳态是如何维持的。