代谢途径
表观遗传学
代谢网络
生物
酶
转录因子
丝氨酸
基因表达
生物化学
基因表达调控
转录调控
基因
细胞生物学
作者
Jung-Ming G. Lin,Savvas Kourtis,Ritobrata Ghose,Natalia Pardo‐Lorente,Stefan Kubicek,Sara Sdelci
标识
DOI:10.1016/j.chembiol.2022.11.009
摘要
While it is well known that expression levels of metabolic enzymes regulate the metabolic state of the cell, there is mounting evidence that the converse is also true, that metabolite levels themselves can modulate gene expression via epigenetic modifications and transcriptional regulation. Here we focus on the one-carbon metabolic pathway, which provides the essential building blocks of many classes of biomolecules, including purine nucleotides, thymidylate, serine, and methionine. We review the epigenetic roles of one-carbon metabolic enzymes and their associated metabolites and introduce an interactive computational resource that places enzyme essentiality in the context of metabolic pathway topology. Therefore, we briefly discuss examples of metabolic condensates and higher-order complexes of metabolic enzymes downstream of one-carbon metabolism. We speculate that they may be required to the formation of transcriptional condensates and gene expression control. Finally, we discuss new ways to exploit metabolic pathway compartmentalization to selectively target these enzymes in cancer.
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