Shi Lei, Tu Benjamin P
Department of Biochemistry, UT Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, TX 75390-9038, United States.
Department of Biochemistry, UT Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, TX 75390-9038, United States.
Curr Opin Cell Biol. 2015 Apr;33:125-31. doi: 10.1016/j.ceb.2015.02.003. Epub 2015 Feb 20.
Acetyl-CoA represents a key node in metabolism due to its intersection with many metabolic pathways and transformations. Emerging evidence reveals that cells monitor the levels of acetyl-CoA as a key indicator of their metabolic state, through distinctive protein acetylation modifications dependent on this metabolite. We offer the following conceptual model for understanding the role of this sentinel metabolite in metabolic regulation. High nucleocytosolic acetyl-CoA amounts are a signature of a 'growth' or 'fed' state and promote its utilization for lipid synthesis and histone acetylation. In contrast, under 'survival' or 'fasted' states, acetyl-CoA is preferentially directed into the mitochondria to promote mitochondrial-dependent activities such as the synthesis of ATP and ketone bodies. Fluctuations in acetyl-CoA within these subcellular compartments enable the substrate-level regulation of acetylation modifications, but also necessitate the function of sirtuin deacetylases to catalyze removal of spontaneous modifications that might be unintended. Thus, understanding the sources, fates, and consequences of acetyl-CoA as a carrier of two-carbon units has started to reveal its underappreciated but profound influence on the regulation of numerous life processes.
由于乙酰辅酶A与许多代谢途径和转化过程相交,它在新陈代谢中代表着一个关键节点。新出现的证据表明,细胞通过依赖于这种代谢物的独特蛋白质乙酰化修饰,将乙酰辅酶A的水平作为其代谢状态的关键指标进行监测。我们提供以下概念模型,以理解这种哨兵代谢物在代谢调节中的作用。高核胞质乙酰辅酶A含量是“生长”或“进食”状态的标志,并促进其用于脂质合成和组蛋白乙酰化。相反,在“生存”或“禁食”状态下,乙酰辅酶A优先进入线粒体,以促进依赖线粒体的活动,如ATP和酮体的合成。这些亚细胞区室中乙酰辅酶A的波动能够实现乙酰化修饰的底物水平调节,但也需要沉默调节蛋白去乙酰化酶发挥作用,以催化去除可能是意外的自发修饰。因此,了解作为二碳单位载体的乙酰辅酶A的来源、去向和后果,已开始揭示其对众多生命过程调节的未被充分认识但深刻的影响。