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Antagonistic crosstalk between NF-κB and SIRT1 in the regulation of inflammation and metabolic disorders (Review)

机译:NF-κB与SIRT1之间在拮抗炎症和代谢紊乱中的拮抗作用(综述)

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摘要

Recent studies have indicated that the regulation of innate immunity and energy metabolism are connected together through an antagonistic crosstalk between NF-κB and SIRT1 signaling pathways. NF-κB signaling has a major role in innate immunity defense while SIRT1 regulates the oxidative respiration and cellular survival. However, NF-κB signaling can stimulate glycolytic energy flux during acute inflammation, whereas SIRT1 activation inhibits NF-κB signaling and enhances oxidative metabolism and the resolution of inflammation. SIRT1 inhibits NF-κB signaling directly by deacetylating the p65 subunit of NF-κB complex. SIRT1 stimulates oxidative energy production via the activation of AMPK, PPARα and PGC-1α and simultaneously, these factors inhibit NF-κB signaling and suppress inflammation. On the other hand, NF-κB signaling down-regulates SIRT1 activity through the expression of miR-34a, IFNγ, and reactive oxygen species. The inhibition of SIRT1 disrupts oxidative energy metabolism and stimulates the NF-κB-induced inflammatory responses present in many chronic metabolic and age-related diseases. We will examine the molecular mechanisms of the antagonistic signaling between NF-κB and SIRT1 and describe how this crosstalk controls inflammatory process and energy metabolism. In addition, we will discuss how disturbances in this signaling crosstalk induce the appearance of chronic inflammation in metabolic diseases.
机译:最近的研究表明,先天免疫和能量代谢的调节通过NF-κB和SIRT1信号通路之间的拮抗作用相互联系在一起。 NF-κB信号传导在先天免疫防御中起主要作用,而SIRT1调节氧化呼吸和细胞存活。然而,NF-κB信号传导可以刺激急性炎症过程中的糖酵解能量通量,而SIRT1激活则抑制NF-κB信号传导并增强氧化代谢和炎症消退。 SIRT1通过使NF-κB复合体的p65亚基脱乙酰化而直接抑制NF-κB信号传导。 SIRT1通过激活AMPK,PPARα和PGC-1α刺激氧化能产生,同时,这些因子抑制NF-κB信号传导并抑制炎症。另一方面,NF-κB信号通过miR-34a,IFNγ和活性氧的表达下调SIRT1活性。 SIRT1的抑制会破坏氧化能的代谢,并刺激NF-κB诱导的许多慢性代谢性疾病和与年龄有关的疾病中的炎症反应。我们将研究NF-κB与SIRT1之间拮抗信号的分子机制,并描述这种串扰如何控制炎症过程和能量代谢。此外,我们将讨论这种信号串扰中的干扰如何引起代谢性疾病中慢性炎症的出现。

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