The Clock‐NAD+‐Sirtuin connection in nonalcoholic fatty liver disease

NAD+激酶 锡尔图因 生物 西妥因1 生物钟 非酒精性脂肪肝 细胞生物学 时钟 生物化学 脂肪肝 内科学 下调和上调 基因 医学 疾病
作者
Savera Aggarwal,Nirupma Trehanpati,Perumal Nagarajan,Gayatri Ramakrishna
出处
期刊:Journal of Cellular Physiology [Wiley]
卷期号:237 (8): 3164-3180 被引量:12
标识
DOI:10.1002/jcp.30772
摘要

Abstract Nonalcoholic or metabolic associated fatty liver disease (NAFLD/MAFLD) is a hepatic reflection of metabolic derangements characterized by excess fat deposition in the hepatocytes. Identifying metabolic regulatory nodes in fatty liver pathology is essential for effective drug targeting. Fatty liver is often associated with circadian rhythm disturbances accompanied with alterations in physical and feeding activities. In this regard, both sirtuins and clock machinery genes have emerged as critical metabolic regulators in maintaining liver homeostasis. Knockouts of either sirtuins or clock genes result in obesity associated with the fatty liver phenotype. Sirtuins (SIRT1‐SIRT7) are a highly conserved family of nicotinamide adenine dinucleotide (NAD+)‐dependent deacetylases, protecting cells from metabolic stress by deacetylating vital proteins associated with lipid metabolism. Circadian rhythm is orchestrated by oscillations in expression of master regulators (BMAL1 and CLOCK), which in turn regulate rhythmic expression of clock‐controlled genes involved in lipid metabolism. The circadian metabolite, NAD+ , serves as a crucial link connecting clock genes to sirtuin activity. This is because, NAMPT which is a rate limiting enzyme in NAD+ biosynthesis is transcriptionally regulated by the clock genes and NAD+ in turn is a cofactor regulating the deacetylation activity of sirtuins. Intriguingly, on one hand the core circadian clock regulates the sirtuin activity and on the other hand the activated sirtuins regulate the acetylation status of clock proteins thereby affecting their transcriptional functions. Thus, the Clock‐NAD+‐Sirtuin connection represents a novel “feedback loop” circuit that regulates the metabolic machinery. The current review underpins the importance of NAD+ on the sirtuin and clock connection in preventing fatty liver disorder.
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