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首页> 外文期刊>Dose-response >Genome-Wide Transcriptome Analysis Reveals Intermittent Fasting-Induced Metabolic Rewiring in the Liver:
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Genome-Wide Transcriptome Analysis Reveals Intermittent Fasting-Induced Metabolic Rewiring in the Liver:

机译:全基因组转录组分析揭示了断续的空腹诱导的肝脏代谢重建:

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Scope: Intermittent fasting (IF) has been extensively reported to promote improved energy homeostasis and metabolic switching. While IF may be a plausible strategy to ameliorate the epidemiological burden of disease in many societies, our understanding of the underlying molecular mechanisms behind such effects is still lacking. The present study has sought to investigate the relationship between IF and changes in gene expression. We focused on the liver, which is highly sensitive to metabolic changes due to energy status. Mice were randomly assigned to ad libitum feeding or IF for 16 hours per day or for 24 hours on alternate days for 3 months, after which genome-wide transcriptome analysis of the liver was performed using RNA sequencing. Our findings revealed that IF caused robust transcriptomic changes in the liver that led to a complex array of metabolic changes. We also observed that the IF regimen produced distinct profiles of transcriptomic changes, highlighting the significance of temporally different periods of energy restriction. Our results suggest that IF can regulate metabolism via transcriptomic mechanisms and provide insight into how genetic interactions within the liver might lead to the numerous metabolic benefits of IF.
机译:范围:广泛报道间歇性禁食(IF)可促进改善的能量稳态和代谢转换。尽管在许多社会中,IF可能是减轻疾病的流行病学负担的可行策​​略,但我们仍然缺乏对这种作用背后的潜在分子机制的了解。本研究试图调查IF和基因表达变化之间的关系。我们专注于肝脏,它对由于能量状态引起的代谢变化高度敏感。将小鼠随机分配为每天随意喂食或中频,每天16小时或隔天连续24小时,共3个月,然后使用RNA测序对肝脏进行全基因组转录组分析。我们的发现表明,中频引起肝脏中转录的强烈变化,导致一系列复杂的代谢变化。我们还观察到,IF疗法产生了不同的转录组变化谱,突出了能量限制在时间上不同时期的重要性。我们的研究结果表明,中频可以通过转录组机制调节代谢,并深入了解肝脏内的遗传相互作用如何导致中频的众多代谢益处。

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