Anticipatory Biogenesis of Hepatic Fed MicroRNAs is Regulated by Metabolic and Circadian Inputs
Sandra, U. S.; Chowdhury, S.; Kolthur-Seetharam, U.
Show abstract
Starvation and refeeding are mostly unanticipated in the wild in terms of duration, frequency, and nutritional value of the refed state. Notwithstanding this, organisms mount efficient and reproducible responses to restore metabolic homeostasis. Hence, it is intuitive to invoke expectant molecular mechanisms that build anticipatory responses to enable physiological toggling during fed-fast cycles. In this regard, we report anticipatory biogenesis of oscillatory hepatic microRNAs, which were earlier shown to peak during a fed state to inhibit starvation-responsive genes. Results presented in this study clearly demonstrate that the levels of primary and precursor microRNA transcripts increase during a fasting state, in anticipation of a fed response. We delineate the importance of both metabolic inputs and circadian cues in orchestrating microRNA homeostasis in a physiological setting, using the most prominent hepatic fed-miRNAs as candidates. Besides illustrating the metabo-endocrine control, our findings provide a mechanistic basis for the overarching influence of starvation on anticipatory biogenesis. Importantly, by employing pharmacological agents that are widely used in the clinics, we point out the high potential of interventions to restore homeostasis of hepatic microRNAs, whose deregulated expression is otherwise well established to cause metabolic diseases.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Hepatic mTORC1 signaling activates ATF4 as part of its metabolic response to feeding and insulin 94%
- Dietary isoleucine content defines the metabolic and molecular response to a Western diet 94%
- Sperm Histone H3 Lysine 4 tri-methylation serves as a metabolic sensor of paternal obesity and is associated with the inheritance of metabolic dysfunction 94%
Similar papers in this journal
- Control of brown adipose tissue adaptation to nutrient stress by the activin receptor ALK7 95%
- Vitamin B2 enables peroxisome proliferator-activated receptor α regulation of fasting glucose availability 94%
- Intermittent fasting induces rapid hepatocyte proliferation to restore the hepatostat in the mouse liver. 94%
Similar papers in this journal
- Non-canonical Metabolic and Molecular Effects of Calorie Restriction Are Revealed by Varying Temporal Conditions 94%
- Glycation-lowering compounds inhibit ghrelin signaling to reduce food intake, lower insulin resistance, and extend lifespan. 94%
- ATGL-dependent white adipose tissue lipolysis controls hepatocyte PPARα activity 94%
Similar papers in this journal
- Fat specific adipose triglyceride lipase is necessary for iron-mediated lipolysis and lipid mobilization in response to negative energy balance 94%
- A repeatedly evolved mutation in Cryptochrome-1 of subterranean animals alters behavioral and molecular circadian rhythms 93%
- Macrovesicular steatosis in nonalcoholic fatty liver disease is a consequence of purine nucleotide cycle driven fumarate accumulation 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.