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Combinatorial targeting of the miR-379/miR-410 cluster normalizes glucose and lipid homeostasis in male models of diabetes and obesity

Manuel Gil‐Lozano, Estefanía Simoes, Moya Wu, Tobias Wiedemann, 권윤, Revathi Sekar, Pauline Morigny, Maria Troullinaki, Juliane Merl‐Pham, Michael Buettner, Annette Feuchtinger, Céline Jouffe, Adriano Maida, Daniela Hass, Daniel Samaga, Gretchen Wolff, Juliano Machado, Maude Giroud, Katarina Klepac, Carolyn L. Cummins, Marcos Rios Garcia, Peter C Weber, Anja Zeigerer, N. Henriette Uhlenhaut, Julia Szendroedi, Matthias Blüher, Stephan Herzig

Peer-reviewed journalBold claims, read criticallyReal-world use

In the authors' words

Non-coding RNAs from the Dlk1-Dio3 locus are critical for the maturation of metabolic tissues in early stages of postnatal development; however, their role in the mature organs remains elusive. Herein, we show that microRNAs from the miR-379/miR-410 cluster are robustly upregulated in livers of subjects with obesity and various mouse models of metabolic dysfunction. Adult-onset, combinatorial inhibition of this miRNA cluster by hepatocyte-specific expression of a decoy sequence reduces triglyceride, total and LDL cholesterol circulating levels, decreases basal glycemia and improves glucose tolerance and insulin sensitivity irrespective of sex. Consistent with the decoy-triggered enhancement of PI3K/mTOR signaling in these mice, hepatocytes expressing the combinatorial decoy show augmented mitochondrial mass and function. Notably, decoy therapy also ameliorates glucose and lipid homeostasis in both type 1 diabetic and diet-induced, type 2 pre-diabetic, obese male animals. Collectively, our results demonstrate that microRNAs from the miR-379/miR-410 cluster are critical regulators of metabolic homeostasis in the mature liver. Given the preservation of miRNA dysfunction in human obesity, hepatocyte-specific combinatorial inhibition of a large miRNA cluster represents an approach towards multi-parameter improvements in diabetes and obesity.

Main resultThe abstract does not state a limitation.

Appeared: Wednesday, September 23. Nature Communications. Peer-reviewed journal.

DOI: 10.1038/s41467-026-77808-2