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Multi-dimensional Transcriptional Remodeling by Physiological Insulin In Vivo.

Citation
Batista, T. M., et al. “Multi-Dimensional Transcriptional Remodeling By Physiological Insulin In Vivo.”. Cell Reports, pp. 3429-3443.e3.
Center Joslin Diabetes Center
Author Thiago M Batista, Ruben Garcia-Martin, Weikang Cai, Masahiro Konishi, Brian T O'Neill, Masaji Sakaguchi, Jong Hun Kim, Dae Young Jung, Jason K Kim, Ronald Kahn
Keywords diabetes, fatty acid oxidation, gene expression, Insulin action, liver, mitochondria, non-coding RNAs, Skeletal muscle
Abstract

Regulation of gene expression is an important aspect of insulin action but in vivo is intertwined with changing levels of glucose and counter-regulatory hormones. Here we demonstrate that under euglycemic clamp conditions, physiological levels of insulin regulate interrelated networks of more than 1,000 transcripts in muscle and liver. These include expected pathways related to glucose and lipid utilization, mitochondrial function, and autophagy, as well as unexpected pathways, such as chromatin remodeling, mRNA splicing, and Notch signaling. These acutely regulated pathways extend beyond those dysregulated in mice with chronic insulin deficiency or insulin resistance and involve a broad network of transcription factors. More than 150 non-coding RNAs were regulated by insulin, many of which also responded to fasting and refeeding. Pathway analysis and RNAi knockdown revealed a role for lncRNA Gm15441 in regulating fatty acid oxidation in hepatocytes. Altogether, these changes in coding and non-coding RNAs provide an integrated transcriptional network underlying the complexity of insulin action.

Year of Publication
2019
Journal
Cell reports
Volume
26
Issue
12
Number of Pages
3429-3443.e3
Date Published
12/2019
ISSN Number
2211-1247
DOI
10.1016/j.celrep.2019.02.081
Alternate Journal
Cell Rep
PMID
30893613
PMCID
PMC6543850
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