Meta-regulation: microRNA regulation of glucose and lipid metabolism

FC Lynn - Trends in Endocrinology & Metabolism, 2009 - cell.com
Trends in Endocrinology & Metabolism, 2009cell.com
Maintenance of homeostasis during environmental flux requires constant metabolic
adjustment, achieved partly through the fine regulation of gene expression. MicroRNAs are
key players in this regulatory milieu; they have been implicated in regulating gene
expression within several metabolically active tissues including the endocrine pancreas,
liver and adipose tissue. Recent studies, for example, implicate miR-375 in pancreatic islet
cell viability and function, and removal or overexpression of miR-375 profoundly affects …
Maintenance of homeostasis during environmental flux requires constant metabolic adjustment, achieved partly through the fine regulation of gene expression. MicroRNAs are key players in this regulatory milieu; they have been implicated in regulating gene expression within several metabolically active tissues including the endocrine pancreas, liver and adipose tissue. Recent studies, for example, implicate miR-375 in pancreatic islet cell viability and function, and removal or overexpression of miR-375 profoundly affects glucose metabolism. In the liver, miR-122 is important for normal lipid metabolism. In fact, misexpression of miRNAs can occur in some diseases, suggesting that restoring miRNA expression is a potential therapeutic approach for both metabolic syndrome and diabetes.
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