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ERRα as a Bridge Between Transcription and Function: Role in Liver Metabolism and Disease
Hui Xia1,2, Catherine R Dufour1, Vincent Giguère1,2,3
1Goodman Cancer Research Centre, McGill University, Montréal, QC, Canada.
Abstract:
As transcriptional factors, nuclear receptors (NRs) function as major regulators of gene expression. In particular, dysregulation of NR activity has been shown to significantly alter metabolic homeostasis in various contexts leading to metabolic disorders and cancers. The orphan estrogen-related receptor (ERR) subfamily of NRs, comprised of ERRα, ERRβ, and ERRγ, for which a natural ligand has yet to be identified, are known as central regulators of energy metabolism. If AMP-activated protein kinase (AMPK) and mechanistic target of rapamycin (mTOR) can be viewed as sensors of the metabolic needs of a cell and responding acutely via post-translational control of proteins, then the ERRs can be regarded as downstream effectors of metabolism via transcriptional regulation of genes for a long-term and sustained adaptive response. In this review, we will focus on recent findings centered on the transcriptional roles played by ERRα in hepatocytes. Modulation of ERRα activity in both in vitro and in vivo models via genetic or pharmacological manipulation coupled with chromatin-immunoprecipitation (ChIP)-on-chip and ChIP-sequencing (ChIP-seq) studies have been fundamental in delineating the direct roles of ERRα in the control of hepatic gene expression. These studies have identified crucial roles for ERRα in lipid and carbohydrate metabolism as well as in mitochondrial function under both physiological and pathological conditions. The regulation of ERRα expression and activity via ligand-independent modes of action including coregulator binding, post-translational modifications (PTMs) and control of protein stability will be discussed in the context that may serve as valuable tools to modulate ERRα function as new therapeutic avenues for the treatment of hepatic metabolic dysfunction and related diseases.
Insights
Estrogen-related receptor alpha (ERRα) acts as a key transcriptional regulator in liver cells, controlling energy metabolism. Recent studies highlight its roles in lipid, carbohydrate, and mitochondrial function, offering therapeutic targets for metabolic diseases.
Area of Science:
- Molecular Biology
- Metabolic Regulation
- Hepatology
Background:
- Nuclear receptors (NRs) are critical transcriptional factors regulating gene expression.
- Dysregulated NR activity contributes to metabolic disorders and cancers.
- Estrogen-related receptors (ERRs) are orphan NRs central to energy metabolism, acting downstream of metabolic sensors like AMPK and mTOR.
Purpose of the Study:
- To review recent findings on the transcriptional roles of ERRα in hepatocytes.
- To explore how ERRα controls hepatic gene expression, impacting metabolism and mitochondrial function.
- To discuss ligand-independent regulation of ERRα for potential therapeutic strategies.
Main Methods:
- Review of in vitro and in vivo studies involving genetic and pharmacological manipulation of ERRα.
- Chromatin-immunoprecipitation (ChIP)-on-chip and ChIP-sequencing (ChIP-seq) analyses.
- Investigation of ligand-independent mechanisms including coregulator binding and post-translational modifications.
Main Results:
- ERRα plays crucial roles in hepatic lipid and carbohydrate metabolism.
- ERRα is vital for mitochondrial function in both physiological and pathological states.
- Studies have delineated ERRα's direct targets in hepatic gene expression.
Conclusions:
- ERRα is a significant transcriptional regulator of hepatic energy metabolism.
- Understanding ERRα's ligand-independent regulation provides avenues for treating metabolic dysfunction.
- Modulating ERRα activity presents potential therapeutic strategies for liver diseases.
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