Dynamic repression by BCL6 controls the genome-wide liver response to fasting and steatosis

Author:

Sommars Meredith A1,Ramachandran Krithika1,Senagolage Madhavi D1,Futtner Christopher R1,Germain Derrik M1,Allred Amanda L1,Omura Yasuhiro1,Bederman Ilya R2ORCID,Barish Grant D134ORCID

Affiliation:

1. Division of Endocrinology, Metabolism, and Molecular Medicine, Department of Medicine, Feinberg School of Medicine, Northwestern University, Chicago, United States

2. Department of Pediatrics, Case Western Reserve University, Cleveland, United States

3. Robert H. Lurie Comprehensive Cancer Center, Northwestern University, Chicago, United States

4. Jesse Brown VA Medical Center, Chicago, United States

Abstract

Transcription is tightly regulated to maintain energy homeostasis during periods of feeding or fasting, but the molecular factors that control these alternating gene programs are incompletely understood. Here, we find that the B cell lymphoma 6 (BCL6) repressor is enriched in the fed state and converges genome-wide with PPARα to potently suppress the induction of fasting transcription. Deletion of hepatocyte Bcl6 enhances lipid catabolism and ameliorates high-fat-diet-induced steatosis. In Ppara-null mice, hepatocyte Bcl6 ablation restores enhancer activity at PPARα-dependent genes and overcomes defective fasting-induced fatty acid oxidation and lipid accumulation. Together, these findings identify BCL6 as a negative regulator of oxidative metabolism and reveal that alternating recruitment of repressive and activating transcription factors to shared cis-regulatory regions dictates hepatic lipid handling.

Funder

National Institutes of Health

American Diabetes Association

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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