Regulation of the brown and white fat gene programs through a PRDM16/CtBP transcriptional complex

  1. Shingo Kajimura1,
  2. Patrick Seale1,
  3. Takuya Tomaru2,
  4. Hediye Erdjument-Bromage3,
  5. Marcus P. Cooper1,
  6. Jorge L. Ruas1,
  7. Sherry Chin1,
  8. Paul Tempst3,
  9. Mitchell A. Lazar2, and
  10. Bruce M. Spiegelman1,4
  1. 1 Dana-Farber Cancer Institute and the Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA;
  2. 2 Division of Endocrinology, Diabetes, and Metabolism, Department of Medicine and Institute for Diabetes, Obesity, and Metabolism, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA;
  3. 3 Molecular Biology Program, Memorial Sloan-Kettering Cancer Center, New York, New York 10065, USA

Abstract

Brown fat is a specialized tissue that can dissipate energy and counteract obesity through a pattern of gene expression that greatly increases mitochondrial content and uncoupled respiration. PRDM16 is a zinc-finger protein that controls brown fat determination by stimulating brown fat-selective gene expression, while suppressing the expression of genes selective for white fat cells. To determine the mechanisms regulating this switching of gene programs, we purified native PRDM16 protein complexes from fat cells. We show here that the PRDM16 transcriptional holocompex contains C-terminal-binding protein-1 (CtBP-1) and CtBP-2, and this direct interaction selectively mediates the repression of white fat genes. This repression occurs through recruiting a PRDM16/CtBP complex onto the promoters of white fat-specific genes such as resistin, and is abolished in the genetic absence of CtBP-1 and CtBP-2. In turn, recruitment of PPAR-γ-coactivator-1α (PGC-1α) and PGC-1β to the PRDM16 complex displaces CtBP, allowing this complex to powerfully activate brown fat genes, such as PGC-1α itself. These data show that the regulated docking of the CtBP proteins on PRDM16 controls the brown and white fat-selective gene programs.

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