Cyclin D1 repression of peroxisome proliferator-activated receptor γ expression and transactivation

C Wang, N Pattabiraman, JN Zhou, M Fu… - … and cellular biology, 2003 - Taylor & Francis
C Wang, N Pattabiraman, JN Zhou, M Fu, T Sakamaki, C Albanese, Z Li, K Wu, J Hulit
Molecular and cellular biology, 2003Taylor & Francis
The cyclin D1 gene is overexpressed in human breast cancers and is required for oncogene-
induced tumorigenesis. Peroxisome proliferator-activated receptor γ (PPARγ) is a nuclear
receptor selectively activated by ligands of the thiazolidinedione class. PPARγ induces
hepatic steatosis, and liganded PPARγ promotes adipocyte differentiation. Herein, cyclin D1
inhibited ligand-induced PPARγ function, transactivation, expression, and promoter activity.
PPARγ transactivation induced by the ligand BRL49653 was inhibited by cyclin D1 through …
The cyclin D1 gene is overexpressed in human breast cancers and is required for oncogene-induced tumorigenesis. Peroxisome proliferator-activated receptor γ (PPARγ) is a nuclear receptor selectively activated by ligands of the thiazolidinedione class. PPARγ induces hepatic steatosis, and liganded PPARγ promotes adipocyte differentiation. Herein, cyclin D1 inhibited ligand-induced PPARγ function, transactivation, expression, and promoter activity. PPARγ transactivation induced by the ligand BRL49653 was inhibited by cyclin D1 through a pRB- and cdk-independent mechanism, requiring a region predicted to form an helix-loop-helix (HLH) structure. The cyclin D1 HLH region was also required for repression of the PPARγ ligand-binding domain linked to a heterologous DNA binding domain. Adipocyte differentiation by PPARγ-specific ligands (BRL49653, troglitazone) was enhanced in cyclin D1−/− fibroblasts and reversed by retroviral expression of cyclin D1. Homozygous deletion of the cyclin D1 gene, enhanced expression by PPARγ ligands of PPARγ and PPARγ-responsive genes, and cyclin D1−/− mice exhibit hepatic steatosis. Finally, reduction of cyclin D1 abundance in vivo using ponasterone-inducible cyclin D1 antisense transgenic mice, increased expression of PPARγ in vivo. The inhibition of PPARγ function by cyclin D1 is a new mechanism of signal transduction cross talk between PPARγ ligands and mitogenic signals that induce cyclin D1.
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