E3 Ubiquitin Ligase RNF31 Cooperates with DAX-1 in Transcriptional Repression of Steroidogenesis

Author:

Ehrlund Anna1,Anthonisen Elin Holter12,Gustafsson Nina1,Venteclef Nicolas1,Robertson Remen Kirsten1,Damdimopoulos Anastasios E.1,Galeeva Anastasia34,Pelto-Huikko Markku34,Lalli Enzo5,Steffensen Knut R.1,Gustafsson Jan-Åke16,Treuter Eckardt1

Affiliation:

1. Department of Biosciences and Nutrition, Karolinska Institutet, S-14157 Huddinge/Stockholm, Sweden

2. Department of Nutrition, Institute of Basic Medical Sciences, University of Oslo, P.O. Box 1046, Blindern, N-0316 Oslo, Norway

3. Department of Developmental Biology, Tampere University Medical School, FIN-33014 Tampere, Finland

4. Department of Pathology, Tampere University Hospital, Tampere, Finland

5. Institut de Pharmacologie Moleculaire et Cellulaire CNRS UMR 6097 and Université de Nice Sophia Antipolis, Valbonne, France

6. Center for Nuclear Receptors and Cell Signaling, Department of Biology and Biochemistry, University of Houston, Houston, Texas 77204-5056

Abstract

ABSTRACT Genetic and experimental evidence points to a critical involvement of the atypical mammalian orphan receptor DAX-1 in reproductive development and steroidogenesis. Unlike conventional nuclear receptors, DAX-1 appears not to function as a DNA-bound transcription factor. Instead, it has acquired the capability to act as a transcriptional corepressor of steroidogenic factor 1 (SF-1). The interplay of DAX-1 and SF-1 is considered a central, presumably ligand-independent element of adrenogonadal development and function that requires tight regulation. This raises a substantial interest in identifying its modulators and the regulatory signals involved. Here, we uncover molecular mechanisms that link DAX-1 to the ubiquitin modification system via functional interaction with the E3 ubiquitin ligase RNF31. We demonstrate that RNF31 is coexpressed with DAX-1 in steroidogenic tissues and participates in repressing steroidogenic gene expression. We provide evidence for the in vivo existence of a corepressor complex containing RNF31 and DAX-1 at the promoters of the StAR and CYP19 genes. Our data suggest that RNF31 functions to stabilize DAX-1, which might be linked to DAX-1 monoubiquitination. In conclusion, RNF31 appears to be required for DAX-1 to repress transcription, provides means to regulate DAX-1 in ligand-independent ways, and emerges as a relevant coregulator of steroidogenic pathways governing physiology and disease.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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