The Ubiquitin Carboxyl Hydrolase BAP1 Forms a Ternary Complex with YY1 and HCF-1 and Is a Critical Regulator of Gene Expression

Author:

Yu Helen1,Mashtalir Nazar1,Daou Salima1,Hammond-Martel Ian1,Ross Julie1,Sui Guangchao2,Hart Gerald W.3,Rauscher Frank J.4,Drobetsky Elliot1,Milot Eric1,Shi Yang5,Affar El Bachir1

Affiliation:

1. Maisonneuve-Rosemont Hospital Research Center, Department of Medicine and Department of Biochemistry, University of Montréal, Montréal, Canada

2. Wake Forest University School of Medicine, Winston-Salem, North Carolina

3. Johns Hopkins University School of Medicine, Baltimore, Maryland

4. Wistar Institute, Philadelphia, Pennsylvania

5. Department of Pathology, Harvard Medical School, and Division of Newborn Medicine, Department of Medicine, Children's Hospital, Boston, Massachusetts

Abstract

ABSTRACT The candidate tumor suppressor BAP1 is a deubiquitinating enzyme (DUB) involved in the regulation of cell proliferation, although the molecular mechanisms governing its function remain poorly defined. BAP1 was recently shown to interact with and deubiquitinate the transcriptional regulator host cell factor 1 (HCF-1). Here we show that BAP1 assembles multiprotein complexes containing numerous transcription factors and cofactors, including HCF-1 and the transcription factor Yin Yang 1 (YY1). Through its coiled-coil motif, BAP1 directly interacts with the zinc fingers of YY1. Moreover, HCF-1 interacts with the middle region of YY1 encompassing the glycine-lysine-rich domain and is essential for the formation of a ternary complex with YY1 and BAP1 in vivo . BAP1 activates transcription in an enzymatic-activity-dependent manner and regulates the expression of a variety of genes involved in numerous cellular processes. We further show that BAP1 and HCF-1 are recruited by YY1 to the promoter of the cox7c gene, which encodes a mitochondrial protein used here as a model of BAP1-activated gene expression. Our findings (i) establish a direct link between BAP1 and the transcriptional control of genes regulating cell growth and proliferation and (ii) shed light on a novel mechanism of transcription regulation involving ubiquitin signaling.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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