Literature DB >> 15927959

Functional characterization of JMJD2A, a histone deacetylase- and retinoblastoma-binding protein.

Steven G Gray1, Antonio H Iglesias, Fernando Lizcano, Raul Villanueva, Sandra Camelo, Hisaka Jingu, Bin T Teh, Noriyuki Koibuchi, William W Chin, Efi Kokkotou, Fernando Dangond.   

Abstract

To effectively direct targeted repression, the class I histone deacetylases (HDACs) associate with many important regulatory proteins. In this paper we describe the molecular characterization of a member of the Jumonji domain 2 (JMJD2) family of proteins, and demonstrate its binding to both class I HDACs and the retinoblastoma protein (pRb). JMJD2 proteins are characterized by the presence of two leukemia-associated protein/plant homeodomain (LAP/PHD) zinc fingers, one JmjN, one JmjC (containing an internal retinoblastoma-binding protein 2 (RBBP2)-like sequence), and two Tudor domains. The first member of this group, JMJD2A, is widely expressed in human tissues and cell lines, and high endogenous expression of JMJD2A mRNA was found in several cell types, including human T-cell lymphotropic virus 1 (HTLV-1)-infected cell lines. JMJD2A and JMJD2B exhibit cell type-specific responses to the HDAC inhibitor trichostatin A. We show that the JMJD2A protein associates in vivo with pRb and class I HDACs, and mediates repression of E2F-regulated promoters. In HTLV-1 virus-infected cells, we find that JMJD2A binds to the viral Tax protein. Antibodies to JMJD2A recognize the native protein but also a half-sized protein fragment, the latter up-regulated in THP-1 cells during the G(2)/M phase of the cell cycle. The ability of JMJD2A to associate with pRb and HDACs and potentiate pRb-mediated repression of E2F-regulated promoters implies an important role for this protein in cell proliferation and oncogenesis.

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Year:  2005        PMID: 15927959     DOI: 10.1074/jbc.M413687200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  55 in total

1.  Negative and positive regulation of gene expression by mouse histone deacetylase 1.

Authors:  Gordin Zupkovitz; Julia Tischler; Markus Posch; Iwona Sadzak; Katrin Ramsauer; Gerda Egger; Reinhard Grausenburger; Norbert Schweifer; Susanna Chiocca; Thomas Decker; Christian Seiser
Journal:  Mol Cell Biol       Date:  2006-08-28       Impact factor: 4.272

2.  Tudor, MBT and chromo domains gauge the degree of lysine methylation.

Authors:  Jeesun Kim; Jeremy Daniel; Alexsandra Espejo; Aimee Lake; Murli Krishna; Li Xia; Yi Zhang; Mark T Bedford
Journal:  EMBO Rep       Date:  2006-01-13       Impact factor: 8.807

3.  Jmjd2b antagonizes H3K9 trimethylation at pericentric heterochromatin in mammalian cells.

Authors:  Barna D Fodor; Stefan Kubicek; Masato Yonezawa; Roderick J O'Sullivan; Roopsha Sengupta; Laura Perez-Burgos; Susanne Opravil; Karl Mechtler; Gunnar Schotta; Thomas Jenuwein
Journal:  Genes Dev       Date:  2006-05-31       Impact factor: 11.361

4.  The JMJD2 members of histone demethylase revisited.

Authors:  Haidong Tan; Siguo Wu; Jinxia Wang; Zongbao Kent Zhao
Journal:  Mol Biol Rep       Date:  2007-08-01       Impact factor: 2.316

5.  Histone lysine demethylase (KDM) subfamily 4: structures, functions and therapeutic potential.

Authors:  Roselyne M Labbé; Andreana Holowatyj; Zeng-Quan Yang
Journal:  Am J Transl Res       Date:  2013-12-01       Impact factor: 4.060

6.  Noncanonical NF-κB pathway controls the production of type I interferons in antiviral innate immunity.

Authors:  Jin Jin; Hongbo Hu; Haiyan S Li; Jiayi Yu; Yichuan Xiao; George C Brittain; Qiang Zou; Xuhong Cheng; Frédérick A Mallette; Stephanie S Watowich; Shao-Cong Sun
Journal:  Immunity       Date:  2014-03-20       Impact factor: 31.745

Review 7.  Erasing the methyl mark: histone demethylases at the center of cellular differentiation and disease.

Authors:  Paul A C Cloos; Jesper Christensen; Karl Agger; Kristian Helin
Journal:  Genes Dev       Date:  2008-05-01       Impact factor: 11.361

8.  Histone demethylase JMJD2A regulates Kaposi's sarcoma-associated herpesvirus replication and is targeted by a viral transcriptional factor.

Authors:  Pei-Ching Chang; Latricia D Fitzgerald; Datsun A Hsia; Yoshihiro Izumiya; Chun-Yi Wu; Wen-Ping Hsieh; Su-Fang Lin; Mel Campbell; Kit S Lam; Paul A Luciw; Clifford G Tepper; Hsing-Jien Kung
Journal:  J Virol       Date:  2011-01-12       Impact factor: 5.103

9.  KDM4A Coactivates E2F1 to Regulate the PDK-Dependent Metabolic Switch between Mitochondrial Oxidation and Glycolysis.

Authors:  Ling-Yu Wang; Chiu-Lien Hung; Yun-Ru Chen; Joy C Yang; Junjian Wang; Mel Campbell; Yoshihiro Izumiya; Hong-Wu Chen; Wen-Ching Wang; David K Ann; Hsing-Jien Kung
Journal:  Cell Rep       Date:  2016-09-13       Impact factor: 9.423

10.  Combinatorial profiling of chromatin binding modules reveals multisite discrimination.

Authors:  Adam L Garske; Samuel S Oliver; Elise K Wagner; Catherine A Musselman; Gary LeRoy; Benjamin A Garcia; Tatiana G Kutateladze; John M Denu
Journal:  Nat Chem Biol       Date:  2010-02-28       Impact factor: 15.040

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