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PMID: 17011572 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Class II HDACs mediate CaMK-dependent signaling to NRSF in ventricular myocytes.

Journal of molecular and cellular cardiology ·Vol. 41 ·No. 6 ·2006-12-00 ·Pages 1010-22

Nakagawa Y, Kuwahara K, Harada M, Takahashi N, Yasuno S, Adachi Y, Kawakami R, Nakanishi M, Tanimoto K, Usami S, Kinoshita H, Saito Y, Nakao K

Abstract

We recently reported that a transcriptional repressor, neuron-restrictive silencer factor (NRSF), represses expression of fetal cardiac genes, including atrial and brain natriuretic peptide (ANP and BNP), by recruiting class I histone deacetylase (HDAC) and that attenuation of NRSF-mediated repression contributes to the reactivation of fetal gene expression during cardiac hypertrophy. The molecular mechanism by which the activity of the NRSF-HDAC complex is inhibited in cardiac hypertrophy remains unresolved, however. In the present study, we show that class II HDACs (HDAC4 and 5), which are Ca/calmodulin-dependent kinase (CaMK)-responsive repressors of hypertrophic signaling, associate with NRSF and participate in NRSF-mediated repression. Blockade of the CaMK-class II HDAC signaling pathway using a CaMK-resistant HDAC5 mutant, a CaMK inhibitor (KN62) or a dominant-negative CaMK mutant inhibited ET-1-inducible ANP and BNP promoter activity, but that inhibitory effect was abolished by mutation of the neuron-restrictive silencer element (NRSE) within the ANP and BNP promoter. In addition, adenovirus-mediated expression of a dominant-negative NRSF mutant abolished the inhibitory effect of KN62 on ET-1-inducible endogenous ANP gene expression in ventricular myocytes. Finally, the interaction between NRSF and class II HDACs was decreased in both in vitro and in vivo models of cardiac hypertrophy. These findings show that ET-1-induced CaMK signaling disrupts class II HDAC-NRSF repressor complexes, thereby enabling activation of ANP and BNP gene transcription in ventricular myocytes, and shed light on a novel mechanism by which the fetal cardiac gene program is reactivated.

MeSH Terms
Animals Atrial Natriuretic Factor/genetics Base Sequence Calcium-Calmodulin-Dependent Protein Kinases/metabolism Cardiomegaly/etiology,genetics,metabolism DNA Probes/genetics Disease Models, Animal Endothelin-1/pharmacology Histone Deacetylases/classification,genetics,metabolism Humans In Vitro Techniques Mice Mutation Myocytes, Cardiac/metabolism Rats Repressor Proteins/genetics,metabolism Signal Transduction Transcription Factors/genetics,metabolism
Chemicals
DNA Probes Endothelin-1 RE1-silencing transcription factor Repressor Proteins Transcription Factors Atrial Natriuretic Factor Calcium-Calmodulin-Dependent Protein Kinases Hdac5 protein, rat Histone Deacetylases
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Nakagawa Yasuaki
Department of Medicine and Clinical Science, Kyoto Graduate School of Medicine, 54 Shogoinkawahara-cho, Sakyo-ku, Kyoto-city, Kyoto 606-8507, Japan.
Kuwahara Koichiro
Harada Masaki
Takahashi Nobuki
Yasuno Shinji
Adachi Yuichiro
Kawakami Rika
Nakanishi Michio
Tanimoto Keiji
Usami Satoru
Kinoshita Hideyuki
Saito Yoshihiko
Nakao Kazuwa
Article Info
Journal
Journal of molecular and cellular cardiology
Abbr.
J Mol Cell Cardiol
ISSN
0022-2828
Published
2006-12-00
Epub
2006-00-02
Pages
1010-22
Language
English
Region
England
NLM ID
0262322
Subset
IM
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