نتایج جستجو برای: mef2 و hdac4

تعداد نتایج: 761841  

2017
Eros Di Giorgio Elisa Franforte Sebastiano Cefalù Sabrina Rossi Angelo Paolo Dei Tos Monica Brenca Maurizio Polano Roberta Maestro Harikrishnareddy Paluvai Raffaella Picco Claudio Brancolini

The contribution of MEF2 TFs to the tumorigenic process is still mysterious. Here we clarify that MEF2 can support both pro-oncogenic or tumor suppressive activities depending on the interaction with co-activators or co-repressors partners. Through these interactions MEF2 supervise histone modifications associated with gene activation/repression, such as H3K4 methylation and H3K27 acetylation. ...

Journal: :Molecular biology of the cell 2004
Gabriela Paroni Michela Mizzau Clare Henderson Giannino Del Sal Claudio Schneider Claudio Brancolini

Histone deacetylases (HDACs) are important regulators of gene expression as part of transcriptional corepressor complexes. Here, we demonstrate that caspases can repress the activity of the myocyte enhancer factor (MEF)2C transcription factor by regulating HDAC4 processing. Cleavage of HDAC4 occurs at Asp 289 and disjoins the carboxy-terminal fragment, localized into the cytoplasm, from the ami...

Journal: :Developmental cell 2007
Michael A Arnold Yuri Kim Michael P Czubryt Dillon Phan John McAnally Xiaoxia Qi John M Shelton James A Richardson Rhonda Bassel-Duby Eric N Olson

Chondrocyte hypertrophy is essential for endochondral bone development. Unexpectedly, we discovered that MEF2C, a transcription factor that regulates muscle and cardiovascular development, controls bone development by activating the gene program for chondrocyte hypertrophy. Genetic deletion of Mef2c or expression of a dominant-negative MEF2C mutant in endochondral cartilage impairs hypertrophy,...

Journal: :Molecular and cellular biology 2001
T A McKinsey C L Zhang E N Olson

Activation of muscle-specific genes by the MEF2 transcription factor is inhibited by class II histone deacetylases (HDACs) 4 and 5, which contain carboxy-terminal deacetylase domains and amino-terminal extensions required for association with MEF2. The inhibitory action of HDACs is overcome by myogenic signals which disrupt MEF2-HDAC interactions and stimulate nuclear export of these transcript...

Journal: :Physiological reviews 2013
Erik A Richter Mark Hargreaves

Glucose is an important fuel for contracting muscle, and normal glucose metabolism is vital for health. Glucose enters the muscle cell via facilitated diffusion through the GLUT4 glucose transporter which translocates from intracellular storage depots to the plasma membrane and T-tubules upon muscle contraction. Here we discuss the current understanding of how exercise-induced muscle glucose up...

Journal: :EMBO Reports 2009
Angela Nebbioso Fabio Manzo Marco Miceli Mariarosaria Conte Lucrezia Manente Alfonso Baldi Antonio De Luca Dante Rotili Sergio Valente Antonello Mai Alessandro Usiello Hinrich Gronemeyer Lucia Altucci

Histone deacetylase (HDAC) inhibitors are promising new epi-drugs, but the presence of both class I and class II enzymes in HDAC complexes precludes a detailed elucidation of the individual HDAC functions. By using the class II-specific HDAC inhibitor MC1568, we separated class I- and class II-dependent effects and defined the roles of class II enzymes in muscle differentiation in cultured cell...

Journal: :Molecular and cellular biology 2008
Min Du Robert L S Perry Nathaniel B Nowacki Joseph W Gordon Jahan Salma Jianzhong Zhao Arif Aziz Joseph Chan K W Michael Siu John C McDermott

Activation of protein kinase A (PKA) by elevation of the intracellular cyclic AMP (cAMP) level inhibits skeletal myogenesis. Previously, an indirect modulation of the myogenic regulatory factors (MRFs) was implicated as the mechanism. Because myocyte enhancer factor 2 (MEF2) proteins are key regulators of myogenesis and obligatory partners for the MRFs, here we assessed whether these proteins c...

Journal: :Journal of virology 2004
Patrick Lomonte Joëlle Thomas Pascale Texier Cécile Caron Saadi Khochbin Alberto L Epstein

This study describes the physical and functional interactions between ICP0 of herpes simplex virus type 1 and class II histone deacetylases (HDACs) 4, 5, and 7. Class II HDACs are mainly known for their participation in the control of cell differentiation through the regulation of the activity of the transcription factor MEF2 (myocyte enhancer factor 2), implicated in muscle development and neu...

2009
Indrani Rajan Katerina V. Savelieva Gui-Lan Ye Ching-yun Wang Murtaza M. Malbari Carl Friddle Thomas H. Lanthorn Wandong Zhang

Histone deacetylase 4 (HDAC4) has been associated with muscle & bone development [1]-[6]. N-terminal MEF2 and RUNX2 binding domains of HDAC4 have been shown to mediate these effects in vitro. A complete gene knockout has been reported to result in premature ossification and associated defects resulting in postnatal lethality [6]. We report a viral insertion mutation that deletes the putative de...

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