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PDF] MEF2: a central regulator of diverse developmental programs | Semantic  Scholar
PDF] MEF2: a central regulator of diverse developmental programs | Semantic Scholar

MHCI Requires MEF2 Transcription Factors to Negatively Regulate Synapse  Density during Development and in Disease | Journal of Neuroscience
MHCI Requires MEF2 Transcription Factors to Negatively Regulate Synapse Density during Development and in Disease | Journal of Neuroscience

Inflammation leads through PGE/EP3 signaling to HDAC5/MEF2‐dependent  transcription in cardiac myocytes | EMBO Molecular Medicine
Inflammation leads through PGE/EP3 signaling to HDAC5/MEF2‐dependent transcription in cardiac myocytes | EMBO Molecular Medicine

Heterogeneous myocyte enhancer factor-2 (Mef2) activation in myocytes  predicts focal scarring in hypertrophic cardiomyopathy | PNAS
Heterogeneous myocyte enhancer factor-2 (Mef2) activation in myocytes predicts focal scarring in hypertrophic cardiomyopathy | PNAS

Direct Interaction between Myocyte Enhancer Factor 2 (MEF2) and Protein  Phosphatase 1α Represses MEF2-Dependent Gene Expression | Molecular and  Cellular Biology
Direct Interaction between Myocyte Enhancer Factor 2 (MEF2) and Protein Phosphatase 1α Represses MEF2-Dependent Gene Expression | Molecular and Cellular Biology

S-Nitrosylation of MEF2: a common mechanism underlying neurological  disorders? | Future Neurology
S-Nitrosylation of MEF2: a common mechanism underlying neurological disorders? | Future Neurology

MEF2 (Myocyte Enhancer Factor 2) Is Essential for Endothelial Homeostasis  and the Atheroprotective Gene Expression Program | Arteriosclerosis,  Thrombosis, and Vascular Biology
MEF2 (Myocyte Enhancer Factor 2) Is Essential for Endothelial Homeostasis and the Atheroprotective Gene Expression Program | Arteriosclerosis, Thrombosis, and Vascular Biology

Activity-Dependent Regulation of MEF2 Transcription Factors Suppresses  Excitatory Synapse Number | Science
Activity-Dependent Regulation of MEF2 Transcription Factors Suppresses Excitatory Synapse Number | Science

Heterogeneous myocyte enhancer factor-2 (Mef2) activation in myocytes  predicts focal scarring in hypertrophic cardiomyopathy | PNAS
Heterogeneous myocyte enhancer factor-2 (Mef2) activation in myocytes predicts focal scarring in hypertrophic cardiomyopathy | PNAS

Exercise and MEF2–HDAC interactions
Exercise and MEF2–HDAC interactions

JCI - Undermining the endothelium by ablation of MAPK-MEF2 signaling
JCI - Undermining the endothelium by ablation of MAPK-MEF2 signaling

Inflammation leads through PGE/EP3 signaling to HDAC5/MEF2‐dependent  transcription in cardiac myocytes | EMBO Molecular Medicine
Inflammation leads through PGE/EP3 signaling to HDAC5/MEF2‐dependent transcription in cardiac myocytes | EMBO Molecular Medicine

IJMS | Free Full-Text | Histone H3 Methyltransferase Suv39h1 Prevents  Myogenic Terminal Differentiation by Repressing MEF2 Activity in Muscle  Cells
IJMS | Free Full-Text | Histone H3 Methyltransferase Suv39h1 Prevents Myogenic Terminal Differentiation by Repressing MEF2 Activity in Muscle Cells

Compensatory Binding by MEF2A at a Subset of MEF2-Activated Target... |  Download Scientific Diagram
Compensatory Binding by MEF2A at a Subset of MEF2-Activated Target... | Download Scientific Diagram

Immune response - Function of MEF2 in T lymphocytes Pathway Map - PrimePCR  | Life Science | Bio-Rad
Immune response - Function of MEF2 in T lymphocytes Pathway Map - PrimePCR | Life Science | Bio-Rad

JCDD | Free Full-Text | The Function of the MEF2 Family of Transcription  Factors in Cardiac Development, Cardiogenomics, and Direct Reprogramming
JCDD | Free Full-Text | The Function of the MEF2 Family of Transcription Factors in Cardiac Development, Cardiogenomics, and Direct Reprogramming

JCI - Activation of the MEF2 transcription factor in skeletal muscles from  myotonic mice
JCI - Activation of the MEF2 transcription factor in skeletal muscles from myotonic mice

MEF2: a calcium-dependent regulator of cell division, differentiation and  death - ScienceDirect
MEF2: a calcium-dependent regulator of cell division, differentiation and death - ScienceDirect