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Myocyte Enhancer Factor 2 - an overview | ScienceDirect Topics
Myocyte Enhancer Factor 2 - an overview | ScienceDirect Topics

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

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

Emerging roles for MEF2 transcription factors in memory - Rashid - 2014 -  Genes, Brain and Behavior - Wiley Online Library
Emerging roles for MEF2 transcription factors in memory - Rashid - 2014 - Genes, Brain and Behavior - Wiley Online Library

Signal-dependent activation of the MEF2 transcription factor by  dissociation from histone deacetylases | PNAS
Signal-dependent activation of the MEF2 transcription factor by dissociation from histone deacetylases | PNAS

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

JCI - Histone methyltransferase MLL4 controls myofiber identity and muscle  performance through MEF2 interaction
JCI - Histone methyltransferase MLL4 controls myofiber identity and muscle performance through MEF2 interaction

Myocyte Enhancer Factor-2 (MEF2) in Diseases of Central Nervous System: A  Mini Review
Myocyte Enhancer Factor-2 (MEF2) in Diseases of Central Nervous System: A Mini Review

Pro-survival function of MEF2 in cardiomyocytes is enhanced by β-blockers |  Cell Death Discovery
Pro-survival function of MEF2 in cardiomyocytes is enhanced by β-blockers | Cell Death Discovery

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

MEF2 in cardiac hypertrophy in response to hypertension - ScienceDirect
MEF2 in cardiac hypertrophy in response to hypertension - ScienceDirect

In Vivo Analysis of MEF2 Transcription Factors in Synapse Regulation and  Neuronal Survival | PLOS ONE
In Vivo Analysis of MEF2 Transcription Factors in Synapse Regulation and Neuronal Survival | PLOS ONE

The link between MEF2 proteins and signals in various types of cells... |  Download Scientific Diagram
The link between MEF2 proteins and signals in various types of cells... | Download Scientific Diagram

Protein Kinase D1 Stimulates MEF2 Activity in Skeletal Muscle and Enhances  Muscle Performance | Molecular and Cellular Biology
Protein Kinase D1 Stimulates MEF2 Activity in Skeletal Muscle and Enhances Muscle Performance | Molecular and Cellular Biology

MEF2: a calcium-dependent regulator of cell division, differentiation and  death: Trends in Biochemical Sciences
MEF2: a calcium-dependent regulator of cell division, differentiation and death: Trends in Biochemical Sciences

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

Mef2 and the skeletal muscle differentiation program - ScienceDirect
Mef2 and the skeletal muscle differentiation program - ScienceDirect

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

MEF2C repressor variant deregulation leads to cell cycle re-entry and  development of heart failure - eBioMedicine
MEF2C repressor variant deregulation leads to cell cycle re-entry and development of heart failure - eBioMedicine

Figure 2 | Emerging evidence for crosstalk between Nrf2 and mitochondria in  physiological homeostasis and in heart disease | SpringerLink
Figure 2 | Emerging evidence for crosstalk between Nrf2 and mitochondria in physiological homeostasis and in heart disease | SpringerLink

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

MEF2 Is an In Vivo Immune-Metabolic Switch: Cell
MEF2 Is an In Vivo Immune-Metabolic Switch: Cell

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

The Transcription Factor MEF2 Directs Developmental Visually Driven  Functional and Structural Metaplasticity: Cell
The Transcription Factor MEF2 Directs Developmental Visually Driven Functional and Structural Metaplasticity: Cell

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

Mef2 - Wikipedia
Mef2 - Wikipedia

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