Point mutations and structural variants that directly disrupt the coding sequence of MEF2C have been associated with a spectrum of neurodevelopmental disorders (NDDs). However, the impact of MEF2C haploinsufficiency on neurodevelopmental pathways and synaptic processes is not well understood, nor are the complex mechanisms that govern its regulation. To explore the functional changes associated with structural variants that alter MEF2C expression and/or regulation, we generated an allelic series of 204 isogenic human induced pluripotent stem cell (hiPSC)-derived neural stem cells and glutamatergic induced neurons. These neuronal models harbored CRISPR-engineered mutations that involved direct deletion of MEF2C or deletion of the boundary po...
The MEF2C gene encodes a transcription factor known to play a crucial role in molecular pathways aff...
Numerous brain disorders arise from disruptions in one or more genetically-regulated processes that ...
Mutations in the gene encoding the methyl-CpG-binding protein MECP2 are the major cause of Rett synd...
Structural variants have the potential to create long-range positional effects, uncouple genes from ...
Myocyte enhancer factor 2C (MEF2C) is a core transcription factor in neurodevelopment and aberration...
Myocyte enhancer factor 2C (MEF2C) is a core transcription factor in neurodevelopment. In the contex...
Myocyte enhancer factor 2 C (MEF2C) is an important transcription factor during neurodevelopment. Mu...
SummaryAlthough many transcription factors are known to control important aspects of neural developm...
Although many transcription factors are known to control important aspects of neural development, th...
MEF2 (A-D) transcription factors govern development, differentiation and maintenance of various cell...
MEF2 (A–D) transcription factors govern development, differentiation and maintenance of various cell...
Numerous genetic variants associated with MEF2C are linked to autism, intellectual disability (ID) a...
Induced pluripotent stem (iPS) cell technology is an attractive new avenue for studying the reorgani...
Mutations in the gene encoding the methyl-CpG-binding protein MECP2 are the major cause of Rett synd...
The MEF2C gene encodes a transcription factor known to play a crucial role in molecular pathways aff...
Numerous brain disorders arise from disruptions in one or more genetically-regulated processes that ...
Mutations in the gene encoding the methyl-CpG-binding protein MECP2 are the major cause of Rett synd...
Structural variants have the potential to create long-range positional effects, uncouple genes from ...
Myocyte enhancer factor 2C (MEF2C) is a core transcription factor in neurodevelopment and aberration...
Myocyte enhancer factor 2C (MEF2C) is a core transcription factor in neurodevelopment. In the contex...
Myocyte enhancer factor 2 C (MEF2C) is an important transcription factor during neurodevelopment. Mu...
SummaryAlthough many transcription factors are known to control important aspects of neural developm...
Although many transcription factors are known to control important aspects of neural development, th...
MEF2 (A-D) transcription factors govern development, differentiation and maintenance of various cell...
MEF2 (A–D) transcription factors govern development, differentiation and maintenance of various cell...
Numerous genetic variants associated with MEF2C are linked to autism, intellectual disability (ID) a...
Induced pluripotent stem (iPS) cell technology is an attractive new avenue for studying the reorgani...
Mutations in the gene encoding the methyl-CpG-binding protein MECP2 are the major cause of Rett synd...
The MEF2C gene encodes a transcription factor known to play a crucial role in molecular pathways aff...
Numerous brain disorders arise from disruptions in one or more genetically-regulated processes that ...
Mutations in the gene encoding the methyl-CpG-binding protein MECP2 are the major cause of Rett synd...