Understanding the genetic factors underlying neurodevelopmental and neuropsychiatric disorders is a major challenge given their prevalence and potential severity for quality of life. While large-scale genomic screens have made major advances in this area, for many disorders the genetic underpinnings are complex and poorly understood. To date the field has focused predominantly on protein coding variation, but given the importance of tightly controlled gene expression for normal brain development and disorder, variation that affects non-coding regulatory regions of the genome is likely to play an important role in these phenotypes. Herein we show the importance of 3 prime untranslated region (3'UTR) non-coding regulatory variants across neur...
SummaryBalanced chromosomal abnormalities (BCAs) represent a relatively untapped reservoir of single...
Nucleotide methylation has a function in genomic repair, and in the regulation of transcription and ...
Tissue-specific regulatory regions harbor substantial genetic risk for disease. Because brain develo...
Understanding the genetic factors underlying neurodevelopmental and neuropsychiatric disorders is a ...
Understanding the genetic factors underlying neurodevelopmental and neuropsychiatric disorders is a ...
A number of genetic studies have identified rare protein-coding DNA variations associated with autis...
Abstract Determining the genetic architecture of liability for complex neuropsychiatric disorders li...
The development and function of our brain are governed by a genetic blueprint, which reflects dynami...
Background22q11.2 copy number variants are among the most highly penetrant genetic risk variants for...
Summary The development and function of our brain are governed by a genetic blueprint, which reflect...
Neurodevelopmental disorders have a strong genetic component, but despite widespread efforts, the sp...
Over the past decade, decreases in the cost of DNA sequencing has allowed for a surge in the amount ...
Many putative genetic factors that confer risk to neurodevelopmental disorders such as autism spectr...
Over the past decade, large-scale genetic studies have successfully identified hundreds of genetic v...
Neurodevelopmental and neuropsychiatric diseases, such as autism spectrum disorder (ASD) and schizop...
SummaryBalanced chromosomal abnormalities (BCAs) represent a relatively untapped reservoir of single...
Nucleotide methylation has a function in genomic repair, and in the regulation of transcription and ...
Tissue-specific regulatory regions harbor substantial genetic risk for disease. Because brain develo...
Understanding the genetic factors underlying neurodevelopmental and neuropsychiatric disorders is a ...
Understanding the genetic factors underlying neurodevelopmental and neuropsychiatric disorders is a ...
A number of genetic studies have identified rare protein-coding DNA variations associated with autis...
Abstract Determining the genetic architecture of liability for complex neuropsychiatric disorders li...
The development and function of our brain are governed by a genetic blueprint, which reflects dynami...
Background22q11.2 copy number variants are among the most highly penetrant genetic risk variants for...
Summary The development and function of our brain are governed by a genetic blueprint, which reflect...
Neurodevelopmental disorders have a strong genetic component, but despite widespread efforts, the sp...
Over the past decade, decreases in the cost of DNA sequencing has allowed for a surge in the amount ...
Many putative genetic factors that confer risk to neurodevelopmental disorders such as autism spectr...
Over the past decade, large-scale genetic studies have successfully identified hundreds of genetic v...
Neurodevelopmental and neuropsychiatric diseases, such as autism spectrum disorder (ASD) and schizop...
SummaryBalanced chromosomal abnormalities (BCAs) represent a relatively untapped reservoir of single...
Nucleotide methylation has a function in genomic repair, and in the regulation of transcription and ...
Tissue-specific regulatory regions harbor substantial genetic risk for disease. Because brain develo...