Developmental isoform diversity in the human neocortex informs neuropsychiatric risk mechanisms

Collection Type
Dynamic
Keywords
neocortex long read sequencing single cell isoform switching RNA binding protein

"RNA splicing is highly prevalent in the brain and has strong links to neuropsychiatric disorders, yet the role of cell-type-specific splicing or transcript-isoform diversity during human brain development has not been systematically investigated. Here, we leveraged single-molecule long-read sequencing to deeply profile the full-length transcriptome of the germinal zone (GZ) and cortical plate (CP) regions of the developing human neocortex at tissue and single-cell resolution. We identified 214,516 unique isoforms, of which 72.6% are novel (not annotated in Gencode-v33), and uncovered a substantial contribution of transcript-isoform diversity, regulated by RNA binding proteins, in defining cellular identity in the developing neocortex. We leveraged this comprehensive isoform-centric gene annotation to re-prioritize thousands of rare de novo risk variants and elucidate genetic risk mechanisms for neuropsychiatric disorders."

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Public data available under CC BY 4.0; controlled access data subject to data use certification

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human

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  • Developmental isoform diversity in the human neocortex informs neuropsychiatric risk mechanisms: Analysis

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