Single-Cell full-length Isoform Sequencing Unveils Transcriptional Dysregulation in Autism Spectrum Disorder During Cerebral Cortex Development
Xu, X.; Wang, J.; Hu, K.; Su, D.; Huang, Q.; Fan, X.; Fan, X.
Show abstract
Regulation of RNA splicing is pivotal in neural development, with established gene isoform expression patterns (1, 2). However, the specific roles of isoform diversity across cell types in both healthy and diseased brains warrant further investigation. Here, we employed a combination of metabolic RNA labeling using 4-thiouridine (4sU) and long-read sequencing based single-cell full-length transcriptome sequencing to capture newly synthesized transcripts within the developing mouse cortices. This approach allowed us to identify predetermined cell states supported by new RNAs and the driving isoforms of transcription factors that regulate the development of deep-and upper-layer neurons. Through detailed single-cell isoform expression analysis, we discovered novel cell type-specific isoforms and uncovered isoform switch events that modulate neuron differentiation. Additionally, we investigated isoform regulation associated with Autism Spectrum Disorder (ASD) during embryonic development of BTBR T+ Itpr3tf (BTBR) mice. Notably, our findings indicate a premature emergence of cortical projection neurons (CPNs) with an immature identity in ASD-affected cortices. These CPNs exhibit the highest degree of differential transcript usage (DTU), significantly overlapping with their cell type markers and being enriched in RNA splicing processes. Exon inclusion was significantly enriched in ASD and the related RNA binding proteins (RBPs) were extracted, nearly 60% of which have been reported as ASD risk genes. Lastly, we revealed a reduction in isoform diversity in ASD, potentially linked to H3K27ac dysregulation in the associated genes. Collectively, our study marks a substantial advancement in understanding the molecular basis of cortical development and function, paving the way for future studies on neurodevelopmental disorders.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- An antisense oligonucleotide-based strategy to ameliorate cognitive dysfunction in the 22q11.2 Deletion Syndrome 95%
- Truncated radial glia as a common precursor in the late corticogenesis of gyrencephalic mammals 95%
- Transient regulation of focal adhesion via Tensin3 is required for nascent oligodendrocyte differentiation 95%
Similar papers in this journal
- The patient-specific mouse model with Foxg1 frameshift mutation provides insights into the pathophysiology of FOXG1 syndrome 96%
- Identifying cell type specific driver genes in autism-associated copy number loci from cerebral organoids 96%
- CTCF mutation at R567 causes developmental disorders via 3D genome rearrangement and abnormal neurodevelopment 96%
Similar papers in this journal
- Genome-wide, integrative analysis implicates circular RNA dysregulation in autism and the corresponding circular RNA-microRNA-mRNA regulatory axes 96%
- Single cell discovery of m6A RNA modifications in the hippocampus 95%
- Co-expression enrichment analysis at the single-cell level reveals convergent defects in neural progenitor cells and their cell-type transitions in neurodevelopmental disorders 95%
Similar papers in this journal
- Single-Cell Multiome Sequencing Clarifies Enteric Glial Cell Diversity and Identifies an Intraganglionic Population Poised for Neurogenesis 94%
- Astrocytic cell adhesion genes linked to schizophrenia correlate with synaptic programs in neurons 94%
- Compensation between FOXP transcription factors maintains proper striatal function 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.