Study / S6BLFCMQ32023-02-09
Characterization of De Novo Promoter Variants in Autism Spectrum Disorder with Massively Parallel Reporter Assays
Justin Koesterich, Joon-Yong An, Fumitaka Inoue, Ajuni Sohota, Nadav Ahituv et al.
About this study
Autism spectrum disorder (ASD) is a common, complex, and highly heritable condition with contributions from both common and rare genetic variations. While disruptive, rare variants in protein-coding regions clearly contribute to symptoms, the role of rare non-coding remains unclear. Variants in these regions, including promoters, can alter downstream RNA and protein quantity; however, the functional impacts of specific variants observed in ASD cohorts remain largely uncharacterized. Here, we analyzed 3600 de novo mutations in promoter regions previously identified by whole-genome sequencing of autistic probands and neurotypical siblings to test the hypothesis that mutations in cases have a greater functional impact than those in controls. We leveraged massively parallel reporter assays (MPRAs) to detect transcriptional consequences of these variants in neural progenitor cells and identified 165 functionally high confidence de novo variants (HcDNVs). While these HcDNVs are enriched for markers of active transcription, disruption to transcription factor binding sites, and open chromatin, we did not identify differences in functional impact based on ASD diagnostic status.
Full author list & citation
Justin Koesterich, Joon-Yong An, Fumitaka Inoue, Ajuni Sohota, Nadav Ahituv, Stephan J. Sanders, Anat Kreimer. Characterization of De Novo Promoter Variants in Autism Spectrum Disorder with Massively Parallel Reporter Assays. 2023-02-09. https://doi.org/10.3390/ijms24043509
Experiments 1
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A lentiviral MPRA tested 200-bp GRCh38 reference and alternate promoter sequences for de novo variants identified in autism spectrum disorder cases and unaffected sibling controls. Three independent human N2 neural progenitor cell cultures were infected and harvested four days later for paired DNA/RNA barcode sequencing; the processed table contains the 3,090 variant pairs represented in the published variant-level results.