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Updated: Jun 19, 2026

Hypoxia Alters miRNAs Levels Involved in Non-Mendelian Inheritance of Autism Spectrum Disorder in Mice
Published on: July 11, 2025
Haplotype-resolved methylomes reveal parent-of-origin DNA methylation imbalance in autism spectrum disorder
Lu Xia1,2, Hailiang Guo3, Ruiting Liu1
1Center for Medical Genetics and Hunan Key Laboratory of Medical Genetics, School of Life Sciences, Central South University, Changsha, 410008 Hunan, China.
Abstract:
Epigenetic dysregulation plays an essential role in autism spectrum disorder (ASD), but the parent-of-origin effects (POEs) of DNA methylation remain unknown. Here, we applied PacBio HiFi sequencing with haplotype-phased methylation profiling in 124 individuals (31 ASD quartets) to systematically dissect POE-dependent methylation. Comparative analysis of phased methylomes between probands and unaffected siblings identified 114 paternal- and 106 maternal-specific differential methylated cytosines (DMCs), 45 and 46 differential methylated regions (DMRs), and 2425 and 2693 methylation outliers (MOs), respectively. These POE methylation alterations were enriched in ASD-relevant gene categories but exhibited distinct genomic distributions and functional pathways between parental haplotypes. Furthermore, genome-wide parent-of-origin DMR analysis identified 443 allele-specific methylation (ASM) regions, from which we detected 34 differential expression ASMs and 62 ASM outliers, showing pronounced enrichment within PWS/AS locus and ASD-associated genes. Collectively, this study provides a comprehensive evidence of pervasive POE-dependent methylation imbalance and aberrant ASM at imprinting regions underlying ASD pathogenesis, offering insights into epigenetic mechanisms of complex neurodevelopmental disorders.
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