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Vinod K. Misra

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Open access Aug 2026

Cord Blood DNA Methylation and Large-for-Gestational-Age Birth: A Pilot Epigenome-Wide Study in the GROW Cohort

Background/Objectives: Large-for-gestational-age (LGA) birth is associated with adverse perinatal outcomes and increased risk of metabolic disease later in life. Despite these risks, epigenetic studies of LGA remain limited, particularly those using umbilical cord blood DNA methylation (DNAm) as the tissue of interest. Methods: We conducted an epigenome-wide association study of cord blood DNAm in a nested case–control sample from the Gestational Regulators of Weight (GROW) cohort. The analysis included 28 term LGA infants and 63 term appropriate-for-gestational-age (AGA) controls. DNAm was measured using the Illumina HumanMethylation450 BeadChip. Epigenome-wide association analyses were performed with adjustment for residual principal components and estimated cord blood cell-type proportions. Results: No CpG sites reached statistical significance after false discovery rate correction. Twenty-four CpGs showed nominal associations with LGA status at p-value < 1.00 × 10−4, including five CpGs with absolute methylation differences greater than 0.05. Among annotated loci, the strongest interpretable signals included cg06750897 in PBX1 (Δβ = 0.110, p-value = 1.70 × 10−5) and two nearby CpGs in SMAD3, cg23731272 (Δβ = 0.111, p-value = 4.31 × 10−5) and cg02486855 (Δβ = 0.109, p-value = 9.45 × 10−5). These two SMAD3 CpGs showed concordant hypermethylation in LGA infants and formed a candidate regional methylation signal in exploratory targeted regional analysis. Conclusions: In this pilot study, LGA was associated with modest cord blood DNAm differences, although no CpG sites reached genome-wide significance. The strongest interpretable signals involved PBX1 and SMAD3, suggesting candidate loci for further evaluation in larger studies of fetal overgrowth.

Xiao-Yu Liang, Christopher Doumith, Dawn P. Misra et al. · 0 citations
Open access Aug 2026

Heterozygous Variants in LRP1 Cause a Neurodevelopmental Disorder With Congenital Heart Defects.

LRP1 encodes the low-density lipoprotein (LDL) receptor-related protein 1 (LRP1), a transmembrane protein involved in endocytosis and activation of multiple signaling pathways. LRP1 variants have been implicated in the pathogenesis of congenital heart defects (CHD), Alzheimer's disease, and neurodevelopmental disorders (NDD). Biallelic LRP1 variants have also been reported in two siblings with CHD, hypotonia, dysmorphology, corneal clouding, and ascites. However, conclusive evidence supporting the role of LRP1 in human disease is still lacking. Individuals with heterozygous variants in LRP1 (NM_002332.3) were identified through genetic testing. GeneMatcher facilitated identification of participants and international collaboration. Comprehensive clinical and genotypic data were collected. Fifteen participants with heterozygous predicted loss-of-function (pLOF) or missense variants in LRP1 were identified. The most common phenotypes include NDD, CHD, musculoskeletal and gastrointestinal issues, and dysmorphic features. CHD was more common in participants with pLOF variants. Our findings suggest that LRP1 haploinsufficiency is associated with a syndromic NDD. Phenotypic differences in cardiac and neurologic involvement between participants with pLOF and missense variants suggest the possibility of alternate disease mechanisms.

Alyssa L. Rippert, G. Arnadottir, Laura Bedinger et al. · 0 citations

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