It is hypothesized that dCDRs may weaken kinetochore function, increasing nondisjunction risk, and proposed two models linking such epigenetic variation to maternal age-related T21 risk are proposed.
Abstract
Trisomy 21 (T21) is the most common genetic cause of intellectual disability, yet the molecular mechanisms underlying maternal meiosis I errors—responsible for ~70% of free T21 cases— remain poorly understood. In this preliminary study, we used long-read sequencing and genome assembly to investigate the DNA sequence and epigenetic features of chromosome 21 (chr21) centromeres in a family with recurrent free T21 due to maternal meiosis I errors. The mother, who had two affected and three unaffected children, showed no mosaicism or structural rearrangements. One of her two chr21 centromeres lacked a pronounced centromere dip region (CDR), displaying instead a diffuse hypomethylation pattern (dCDR) with much higher methylated CpG levels (55%) compared to its homologue (36%). This dCDR was transmitted to an unaffected child and the affected proband, suggesting it was present in one of the maternal chr21 since she was at least 32 years of age. Chr21 dCDRs were not observed in seven young mothers with children with T21 or previously described in the literature in 108 population haplotypes. We hypothesize that dCDRs may weaken kinetochore function, increasing nondisjunction risk, and propose two models linking such epigenetic variation to maternal age-related T21 risk. These findings highlight the value of complete centromere characterization in families with children with T21 and suggest centromere methylation status of chr21 as a potential T21 risk factor for future investigation.
Describing all 16,138 copy number variants found in 3832 patients studied from 2009 to 2024 prompted the description of all CNV findings with patient profiles is needed to optimize CMA potential for presymptomatic diagnosis and therapy.
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Findings further support the role of haploinsufficient genes within the distal 1q43q44 region, particularly AKT3, HNRNPU, and ZBTB18, to the core neurodevelopmental phenotype and highlight the value of high‐resolution genomic analysis for patient characterization.
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Background:
Heterochromatin variants of chromosome Y (Yqh+) are classified by international cytogenetic nomenclature as benign polymorphisms. However, several case-control studies have reported a higher frequency of these variants among couples with recurrent pregnancy loss, and a plausible sex-specific mechanism ha...
Omer I. Aljumaili, A. Ahmed, Ibtisam T. S. Al Aboosi· BIO Web of Conferences· 0 citations
Somatic loss of the Y chromosome (LOY) is the most frequent acquired genomic alteration in aging males and occurs across multiple cancer types. While common, its functional role in tumorigenesis is only beginning to emerge. Most studies treat LOY as a binary event, ignoring partial deletions that may selectively remove...
Trini Nguyen, Aditi Kuchi, Hong-Yu Liu et al.· Communications Biology· 0 citations
BACKGROUND
Copy number variants are an important source of genomic variations, ranging from pathogenic to benign. The 10q11.22q11.23 region contains complex low-copy repeats that predispose to recurrent deletions and duplications via nonallelic homologous recombination. While some reports associate duplications of this...
Xing-Xing Wang, Li-Jun Liu, Kai Jin· Psychiatric Genetics· 0 citations
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