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Updated: Oct 17, 2025

FISH for Pre-implantation Genetic Diagnosis
Published on: February 23, 2011
Double paternal uniparental isodisomy 7 and 15 presenting with Beckwith-Wiedemann spectrum features
Siren Berland1, Cecilie F Rustad2, Mariann H L Bentsen3
1Department of Medical Genetics, Haukeland University Hospital, 5021 Bergen, Norway.
Insights
This study reports a rare case of double paternal uniparental isodisomy (UPD) of chromosomes 7 and 15 in a baby boy. The findings expand the known phenotypic spectrum of UPDs and suggest a potential role for PEG10 in growth regulation.
Area of Science:
- Genetics
- Molecular Biology
- Developmental Biology
Background:
- Uniparental isodisomy (UPD) occurs when both homologous chromosomes are inherited from a single parent.
- Paternal UPD7 is typically asymptomatic, while paternal UPD15 is associated with Angelman syndrome.
- The Beckwith-Wiedemann syndrome spectrum (BWSp) involves overgrowth and other developmental abnormalities.
Purpose of the Study:
- To describe a novel case of double paternal UPD of chromosomes 7 and 15.
- To investigate the genetic and molecular basis of the patient's phenotype.
- To explore the potential role of imprinted genes in the observed clinical features.
Main Methods:
- Genetic analysis to identify uniparental isodisomy (UPD) for chromosomes 7 and 15.
- Phenotypic evaluation for features of Beckwith-Wiedemann syndrome spectrum (BWSp).
- RNA sequencing of patient fibroblasts to analyze gene expression, focusing on imprinted genes.
Main Results:
- The patient presented with features of BWSp and conjugated hyperbilirubinemia, alongside double paternal UPD 7 and 15.
- The most probable origin of UPDs was maternal double monosomy rescue by paternal duplication.
- Elevated expression of the imprinted gene PEG10 was observed, suggesting a potential growth-promoting effect.
Conclusions:
- This case expands the phenotypic spectrum associated with UPDs.
- The findings suggest that high PEG10 levels may contribute to growth-related phenotypes.
- Evidence for an imprinted gene network's involvement in this specific case was not found.
Abstract:
Here we describe for the first time double paternal uniparental isodisomy (iUPD) 7 and 15 in a baby boy with features in the Beckwith-Wiedemann syndrome spectrum (BWSp) (placentomegaly, hyperinsulinism, enlarged viscera, hemangiomas, and earlobe creases) in addition to conjugated hyperbilirubinemia. His phenotype was also reminiscent of genome-wide paternal uniparental isodisomy. We discuss the most likely origin of the UPDs: a maternal double monosomy 7 and 15 rescued by duplication of the paternal chromosomes after fertilization. So far, paternal UPD7 is not associated with an abnormal phenotype, whereas paternal UPD15 causes Angelman syndrome. Methylation analysis for other clinically relevant imprinting disorders, including BWSp, was normal. Therefore, we hypothesized that the double UPD affected other imprinted genes. To look for such effects, patient fibroblast RNA was isolated and analyzed for differential expression compared to six controls. We did not find apparent transcription differences in imprinted genes outside Chromosomes 7 and 15 in patient fibroblast. PEG10 (7q21.3) was the only paternally imprinted gene on these chromosomes up-regulated beyond double-dose expectation (sixfold). We speculate that a high PEG10 level could have a growth-promoting effect as his phenotype was not related to aberrations in BWS locus on 11p15.5 after DNA, RNA, and methylation testing. However, many genes in gene sets associated with growth were up-regulated. This case broadens the phenotypic spectrum of UPDs but does not show evidence of involvement of an imprinted gene network.
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