Cargando…

(Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome

BACKGROUND: Beckwith–Wiedemann syndrome (BWS) is an overgrowth disorder caused by defects at the 11p15.5 imprinted region. Many cases of female monozygotic (MZ) twins discordant for BWS have been reported, but no definitive conclusions have been drawn regarding the link between epigenetic defects, t...

Descripción completa

Detalles Bibliográficos
Autores principales: Fontana, Laura, Bedeschi, Maria F., Cagnoli, Giulia A., Costanza, Jole, Persico, Nicola, Gangi, Silvana, Porro, Matteo, Ajmone, Paola F., Colapietro, Patrizia, Santaniello, Carlo, Crippa, Milena, Sirchia, Silvia M., Miozzo, Monica, Tabano, Silvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507324/
https://www.ncbi.nlm.nih.gov/pubmed/32627967
http://dx.doi.org/10.1002/mgg3.1386
_version_ 1783585204778041344
author Fontana, Laura
Bedeschi, Maria F.
Cagnoli, Giulia A.
Costanza, Jole
Persico, Nicola
Gangi, Silvana
Porro, Matteo
Ajmone, Paola F.
Colapietro, Patrizia
Santaniello, Carlo
Crippa, Milena
Sirchia, Silvia M.
Miozzo, Monica
Tabano, Silvia
author_facet Fontana, Laura
Bedeschi, Maria F.
Cagnoli, Giulia A.
Costanza, Jole
Persico, Nicola
Gangi, Silvana
Porro, Matteo
Ajmone, Paola F.
Colapietro, Patrizia
Santaniello, Carlo
Crippa, Milena
Sirchia, Silvia M.
Miozzo, Monica
Tabano, Silvia
author_sort Fontana, Laura
collection PubMed
description BACKGROUND: Beckwith–Wiedemann syndrome (BWS) is an overgrowth disorder caused by defects at the 11p15.5 imprinted region. Many cases of female monozygotic (MZ) twins discordant for BWS have been reported, but no definitive conclusions have been drawn regarding the link between epigenetic defects, twinning process, and gender. Here, we report a comprehensive characterization and follow‐up of female MZ twins discordant for BWS. METHODS: Methylation pattern at 11p15.5 and multilocus methylation disturbance (MLID) profiling were performed by pyrosequencing and MassARRAY in placental/umbilical cord samples and postnatal tissues. Whole‐exome sequencing was carried out to identify MLID causative mutations. X‐chromosome inactivation (XCI) was determined by HUMARA test. RESULTS: Both twins share KCNQ1OT1:TSS‐DMR loss of methylation (LOM) and MLID in blood and the epigenetic defect remained stable in the healthy twin over time. KCNQ1OT1:TSS‐DMRLOM was nonhomogeneously distributed in placental samples and the twins showed the same severely skewed XCI pattern. No MLID‐causative mutations were identified. CONCLUSION: This is the first report on BWS‐discordant twins with methylation analyses extended to extraembryonic tissues. The results suggest that caution is required when attempting prenatal diagnosis in similar cases. Although the causative mechanism underlying LOM remains undiscovered, the XCI pattern and mosaic LOM suggest that both twinning and LOM/MLID occurred after XCI commitment.
format Online
Article
Text
id pubmed-7507324
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-75073242020-09-28 (Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome Fontana, Laura Bedeschi, Maria F. Cagnoli, Giulia A. Costanza, Jole Persico, Nicola Gangi, Silvana Porro, Matteo Ajmone, Paola F. Colapietro, Patrizia Santaniello, Carlo Crippa, Milena Sirchia, Silvia M. Miozzo, Monica Tabano, Silvia Mol Genet Genomic Med Original Articles BACKGROUND: Beckwith–Wiedemann syndrome (BWS) is an overgrowth disorder caused by defects at the 11p15.5 imprinted region. Many cases of female monozygotic (MZ) twins discordant for BWS have been reported, but no definitive conclusions have been drawn regarding the link between epigenetic defects, twinning process, and gender. Here, we report a comprehensive characterization and follow‐up of female MZ twins discordant for BWS. METHODS: Methylation pattern at 11p15.5 and multilocus methylation disturbance (MLID) profiling were performed by pyrosequencing and MassARRAY in placental/umbilical cord samples and postnatal tissues. Whole‐exome sequencing was carried out to identify MLID causative mutations. X‐chromosome inactivation (XCI) was determined by HUMARA test. RESULTS: Both twins share KCNQ1OT1:TSS‐DMR loss of methylation (LOM) and MLID in blood and the epigenetic defect remained stable in the healthy twin over time. KCNQ1OT1:TSS‐DMRLOM was nonhomogeneously distributed in placental samples and the twins showed the same severely skewed XCI pattern. No MLID‐causative mutations were identified. CONCLUSION: This is the first report on BWS‐discordant twins with methylation analyses extended to extraembryonic tissues. The results suggest that caution is required when attempting prenatal diagnosis in similar cases. Although the causative mechanism underlying LOM remains undiscovered, the XCI pattern and mosaic LOM suggest that both twinning and LOM/MLID occurred after XCI commitment. John Wiley and Sons Inc. 2020-07-06 /pmc/articles/PMC7507324/ /pubmed/32627967 http://dx.doi.org/10.1002/mgg3.1386 Text en © 2020 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Fontana, Laura
Bedeschi, Maria F.
Cagnoli, Giulia A.
Costanza, Jole
Persico, Nicola
Gangi, Silvana
Porro, Matteo
Ajmone, Paola F.
Colapietro, Patrizia
Santaniello, Carlo
Crippa, Milena
Sirchia, Silvia M.
Miozzo, Monica
Tabano, Silvia
(Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome
title (Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome
title_full (Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome
title_fullStr (Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome
title_full_unstemmed (Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome
title_short (Epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for Beckwith–Wiedemann syndrome
title_sort (epi)genetic profiling of extraembryonic and postnatal tissues from female monozygotic twins discordant for beckwith–wiedemann syndrome
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507324/
https://www.ncbi.nlm.nih.gov/pubmed/32627967
http://dx.doi.org/10.1002/mgg3.1386
work_keys_str_mv AT fontanalaura epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT bedeschimariaf epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT cagnoligiuliaa epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT costanzajole epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT persiconicola epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT gangisilvana epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT porromatteo epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT ajmonepaolaf epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT colapietropatrizia epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT santaniellocarlo epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT crippamilena epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT sirchiasilviam epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT miozzomonica epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome
AT tabanosilvia epigeneticprofilingofextraembryonicandpostnataltissuesfromfemalemonozygotictwinsdiscordantforbeckwithwiedemannsyndrome