Cargando…

Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females

Background: We report on a 20-week-old female fetus with a diaphragmatic hernia and other malformations, all of which appeared after the first-trimester ultrasound. Methods and Results: Whole trio exome sequencing (WES) on cell-free fetal DNA (cff-DNA) revealed a de novo frameshift variant of the X-...

Descripción completa

Detalles Bibliográficos
Autores principales: Provenzano, Aldesia, La Barbera, Andrea, Lai, Francesco, Perra, Andrea, Farina, Antonio, Cariati, Ettore, Zuffardi, Orsetta, Giglio, Sabrina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323000/
https://www.ncbi.nlm.nih.gov/pubmed/35887945
http://dx.doi.org/10.3390/jcm11144182
_version_ 1784756442458226688
author Provenzano, Aldesia
La Barbera, Andrea
Lai, Francesco
Perra, Andrea
Farina, Antonio
Cariati, Ettore
Zuffardi, Orsetta
Giglio, Sabrina
author_facet Provenzano, Aldesia
La Barbera, Andrea
Lai, Francesco
Perra, Andrea
Farina, Antonio
Cariati, Ettore
Zuffardi, Orsetta
Giglio, Sabrina
author_sort Provenzano, Aldesia
collection PubMed
description Background: We report on a 20-week-old female fetus with a diaphragmatic hernia and other malformations, all of which appeared after the first-trimester ultrasound. Methods and Results: Whole trio exome sequencing (WES) on cell-free fetal DNA (cff-DNA) revealed a de novo frameshift variant of the X-linked STAG2 gene. Loss-of-function (LoF) STAG2 variants cause either holoprosencephaly (HPE) or Mullegama–Klein–Martinez syndrome (MKMS), are de novo, and only affect females, indicating male lethality. In contrast, missense mutations associate with milder forms of MKMS and follow the classic X-linked recessive inheritance transmitted from healthy mothers to male offspring. STAG2 has been reported to escape X-inactivation, suggesting that disease onset in LoF females is dependent on inadequate dosing for at least some of the transcripts, as is the case with a part of the autosomal dominant diseases. Missense STAG2 variants produce a quantity of transcripts, which, while resulting in a different protein, leads to disease only in hemizygous males. Similar inheritance patterns are described for other escapee genes. Conclusions: This study confirms the advantage of WES on cff-DNA and emphasizes the role of the type of the variant in X-linked disorders.
format Online
Article
Text
id pubmed-9323000
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93230002022-07-27 Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females Provenzano, Aldesia La Barbera, Andrea Lai, Francesco Perra, Andrea Farina, Antonio Cariati, Ettore Zuffardi, Orsetta Giglio, Sabrina J Clin Med Article Background: We report on a 20-week-old female fetus with a diaphragmatic hernia and other malformations, all of which appeared after the first-trimester ultrasound. Methods and Results: Whole trio exome sequencing (WES) on cell-free fetal DNA (cff-DNA) revealed a de novo frameshift variant of the X-linked STAG2 gene. Loss-of-function (LoF) STAG2 variants cause either holoprosencephaly (HPE) or Mullegama–Klein–Martinez syndrome (MKMS), are de novo, and only affect females, indicating male lethality. In contrast, missense mutations associate with milder forms of MKMS and follow the classic X-linked recessive inheritance transmitted from healthy mothers to male offspring. STAG2 has been reported to escape X-inactivation, suggesting that disease onset in LoF females is dependent on inadequate dosing for at least some of the transcripts, as is the case with a part of the autosomal dominant diseases. Missense STAG2 variants produce a quantity of transcripts, which, while resulting in a different protein, leads to disease only in hemizygous males. Similar inheritance patterns are described for other escapee genes. Conclusions: This study confirms the advantage of WES on cff-DNA and emphasizes the role of the type of the variant in X-linked disorders. MDPI 2022-07-19 /pmc/articles/PMC9323000/ /pubmed/35887945 http://dx.doi.org/10.3390/jcm11144182 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Provenzano, Aldesia
La Barbera, Andrea
Lai, Francesco
Perra, Andrea
Farina, Antonio
Cariati, Ettore
Zuffardi, Orsetta
Giglio, Sabrina
Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females
title Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females
title_full Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females
title_fullStr Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females
title_full_unstemmed Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females
title_short Non-Invasive Detection of a De Novo Frameshift Variant of STAG2 in a Female Fetus: Escape Genes Influence the Manifestation of X-Linked Diseases in Females
title_sort non-invasive detection of a de novo frameshift variant of stag2 in a female fetus: escape genes influence the manifestation of x-linked diseases in females
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323000/
https://www.ncbi.nlm.nih.gov/pubmed/35887945
http://dx.doi.org/10.3390/jcm11144182
work_keys_str_mv AT provenzanoaldesia noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales
AT labarberaandrea noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales
AT laifrancesco noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales
AT perraandrea noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales
AT farinaantonio noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales
AT cariatiettore noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales
AT zuffardiorsetta noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales
AT gigliosabrina noninvasivedetectionofadenovoframeshiftvariantofstag2inafemalefetusescapegenesinfluencethemanifestationofxlinkeddiseasesinfemales