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Prenatal diagnosis of SLC25A24 Fontaine progeroid syndrome: description of the fetal phenotype, genotype and detection of parental mosaicism.

Authors :
Pannier, Emmanuelle
Sekri, Abel
Roux, Nathalie
Vasiljevic, Alexandre
El Khattabi, Laïla
Chatron, Nicolas
Grotto, Sarah
Menzella, Delphine
Grangé, Gilles
Thébault, Florent
Massardier, Jérôme
Fourrage, Cécile
Lohmann, Laurence
Tsatsaris, Vassilis
Putoux, Audrey
Boutaud, Lucile
Attié‐Bitach, Tania
Source :
Birth Defects Research; Jul2024, Vol. 116 Issue 7, p1-11, 11p
Publication Year :
2024

Abstract

Background: Fontaine progeroid syndrome (FPS, OMIM 612289) is a recently identified genetic disorder stemming from pathogenic variants in the SLC25A24 gene, encoding a mitochondrial carrier protein. It encompasses Gorlin–Chaudry–Moss syndrome and Fontaine–Farriaux syndrome, primarily manifesting as craniosynostosis with brachycephaly, distinctive dysmorphic facial features, hypertrichosis, severe prenatal and postnatal growth restriction, limb shortening, and early aging with characteristic skin changes, phalangeal anomalies, and genital malformations. Cases: All known occurrences of FPS have been postnatally observed until now. Here, we present the first two prenatal cases identified during the second trimester of pregnancy. While affirming the presence of most postnatal abnormalities in prenatal cases, we note the absence of a progeroid appearance in young fetuses. Notably, our reports introduce new phenotypic features like encephalocele and nephromegaly, which were previously unseen postnatally. Moreover, paternal SLC25A24 mosaicism was detected in one case. Conclusions: We present the initial two fetal instances of FPS, complemented by thorough phenotypic and genetic assessments. Our findings expand the phenotypical spectrum of FPS, unveiling new fetal phenotypic characteristics. Furthermore, one case underscores a potential novel inheritance pattern in this disorder. Lastly, our observations emphasize the efficacy of exome/genome sequencing in both prenatal and postmortem diagnosis of rare polymalformative syndromes with a normal karyotype and array‐based comparative genomic hybridization (CGH). [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
24721727
Volume :
116
Issue :
7
Database :
Complementary Index
Journal :
Birth Defects Research
Publication Type :
Academic Journal
Accession number :
178684366
Full Text :
https://doi.org/10.1002/bdr2.2380