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Oligogenic analysis across broad phenotypes of 46,XY differences in sex development associated with NR5A1/SF-1 variants: findings from the international SF1next studyResearch in context

Authors :
Chrysanthi Kouri
Idoia Martinez de Lapiscina
Rawda Naamneh-Elzenaty
Grit Sommer
Kay-Sara Sauter
Christa E. Flück
Saygin Abali
Zehra Yavas Abali
S. Faisal Ahmed
Leyla Akin
Maricruz Almaraz
Laura Audí
Murat Aydin
Antonio Balsamo
Federico Baronio
Jillian Bryce
Kanetee Busiah
Maria Caimari
Núria Camats-Tarruella
Ariadna Campos-Martorell
Luis Castaño
Anna Casteràs
Semra Çetinkaya
Hedi L. Claahsen - van der Grinten
Martine Cools
Ines Costa
Fatma Feyza Darendeliler
Justin H. Davies
Isabel Esteva
Helena Fabbri-Scallet
Courtney A. Finlayson
Emilio Garcia
Beatriz Garcia- Cuartero
Alina German
Evgenia Globa
Gil Guerra-Junior
Julio Guerrero
Tulay Guran
Sabine E. Hannema
Olaf Hiort
Josephine Hirsch
Ieuan Hughes
Marco Janner
Uchenna Kennedy
Zofia Kolesinska
Katherine Lachlan
Anna Lauber-Biason
Jana Krenek Malikova
Dagmar L’Allemand
Nina Lenhnerr-Taube
Angela Lucas-Herald
Jamala Mammadova
Veronica Mericq
Isabel Mönig
Francisca Moreno
Julia Mührer
Marek Niedziela
Anna Nordenstrom
Burçe Orman
Sukran Poyrazoglu
Jose M. Rial
Meilan M. Rutter
Amaia Rodríguez
Tara Schafer-Kalkhoff
Sumudu Nimali Seneviratne
Maria Sredkova-Ruskova
LIoyd J.W. Tack
Rieko Tadokoro-Cuccaro
Ajay Thankamony
Mónica Tomé
Amaia Vela
Malgorzata Wasniewska
David Zangen
Nataliya Zelinska
Source :
EBioMedicine, Vol 113, Iss , Pp 105624- (2025)
Publication Year :
2025
Publisher :
Elsevier, 2025.

Abstract

Summary: Background: Oligogenic inheritance has been suggested as a possible mechanism to explain the broad phenotype observed in individuals with differences of sex development (DSD) harbouring NR5A1/SF-1 variants. Methods: We investigated genetic patterns of possible oligogenicity in a cohort of 30 individuals with NR5A1/SF-1 variants and 46,XY DSD recruited from the international SF1next study, using whole exome sequencing (WES) on family trios whenever available. WES data were analysed using a tailored filtering algorithm designed to identify rare variants in DSD and SF-1-related genes. Identified variants were subsequently tested using the Oligogenic Resource for Variant Analysis (ORVAL) bioinformatics platform for a possible combined pathogenicity with the individual NR5A1/SF-1 variant. Findings: In 73% (22/30) of the individuals with NR5A1/SF-1 related 46,XY DSD, we identified one to seven additional variants, predominantly in known DSD-related genes, that might contribute to the phenotype. We found identical variants in eight unrelated individuals with DSD in DSD-related genes (e.g., TBCE, FLNB, GLI3 and PDGFRA) and different variants in eight genes frequently associated with DSD (e.g., CDH23, FLNB, GLI2, KAT6B, MYO7A, PKD1, SPRY4 and ZFPM2) in 15 index cases. Our study also identified combinations with NR5A1/SF-1 variants and variants in novel candidate genes. Interpretation: These findings highlight the complex genetic landscape of DSD associated with NR5A1/SF-1, where in several cases, the use of advanced genetic testing and filtering with specific algorithms and machine learning tools revealed additional genetic hits that may contribute to the phenotype. Funding: Swiss National Science Foundation and Boveri Foundation Zurich.

Details

Language :
English
ISSN :
23523964
Volume :
113
Issue :
105624-
Database :
Directory of Open Access Journals
Journal :
EBioMedicine
Publication Type :
Academic Journal
Accession number :
edsdoj.70dadd4b4fe745a893eb824ff8477932
Document Type :
article
Full Text :
https://doi.org/10.1016/j.ebiom.2025.105624