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Deep intronic NIPBL de novo mutations and differential diagnoses revealed by whole genome and RNA sequencing in Cornelia de Lange syndrome patients

Authors :
Juliette Coursimault
Kévin Cassinari
François Lecoquierre
Olivier Quenez
Sophie Coutant
Céline Derambure
Myriam Vezain
Nathalie Drouot
Gabriella Vera
Elise Schaefer
Anaïs Philippe
Bérénice Doray
Laëtitia Lambert
Jamal Ghoumid
Thomas Smol
Mélanie Rama
Marine Legendre
Didier Lacombe
Patricia Fergelot
Robert Olaso
Anne Boland
Jean‐François Deleuze
Alice Goldenberg
Pascale Saugier‐Veber
Gaël Nicolas
Source :
Human mutationREFERENCES. 43(12)
Publication Year :
2022

Abstract

Cornelia de Lange syndrome (CdLS; MIM# 122470) is a rare developmental disorder. Pathogenic variants in 5 genes explain approximately 50% cases, leaving the other 50% unsolved. We performed whole genome sequencing (WGS) ± RNA sequencing (RNA-seq) in 5 unsolved trios fulfilling the following criteria: (i) clinical diagnosis of classic CdLS, (ii) negative gene panel sequencing from blood and saliva-isolated DNA, (iii) unaffected parents' DNA samples available and (iv) proband's blood-isolated RNA available. A pathogenic de novo mutation (DNM) was observed in a CdLS differential diagnosis gene in 3/5 patients, namely POU3F3, SPEN, and TAF1. In the other two, we identified two distinct deep intronic DNM in NIPBL predicted to create a novel splice site. RT-PCRs and RNA-Seq showed aberrant transcripts leading to the creation of a novel frameshift exon. Our findings suggest the relevance of WGS in unsolved suspected CdLS cases and that deep intronic variants may account for a proportion of them.

Subjects

Subjects :
Genetics
Genetics (clinical)

Details

ISSN :
10981004
Volume :
43
Issue :
12
Database :
OpenAIRE
Journal :
Human mutationREFERENCES
Accession number :
edsair.doi.dedup.....e6f0d047ab046870fdf83cf3b6025ebe