| Literature DB >> 35005812 |
Penelope Jordan1, Guillaume Dorval1,2,3, Christelle Arrondel2, Vincent Morinière1, Carole Tournant1, Marie-Pierre Audrezet4, Laurence Michel-Calemard5, Audrey Putoux6, Gaethan Lesca6, Audrey Labalme6, Sandra Whalen7, Laurence Loeuillet8, Jelena Martinovic9, Tania Attie-Bitach8,10, Bettina Bessières8,10, Elise Schaefer11, Sophie Scheidecker11, Laetitia Lambert12, Claire Beneteau13, Olivier Patat14, Odile Boute-Benejean15, Arnaud Molin16, Fabien Guimiot17, Nicolas Fontanarosa18, Mathilde Nizon19, Mathilde Lefebvre20, Cécile Jeanpierre2, Sophie Saunier2, Laurence Heidet2,3.
Abstract
We report the screening of a large panel of genes in a series of 100 fetuses (98 families) affected with severe renal defects. Causative variants were identified in 22% of cases, greatly improving genetic counseling. The percentage of variants explaining the phenotype was different according to the type of phenotype. The highest diagnostic yield was found in cases affected with the ciliopathy-like phenotype (11/15 families and, in addition, a single heterozygous or a homozygous Class 3 variant in PKHD1 in three unrelated cases with autosomal recessive polycystic kidney disease). The lowest diagnostic yield was observed in cases with congenital anomalies of the kidney and urinary tract (9/78 families and, in addition, Class 3 variants in GREB1L in three unrelated cases with bilateral renal agenesis). Inheritance was autosomal recessive in nine genes (PKHD1, NPHP3, CEP290, TMEM67, DNAJB11, FRAS1, ACE, AGT, and AGTR1), and autosomal dominant in six genes (PKD1, PKD2, PAX2, EYA1, BICC1, and MYOCD). Finally, we developed an original approach of next-generation sequencing targeted RNA sequencing using the custom capture panel used for the sequencing of DNA, to validate one MYOCD heterozygous splicing variant identified in two male siblings with megabladder and inherited from their healthy mother.Entities:
Keywords: NGS targeted RNA sequencing; congenital abnormalities of the kidney and urinary tract; fetal renal diseases; renal ciliopathies; renal tubular dysgenesis
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Year: 2022 PMID: 35005812 DOI: 10.1002/humu.24324
Source DB: PubMed Journal: Hum Mutat ISSN: 1059-7794 Impact factor: 4.878