Literature DB >> 32058622

Exome sequencing identifies the first genetic determinants of sirenomelia in humans.

François Lecoquierre1, Anne-Claire Brehin1,2, Sophie Coutant1, Juliette Coursimault1, Anne Bazin3, Wilfrid Finck4, Guillaume Benoist5, Marianne Begorre6, Claire Beneteau7, Daniel Cailliez8, Pierre Chenal8, Mirjam De Jong9, Sophie Degré10, Louise Devisme11, Christine Francannet12,13, Bénédicte Gérard14, Corinne Jeanne15, Madeleine Joubert16, Hubert Journel17, Hélène Laurichesse Delmas13,18, Valérie Layet19, Alain Liquier20, Raphaele Mangione21, Sophie Patrier2, Fanny Pelluard22,23, Florence Petit24, Nadia Tillouche25, Conny van Ravenswaaij-Arts9, Thierry Frebourg1, Pascale Saugier-Veber1, Nicolas Gruchy26, Gaël Nicolas1, Marion Gerard26.   

Abstract

Sirenomelia is a rare severe malformation sequence of unknown cause characterized by fused legs and severe visceral abnormalities. We present a series of nine families including two rare familial aggregations of sirenomelia investigated by a trio-based exome sequencing strategy. This approach identified CDX2 variants in the two familial aggregations, both fitting an autosomal dominant pattern of inheritance with variable expressivity. CDX2 is a major regulator of caudal development in vertebrate and mouse heterozygotes are a previously described model of sirenomelia. Remarkably, the p.(Arg237His) variant has already been reported in a patient with persistent cloaca. Analysis of the sporadic cases revealed six additional candidate variants including a de novo frameshift variant in the genetically constrained NKD1 gene, encoding a known interactor of CDX2. We provide the first insights for a genetic contribution in human sirenomelia and highlight the role of Cdx and Wnt signaling pathways in the development of this disorder.
© 2020 Wiley Periodicals, Inc.

Entities:  

Keywords:  CDX2; Sirenomelia; caudal dysgenesis; de novo mutation; exome sequencing

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Year:  2020        PMID: 32058622     DOI: 10.1002/humu.23998

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  1 in total

1.  The broader phenotypic spectrum of congenital caudal abnormalities associated with mutations in the caudal type homeobox 2 gene.

Authors:  Servi J C Stevens; Constance T R M Stumpel; Karin E M Diderich; Marjon A van Slegtenhorst; Mary-Alice Abbott; Courtney Manning; Jorune Balciuniene; Louise C Pyle; Jacqueline Leonard; Jill R Murrell; Romy van de Putte; Iris A L M van Rooij; Alexander Hoischen; Paul Lasko; Han G Brunner
Journal:  Clin Genet       Date:  2021-10-28       Impact factor: 4.296

  1 in total

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