A novel rare c.-39C>T mutation in the PROS1 5′UTR causing PS deficiency by creating a new upstream translation initiation codon

Author:

Labrouche-Colomer Sylvie12,Soukarieh Omar3,Proust Carole3,Mouton Christine1,Huguenin Yoann4,Roux Maguelonne5,Besse Céline6,Boland Anne6,Olaso Robert6,Constans Joël1,Deleuze Jean-François67,Morange Pierre-Emmanuel8,Jaspard-Vinassa Béatrice2,Trégouët David-Alexandre3ORCID,

Affiliation:

1. CHU de Bordeaux, Laboratoire d’Hématologie, Pessac, France

2. INSERM UMR 1034, Biology of Cardiovascular Disease, University of Bordeaux, Pessac, France

3. INSERM UMR 1219, Bordeaux Population Health Research Center, University of Bordeaux, Bordeaux, France

4. CHU de Bordeaux, Service De Pédiatrie Médicale, Bordeaux, France

5. Human Evolutionary Genetics Unit, Institut Pasteur, UMR2000, CNRS, Paris 75015, France

6. Université Paris-Saclay, CEA, Centre National de Recherche en Génomique Humaine, Evry 91057, France

7. Centre d’Etude du Polymorphisme Humain, Fondation Jean Dausset, Paris, France

8. C2VN INSERM UMR 1263, INRA, Aix-Marseille University, Marseille, France

Abstract

Abstract Autosomal dominant inherited Protein S deficiency (PSD) (MIM 612336) is a rare disorder caused by rare mutations, mainly located in the coding sequence of the structural PROS1 gene, and associated with an increased risk of venous thromboembolism. To identify the molecular defect underlying PSD observed in an extended French pedigree with seven PSD affected members in whom no candidate deleterious PROS1 mutation was detected by Sanger sequencing of PROS1 exons and their flanking intronic regions or via an multiplex ligation-dependent probe amplification (MLPA) approach, a whole genome sequencing strategy was adopted. This led to the identification of a never reported C to T substitution at c.-39 from the natural ATG codon of the PROS1 gene that completely segregates with PSD in the whole family. This substitution ACG→ATG creates a new start codon upstream of the main ATG. We experimentally demonstrated in HeLa cells that the variant generates a novel overlapping upstream open reading frame (uORF) and inhibits the translation of the wild-type PS. This work describes the first example of 5′UTR PROS1 mutation causing PSD through the creation of an uORF, a mutation that is not predicted to be deleterious by standard annotation softwares, and emphasizes the need for better exploration of such type of non-coding variations in clinical genomics.

Publisher

Portland Press Ltd.

Subject

General Medicine

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