Five new F10 variants in hereditary factor x deficiency detected by high‐throughput sequencing

Author:

Pastoret Cédric1,Wahl Clémentine1,Castet Sabine2,Nedelec Fabienne13,Pontis Adeline1,Bayart Sophie13,Fest Thierry1,Guillet Benoît134ORCID

Affiliation:

1. Laboratoire d'Hématologie Pôle de Biologie, CHU de Rennes Rennes France

2. CRC‐MHC, CHU de Bordeaux Bordeaux France

3. CRC‐MHC, CHU de Rennes Rennes France

4. Univ Rennes, CHU Rennes, Inserm, EHESP Irset (Institut de recherche en santé, environnement et travail) ‐ UMR_S 1085 Rennes France

Abstract

AbstractIntroductionFactor X deficiency is a rare inherited bleeding disorder. To date, 181 variants are reported in the recently updated F10‐gene variant database.AimThis study aimed to describe new F10 variants.MethodThe F10 gene was analysed in 16 consecutive families with FX deficiency by a targeted high‐throughput sequencing approach, including F10, F9, F8 genes, and 78 genes dedicated to haematological malignancies.ResultsWe identified 19 variants (17 missense, one nonsense and one frameshift) and two copy number variations. Two patients presenting a combined FVII‐FX deficiency showed a loss of one F10 gene copy (del13q34) associated with a missense variant on the remaining allele, leading to a FX:C significantly lower than the FVII:C level and explaining their unusual bleeding history. We reported five novel variants. Three missense variants (p.Glu22Val affecting the signal peptide cleavage site, p.Cys342Tyr removing the disulphide bond between the FX heavy and light chains, and p.Val385Met located in FX peptidase S1 domain) were detected at compound heterozygosis status in three patients with severe bleeding symptoms and FX:C level below 10 IU/dL. Two truncating variants p.Tyr279* and p.Thr434Aspfs*13 leading to an altered FX protein were found at heterozygous state in two patients with mild bleeding history.ConclusionThis study showed the feasibility and the interest of high‐throughput sequencing approach for rare bleeding disorders, enabling the report of F10 gene screening in a 3‐weeks delay, suitable for clinical use. The description of five new variants may contribute to a better understanding of the phenotype‐genotype correlation in FX deficiency.

Publisher

Wiley

Subject

Genetics (clinical),Hematology,General Medicine

Reference20 articles.

1. Factor X Deficiency

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4. Gene for human factor X: a blood coagulation factor whose gene organization is essentially identical with that of factor IX and protein C

5. Analysis of 180 genetic variants in a new interactive FX variant database reveals novel insights into FX deficiency;Harris VA;TH Open Companion J Thromb Haemost,2021

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