Two SERPINC1 variants affecting N-glycosylation of Asn224 cause severe thrombophilia not detected by functional assays

Author:

de la Morena-Barrio Maria Eugenia1ORCID,Suchon Pierre2,Jacobsen Eva Marie3,Iversen Nina4,Miñano Antonia1,de la Morena-Barrio Belén1ORCID,Bravo-Pérez Carlos1ORCID,Padilla Jose1ORCID,Cifuentes Rosa1,Asenjo Susana5ORCID,Deleuze Jean François678,Trégouët David Alexandre6789ORCID,Lozano Maria Luisa1ORCID,Vicente Vicente1ORCID,Sandset Per Morten3ORCID,Morange Pierre Emmanuel2ORCID,Corral Javier1ORCID

Affiliation:

1. 1Servicio de Hematología y Oncología Médica, Hospital Universitario Morales Meseguer, Centro Regional de Hemodonación, Universidad de Murcia, IMIB, Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), Murcia, Spain;

2. 2Aix-Marseille Univ, INSERM, INRAE, C2VN, Laboratory of Haematology, CRB Assistance Publique - Hôpitaux de Marseille, HemoVasc (CRB AP-HM HemoVasc), Marseille, France;

3. 3Department of Haematology and Research Institute of Internal Medicine, Oslo University Hospital and University of Oslo, Oslo, Norway;

4. 4Department of Medical Genetics, Oslo University Hospital, Oslo, Norway;

5. 5Servicio de Hematología, Hospital Clínico San Carlos, Madrid, Spain;

6. 6Laboratory of Excellence GENMED (Medical Genomics), Bordeaux, France;

7. 7Université Paris-Saclay, CEA, Centre National de Recherche en Génomique Humaine, Evry, France;

8. 8Centre d’Etude du Polymorphisme Humain, Fondation Jean Dausset, Paris, France; and

9. 9Univeristy of Bordeaux, INSERM, BPH, U1219, Bordeaux, France

Abstract

Abstract Antithrombin deficiency, the most severe congenital thrombophilia, might be underestimated, as some pathogenic variants are not detected by routine functional methods. We have identified 2 new SERPINC1 variants, p.Glu227Lys and p.Asn224His, in 4 unrelated thrombophilic patients with early and recurrent thrombosis that had normal antithrombin activity. In one case, the mutation was identified by whole genome sequencing, while in the 3 remaining cases, the mutation was identified by sequencing SERPINC1 based on a single functional positive finding supporting deficiency. The 2 variants shared a common functional defect, an impaired or null N-glycosylation of Asn224 according to a eukaryotic expression model. Carriers had normal anti-FXa or anti-FIIa activities but impaired anti-FVIIa activity and a detectable loss of inhibitory function when incubating the plasma for 1 hour at 41°C. Moreover, the β glycoform of the variants, lacking 2 N-glycans, had reduced secretion, increased heparin affinity, no inhibitory activity, and a potential dominant–negative effect. These results explain the increased thrombin generation observed in carriers. Mutation experiments reflected the role that Lysine residues close to the N-glycosylation sequon have in impairing the efficacy of N-glycosylation. Our study shows new elements involved in the regulation of N-glycosylation, a key posttranslational modification that, according to our results, affects folding, secretion, and function, providing new evidence of the pathogenic consequence of an incorrect N-glycosylation of antithrombin. This study supports that antithrombin deficiency is underestimated and encourages the development of new functional and genetic tests to diagnose this severe thrombophilia.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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