Clinical and Molecular Characterization of Nine Novel Antithrombin Mutations

Author:

Kállai Judit12ORCID,Gindele Réka1,Pénzes-Daku Krisztina1,Balogh Gábor1,Bogáti Réka1ORCID,Bécsi Bálint3,Katona Éva1ORCID,Oláh Zsolt4,Ilonczai Péter5,Boda Zoltán6,Róna-Tas Ágnes7,Nemes László7,Marton Imelda89,Bereczky Zsuzsanna1ORCID

Affiliation:

1. Division of Clinical Laboratory Science, Department of Laboratory Medicine, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary

2. HUN-REN-UD Cell Biology and Signaling Research Group, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary

3. Department of Medical Chemistry, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary

4. Department of Anesthesiology and Intensive Care, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary

5. Jósa András Teaching Hospital of University of Debrecen, 4400 Nyíregyháza, Hungary

6. Department of Internal Medicine, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary

7. Department Medical Center of the Hungarian Defence Forces, National Hemophilia Center and Hemostasis, 1134 Budapest, Hungary

8. Department of Medicine, Albert Szent-Györgyi Medical School, University of Szeged, 6720 Szeged, Hungary

9. Department of Transfusion Medicine, Albert Szent-Györgyi Medical School, University of Szeged, 6720 Szeged, Hungary

Abstract

Antithrombin (AT) is the major plasma inhibitor of thrombin (FIIa) and activated factor X (FXa), and antithrombin deficiency (ATD) is one of the most severe thrombophilic disorders. In this study, we identified nine novel AT mutations and investigated their genotype–phenotype correlations. Clinical and laboratory data from patients were collected, and the nine mutant AT proteins (p.Arg14Lys, p.Cys32Tyr, p.Arg78Gly, p.Met121Arg, p.Leu245Pro, p.Leu270Argfs*14, p.Asn450Ile, p.Gly456delins_Ala_Thr and p.Pro461Thr) were expressed in HEK293 cells; then, Western blotting, N-Glycosidase F digestion, and ELISA were used to detect wild-type and mutant AT. RT-qPCR was performed to determine the expression of AT mRNA from the transfected cells. Functional studies (AT activity in the presence and in the absence of heparin and heparin-binding studies with the surface plasmon resonance method) were carried out. Mutations were also investigated by in silico methods. Type I ATD caused by altered protein synthesis (p.Cys32Tyr, p.Leu270Argfs*14, p.Asn450Ile) or secretion disorder (p.Met121Arg, p.Leu245Pro, p.Gly456delins_Ala_Thr) was proved in six mutants, while type II heparin-binding-site ATD (p.Arg78Gly) and pleiotropic-effect ATD (p.Pro461Thr) were suggested in two mutants. Finally, the pathogenic role of p.Arg14Lys was equivocal. We provided evidence to understand the pathogenic nature of novel SERPINC1 mutations through in vitro expression studies.

Funder

Hungarian Scientific Research Fund

University of Debrecen

Publisher

MDPI AG

Reference43 articles.

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