Impaired factor V–related anticoagulant mechanisms and deep vein thrombosis associated with A2086D and W1920R mutations

Author:

Shimonishi Naruto12ORCID,Ogiwara Kenichi1ORCID,Yoshida Junko3,Horie Kyoji3,Nakajima Yuto14ORCID,Furukawa Shoko1ORCID,Takeyama Masahiro1ORCID,Nogami Keiji1

Affiliation:

1. 1Department of Pediatrics, Nara Medical University, Kashihara, Japan

2. 2The Course of Thrombosis and Hemostasis Molecular Pathology, Nara Medical University, Kashihara, Japan

3. 3Department of Physiology II, Nara Medical University, Kashihara, Japan

4. 4Advanced Medical Science of Thrombosis and Hemostasis, Nara Medical University, Kashihara, Japan

Abstract

Abstract Factor V (FV) plays pivotal roles in both procoagulant and anticoagulant mechanisms. Genetic mutations, FV-W1920R (FVNara) and FV-A2086D (FVBesançon), in the C1 and C2 domains of FV light chain, respectively, seem to be associated with deep vein thrombosis. However, the detailed mechanism(s) through which these mutations are linked to thrombophilia remains to be fully explored. The aim of this study was to clarify thrombotic mechanism(s) in the presence of these FV abnormalities. Full-length wild-type (WT) and mutated FV were prepared using stable, human cell lines (HEK293T) and the piggyBac transposon system. Susceptibility of FVa-A2086D to activated protein C (APC) was reduced, resulting in significant inhibition of APC-catalyzed inactivation with limited cleavage at Arg306 and delayed cleavage at Arg506. Furthermore, APC cofactor activity of FV-A2086D in APC-catalyzed inactivation of FVIIIa through cleavage at Arg336 was impaired. Surface plasmon resonance–based assays demonstrated that FV-A2086D bound to Glu-Gly-Arg-chloromethylketone active site–blocked APC and protein S (P) with similar affinities to that of FV-WT. However, weakened interaction between FVa-A2086D and phospholipid membranes was evident through the prothrombinase assay. Moreover, addition of FVa-A2086D to plasma failed to inhibit tissue factor (TF)-induced thrombin generation and reduce prothrombin times. This inhibitory effect was independent of PC, PS, and antithrombin. The coagulant and anticoagulant characteristics of FV(a)-W1920R were similar to those of FV(a)-A2086D. FV-A2086D presented defects in the APC mechanisms associated with FVa inactivation and FV cofactor activity, similar to FV-W1920R. Moreover, both FV proteins that were mutated in the light chain impaired inhibition of TF-induced coagulation reactions. These defects were consistent with congenital thrombophilia.

Publisher

American Society of Hematology

Subject

Hematology

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1. Genetic factors, risk prediction and AI application of thrombotic diseases;Experimental Hematology & Oncology;2024-08-27

2. A novel factor V compound heterozygous mutation associated with thrombosis (Y1961C; FV-Kanazawa, together with 1982_1983del);Journal of Thrombosis and Haemostasis;2024-06

3. Factor V variants in bleeding and thrombosis;Research and Practice in Thrombosis and Haemostasis;2024-01

4. Development of an easy-to-use screening assay associated with thrombophilia;Japanese Journal of Thrombosis and Hemostasis;2024

5. Molecular genetics of coagulation disorders and hemophilia;Japanese Journal of Thrombosis and Hemostasis;2024

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