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1.
J Clin Invest ; 123(9): 3777-87, 2013 Sep.
Article in English | MEDLINE | ID: mdl-23979162

ABSTRACT

The autosomal dominantly inherited east Texas bleeding disorder is linked to an A2440G variant in exon 13 of the F5 gene. Affected individuals have normal levels of coagulation factor V (FV) activity, but demonstrate inhibition of global coagulation tests. We demonstrated that the A2440G mutation causes upregulation of an alternatively spliced F5 transcript that results in an in-frame deletion of 702 amino acids of the large activation fragment, the B domain. The approximately 250-kDa FV isoform (FV-short), which can be fully activated by thrombin, is present in all A2440G carriers' plasma (n = 16). FV-short inhibits coagulation through an indirect mechanism by forming a complex with tissue factor pathway inhibitor-α (TFPIα), resulting in an approximately 10-fold increase in plasma TFPIα, suggesting that the TFPIα:FV-short complexes are retained in circulation. The TFPIα:FV-short complexes efficiently inhibit thrombin generation of both intrinsic and extrinsic coagulation pathways. These data demonstrate that the east Texas bleeding disorder-associated F5(A2440G) leads to the formation of the TFPIα:FV-short complex, which inhibits activation and propagation of coagulation.


Subject(s)
Blood Coagulation Disorders, Inherited/genetics , Factor V/genetics , Hemorrhagic Disorders/genetics , Lipoproteins/blood , Base Sequence , Binding, Competitive , Blood Coagulation , DNA Mutational Analysis , Factor V/metabolism , Genetic Association Studies , Humans , Molecular Sequence Data , Point Mutation , Protein Binding , Protein Isoforms/blood
2.
Thromb Haemost ; 110(1): 31-8, 2013 Jul.
Article in English | MEDLINE | ID: mdl-23616041

ABSTRACT

Coagulation factor V (FV) deficiency is characterised by variable bleeding phenotypes and heterogeneous mutations. To add new insights into the FV genotype-phenotype relationship, we characterised the R1698W change in the A3 domain, at the poorly investigated interface with the A2 domain. The FV R1698W mutation was responsible for a markedly reduced expression level (10% of FV-WT) and specific activity in thrombin generation (0.39). Interestingly, the FVa1698W showed rapid activity decay upon activation due to increased dissociation rate between the heavy and light chains. The importance of the size and charge of the residue at position 1698 was investigated by three additional recombinant mutants, FVR1698A, FVR1698Q, and FVR1698E. FVR1698A and FVR1698Q expression (30 and 45% of FV-WT), specific activity (both 0.57) and stability were all reduced. Noticeably, FVR1698E showed normal activity and stability despite poor expression (10% of FV-WT). These data indicate the essential role of R1698 for normal biosynthetic process and support local flexibility for positively or negatively charged residues to produce stable and functional A3-A2 domain interactions. Their experimental alteration produces a gradient of FV defects, which help to interpret the wide spectrum of phenotypes in FV-deficient patients.


Subject(s)
Factor V Deficiency/genetics , Factor V/metabolism , Hemorrhage/genetics , Animals , COS Cells , Chlorocebus aethiops , Down-Regulation/genetics , Factor V/genetics , Genetic Association Studies , Humans , Mutagenesis, Site-Directed , Mutation, Missense/genetics , Protein Stability , Protein Structure, Tertiary/genetics , Thrombin/metabolism , Transgenes/genetics
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