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Factor VII gene polymorphisms, factor VII:C levels and features of insulin resistance in non-insulin-dependent diabetes mellitus.

The macrovascular complications of non-insulin-dependent diabetes mellitus (NIDDM) are related to the features of insulin resistance (IR). High Factor VII:C (FVII:C) levels are associated with increased cardiovascular risk and relate to a base change in the FVII gene detected by Msp I endonuclease, and also to an insertion polymorphism in the promoter region. To examine the association between FVII:C levels, genotype and features of IR, 95 NIDDM patients were studied. Genotype was related to FVII:C levels (M1M1 137%, n = 75; M1M2 and M2M2 114%, n = 20, p < 0.005; AA 136%, n = 71; Aa 119%, n = 21, p < 0.05), which is consistent with previous studies in healthy populations. FVII:C correlated with cholesterol (r = 0.51, p < 0.0005), insulin (r = 0.36, p = 0.002), triglycerides (r = 0.34, p = 0.001), age (r = 0.23, p < 0.005) and body mass index (r = 0.23, p < 0.05). When analysed by Msp I genotype, the stronger predictor of FVII:C levels, these correlations remained, with no difference in regression slopes. In a multiple regression model, genotype, cholesterol, insulin, and gender remained as independent predictors of FVII:C levels. In conclusion, FVII:C concentrations are elevated in NIDDM in relation to both FVII genotypes and features of IR.

Adult↗

The interaction of activated factor VII with tissue factor: insight into the mechanism of cofactor-mediated activation of activated factor VII.

The structure solution of the complex of tissue factor (TF) and activated factor VII (FVIIa) and extensive mutagenesis analysis of the FVIIa protease domain have recently provided a detailed, novel insight into the function of the extrinsic activation complex. This overview relates the functional data to the known molecular interactions defined by crystallography, arriving at a hypothesis of how FVIIa is 'switched on' through specific contacts with TF. Combining these findings with the results of mutational analysis of TF, a picture emerges whereby multiple domains of both cofactor and enzyme provide contacts for the assembly of macromolecular substrate.

Allosteric Regulation↗

Hemophilia B with associated factor VII deficiency: a distinct variant of hemophilia B with low factor VII activity and normal factor VII antigen.

Factor VII activity and cross-reacting material was assayed in fresh and deep frozen non-contacted plasma in 43 patients with Hemophilia B belonging to different kindreds. Factor VII activity was found to be slightly decreased (about of 50% normal) in 12 patients, regardless of the thromboplastin used. In an additional patient (hemophilia BM) factor VII was slightly decreased in 1 : 10 diluted plasma but was normal in further diluted plasma. In the remaining 30 patients factor VII activity was normal. No significant variation was found between fresh and deep frozen plasmas. Factor VII antigen or cross-reacting material was normal.

Antigens↗

Factor VII survival studies in factor VII Padua abnormality.

Two patients with factor VII Padua abnormality were studied during prophylactic administration of factor VII concentrates for tooth extractions. The amounts administered were 15.8 and 17.2 units/kg body weight in 30 and 20 min, respectively. The end infusion factor VII activity levels were 55 and 64%, respectively. Survival times of the exogenous components were 6.5 and 6 h, respectively. Satisfactory hemolstasis was obtained in both instances.

Adult↗

Measurement of factor VII and of activated factor VII in healthy individuals and in prothrombin complex concentrates.

We established reference ranges for factor VII clotting activity (FVII:C), factor VII amidolytic activity (FVII:AM), and activated factor VII (FVIIa) in 102 healthy individuals. The reference ranges were 65-160 U/100 ml, 70-165 U/100 ml, and 30-170 mU/ml, respectively (2.5 and 97.5 percentiles). Freezing and thawing of the plasma samples had no influence on the assay results. Due to the small sample size, the results were not influenced by gender, age, smoking habits, and oral contraceptive use. The plasma levels of FVII:C, FVII:AM, and FVIIa were significantly correlated with each other. The significant correlation between FVIIa and FVII:AM indicates that FVIIa is not completely independent of circulating FVII mass. There was also a significant, though weak, correlation between FVIIa and FVII:C/FVII:AM ratios. Sixteen batches of prothrombin complex concentrates (PCC) from 3 manufacturers were also analysed. FVIIa could be detected in all preparations, with considerable variations from batch to batch. In contrast to the results obtained in plasma from normal individuals, there was a close correlation between FVIIa and FVII:C/FVII:AM ratios. The preparations could be characterized by their FVII and FVIIa potencies and by their FVII:C/FVII:AM ratios. In PCC, FVII:C was very strongly correlated with FVIIa, whereas no significant correlation was observed between FVII:AM and FVII:C and between FVII:AM and FVIIa, respectively. These results demonstrate that the FVII:C assay used is sensitive for detecting FVIIa. Thus, we cannot confirm that FVIIa sensitivity of one-stage clotting assays for FVII:C is low when a rabbit thromboplastin and a non-adsorbed FVII-deficient plasma is used.

Adolescent↗

[Gastrectomy in congenital factor VII deficiency with substitution of factor VII concentrate].

Case report of a 57-year old man, who had a severe congenital factor VII deficiency (factor VII 2%), and who was substituted with factor VII concentrate, before undergoing a subtotal gastrectomy. The patient was previously asymptomatic. The operation and wound-healing was without complication. That the patient, despite his factor VII deficiency, showed no clinical signs of a bleeding diathesis, raises the question, whether in such a case a factor VII substitution is necessary. 3 children of the patient (2 sons aged 25 and 23 years, and an 18 year old daughter) were examined and found to be heterozygote carriers to a degree of 32%, 42% and 60% factor VII; none showed sure signs of a bleeding tendency related to factor VII deficiency.

Adolescent↗

The role of phospholipids and the factor VII Gla-domain in the interaction of factor VII with tissue factor.

Whether or not the factor VII Gla-domain is involved in the high-affinity interaction of factor VII and tissue factor via calcium-dependent interactions with surrounding phospholipids is unknown. To investigate this, we have purified the factor VII Gla-peptide (FVII-GP) from digested recombinant human factor VIIa and assessed its effect on factor VII:tissue factor interactions. FVII-GP inhibited the activation of factor X by factor VIIa in the presence of either soluble or cell surface tissue factor half-maximally at 0.5 microM and 2.7 microM, respectively. However, FVII-GP failed to inhibit the specific binding of factor VIIa to cell-surface tissue factor, and did not inhibit the ability of tissue factor to stimulate the amidolytic activity of factor VIIa. Unrelipidated tissue factor apoprotein stimulated the amidolytic activity of factor VIIa to the same extent as relipidated tissue factor apoprotein. These findings suggest that the factor VII Gla-domain does not directly interact with tissue factor, but rather is important for calcium binding and concomitant expression of other factor VII epitopes necessary for tissue factor recognition and binding. To test this hypothesis, we have prepared a monoclonal antibody against a putative factor VII epitope that participates in the interaction of factor VII with cell-surface tissue factor (peptide 195-206) and assessed its ability to bind to factor VII in the presence and absence of calcium. Binding of this monoclonal antibody (PW-4) to intact factor VIIa was calcium-dependent and could be inhibited in a dose-dependent manner by peptide 195-206.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

Similar molecular interactions of factor VII and factor VIIa with the tissue factor region that allosterically regulates enzyme activity.

Tissue factor (TF) binds the zymogen (VII) and activated (VIIa) forms of coagulation factor VII with high affinity. The structure determined for the sTF-VIIa complex [Banner, D. W., et al. (1996) Nature 380, 41-46] shows that all four domains of VIIa (Gla, EGF-1, EGF-2, and protease) are in contact with TF. Although a structure is not available for the TF-VII complex, the structure determined for free VII [Eigenbrot, C., et al. (2001) Structure 9, 675-682] suggests a significant conformational change for the zymogen to enzyme transition. In particular, the region of the protease domain that must contact TF has a conformation that is altered from that of VIIa, suggesting that the VII protease domain interacts with TF in a manner different from that of VIIa. To test this hypothesis, a panel of 12 single-site sTF mutants, having substitutions of residues observed to contact the proteolytic domain of VIIa, have been evaluated for binding to both zymogen VII and VIIa. Affinities were determined by surface plasmon resonance measurements using a noninterfering anti-TF monoclonal antibody to capture TF on the sensor chip surface. Dissociation constants (K(D)) measured for binding to wild-type sTF are 7.5 +/- 2.4 nM for VII and 5.1 +/- 2.3 nM for VIIa. All of the sTF mutants except S39A and E95A exhibited a significant decrease (>2-fold) in affinity for VIIa. The changes in affinity measured for VII or VIIa binding with substitution in sTF were comparable in magnitude. We conclude that the proteolytic domain of both VII and VIIa interacts with this region of sTF in a nearly identical fashion. Therefore, zymogen VII can readily adopt a VIIa-like conformation required for binding to TF.

Allosteric Regulation↗

Specific molecular interaction sites on factor VII involved in factor X activation.

Factor VII, a serine-protease zymogen, and tissue factor, the cellular receptor/coenzyme, are the protein components of the macromolecular complex which initiates the extrinsic pathway of the coagulation cascade. Previous studies were directed to the identification of functional sites on factor VII which mediate factor X activation, employing a series of potentially inhibitory synthetic peptides representing the primary structure of factor VII and antibodies to selected peptides. The involvement of at least four high-affinity interactive regions [factor VII (44-50), (196-229), (285-305) and (376-396) peptides] on the surface of factor VII was clearly demonstrated. The minimal sequences for the expression of inhibitory activity of these four molecular recognition domains on factor VII were identified using short and overlapping peptides. The short factor VII-(206-218)-peptide (most inhibitory peptide in the sequence 196-229 on factor VII) inhibited the binding of factor VII to the tissue-factor-expressing J82 cell line. Furthermore, radiolabeled [Tyr201] factor VII-(199-221)-peptide, with a tyrosine substituted for the normal tryptophan residue, was specifically bound to J82 cells, and also the binding of the radiolabeled peptide to this cell line was specifically inhibited by a monoclonal antibody to tissue factor, confirming that the interaction site for tissue factor on factor VII is present within the peptide sequence 196-229. Kinetic analyses suggested that the regions represented by factor VII-(285-305)- and factor VII-(376-396)-peptides are involved in factor X recognition and the chemical cross-linking of the radiolabeled peptides resulted in specific binding to factor X, confirming that these two regions on factor VII represent the substrate-recognition site. Furthermore, these radiolabeled peptides specifically interact with the heavy chain of factor X, suggesting that the complementary binding region for the substrate-recognition site on factor VII are present on the heavy chain of factor X.

Amino Acid Sequence↗

The first epidermal growth factor-like domains of factor Xa and factor IXa are important for the activation of the factor VII--tissue factor complex.

During tissue factor (TF)-induced coagulation, the factor (F)VIIa-TF complex activates factor (F)X and factor (F)IX. Through positive feedback, the generated FXa and FIXa activate FVII-TF. The first epidermal growth factor-like (EGF1) domains of FX and FIX serve as important TF-recognition motifs when FVIIa-TF activates FX or FIX. Here, we investigated the role of EGF1 domains of FXa and FIXa during the activation of FVII-TF and inhibition by tissue factor pathway inhibitor (TFPI). FXaPCEGF1 (EGF1 domain of FXa replaced with that of protein C), and FXaQ49P (EGF1 domain mutant with impaired calcium-binding), and the corresponding FIXa mutants were generated, and their abilities to activate FVII-TF were compared with the wild-type (WT) enzymes. In the absence of TF, the rates of FVII activation were similar between WT enzymes and mutant FXa and FIXa proteases. In the presence of either soluble TF (sTF) or relipidated TF, each mutant of FXa or FIXa activated FVII-TF at a slower rate than the corresponding WT enzyme. Kinetics of inhibition of the amidolytic activity of WT and the mutant FXa proteases by either two-domain or full-length TFPI were similar. However, compared with the complex of TFPI-FXaWT, the abilities of the complexes of TFPI-FXa mutants to inhibit FVIIa-TF were impaired. We conclude that the EGF1 domains of FXa and FIXa are important for the activation of FVII-TF and for the formation of FVIIa-TF-FXa-TFPI complex.

Amino Acid Motifs↗

Genotype associations of factor VII gene with plasma factor VII coagulant activity and antigen levels in healthy Chinese.

A raised plasma factor VII (FVII) level is one of the risk factors for coronary artery disease. The R353Q polymorphism at codon 353 and the 10 base pair (bp) insertion (0/10 bp) polymorphism of the FVII gene have been reported to be associated with plasma FVII levels in several populations. We investigated these two polymorphisms in 209 male and 214 female healthy Chinese. The allele frequencies of 10 bp and Q were 0.036 and 0.045, respectively. Strong linkage disequilibrium was observed between these two sites (Delta = 0.85, P < 0.001). There were significant genotype associations of these two loci with FVII coagulant activity (FVIIc) and antigen (FVIIAg) levels. Heterozygous individuals had lower FVIIc and FVIIAg levels than those homozygous for the common alleles. When analyzed separately by gender, the 0/10 bp polymorphism was strongly associated with FVIIAg levels in males and females. However, both polymorphisms were significantly associated with FVIIc levels only in the females. The effect of 0/10 bp polymorphism predominated over that of the R353Q polymorphism in a two-way analysis of variance procedure. In the Chinese, the 10 bp insertion may reduce transcription of the FVII gene, leading to the decreased synthesis of FVII protein and thus FVIIc.

Adult↗

Clinical phenotypes and factor VII genotype in congenital factor VII deficiency.

To investigate the relationship between clinical phenotype, clotting activity (FVIIc) and FVII genotype, a multi-center study of factor VII (FVII) congenital deficiency with centralized genotyping and specific functional assays was carried out. FVII mutations characterized in patients (n=313) were extremely heterogeneous (103 different, 22 novel). Clinical phenotypes ranged from asymptomatic condition, including 15 homozygotes and 14 double heterozygotes, to patients with a severe disease characterized by life-threatening and disabling symptoms (CNS, GI bleeding and hemarthrosis) strongly associated with an early age of presentation. Based on type and number of symptoms we classified 90 'severe' (median FVIIc 1.4%, IQR [Interquartile Range] 0.9-3.8), 83 'moderate' (FVIIc 3%, IQR 1-21.7), and 140 'mild' bleeders (FVIIc 14%, IQR 3-31). The significantly different FVIIc levels, and the decreasing prevalence of homozygotes or double heterozygotes among severe (98%), moderate (84%) and mild (56%) bleeders, further support our classification. The excess of females among moderate bleeders (female/male ratio = 2.6) is attributable to menorrhagia. There was no evidence for modulation of clinical features by frequent functional polymorphisms. Homozygotes for the same mutation (Ala294Val; 11125delC) with similar FVIIc and FXa generation levels, showed striking differences in clinical phenotypes. Our study depicts the ample clinical picture of this rare disorder, proposes a severity classification and provides arguments for the early management of the disease in the severe cases. Genotype-phenotype relationships indicate the presence of major environmental and/or extragenic components modulating expressivity of FVII deficiency.

Adolescent↗