Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “FACTOR IX”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 451 records · Page 25Linked to original sources

Characterization of three abnormal factor IX variants (Bm Lake Elsinore, Long Beach, and Los Angeles) of hemophilia-B. Evidence for defects affecting the latent catalytic site.

Abnormal factor IX variant proteins were isolated from the plasmas of three unrelated severe hemophilia-B families that had been previously shown to contain functionally impaired molecules immunologically similar to normal factor IX. The families studied were: (1) a patient with markedly prolonged ox brain prothrombin time, designated factor IX Bm Lake Elsinore (IXBmLE); (b) three patients (brothers) with moderately prolonged ox brain prothrombin time, designated factor IX Long Beach (IXLB); and (c) a patient with normal ox brain prothrombin time designated factor IX Los Angeles (IXLA). Each variant molecule comigrates with normal factor IX (IXN) both in the sodium dodecyl sulfate and in the nondenaturing alkaline gel electrophoresis. All three variant proteins are indistinguishable from IXN in their amino acid compositions, isoelectric points, carbohydrate distributions and number of gamma-carboxyglutamic acid residues. Each variant protein undergoes a similar pattern of cleavage by factor XIa/Ca2+ and by factor VIIa/Ca2+/tissue factor, and is activated at a rate similar to that observed for IXN. All of the three variant proteins also react with an anti-IXN monoclonal antibody that interferes with the binding of activated IXN(IXaN) to thrombin-treated factor VIIIC. However, in contrast to IXaN, the cleaved IXBmLE has negligible activity (approximately 0.2%), and cleaved forms of IXLA and IXLB have significantly reduced activity (approximately 5-6%) in binding to antithrombin-III/heparin, and in activating factor VII (plus Ca2+ and phospholipid) or factor X (plus Ca2+ and phospholipid) +/- factor VIII. These data, taken together, strongly indicate that the defect in these three variant proteins resides near or within the latent catalytic site. This results in virtually a complete loss of catalytic activity of the cleaved IXBmLE molecule and approximately 95% loss of catalytic activity of the cleaved IXLA and IXLB molecules.

Antibodies, Monoclonal↗

Evaluation of recombinant human factor IX: pharmacokinetic studies in the rat and the dog.

The pharmacokinetics of intravenously administered recombinant human factor IX (rhFIX) were studied in Sprague-Dawley rats and Beagle dogs. Rats received rhFIX (50 IU/kg once daily) for 28 days, and the plasma half-life was 5 h. Anti-Human Factor IX serum antibody levels were found in only 1 of 12 rats. The pharmacokinetic profiles of rhFIX or Mononine, a purified human plasma-derived factor IX, after single 100 IU/kg i.v. doses in dogs, were similar. Peak plasma concentrations of rhFIX and Mononine were 4-5 micrograms/ml. The mean plasma half-lives were 13.2 +/- 1.6 h for rhFIX and 13.3 +/- 1.6 h for Mononine. Dogs also received rhFIX (40 IU/kg i.v., daily) for 28 days or Mononine (40 IU/kg i.v. daily) for 14 days. Anti-human Factor IX serum antibody levels were determined for each compound. Pharmacokinetic half-lives decreased in these treated dogs which developed antihuman Factor IX antibodies. The antibody responses in 28 day rhFIX (40 IU/kg) dogs were similar to 14 day Mononine (40 IU/kg) dogs.

Animals↗

Two novel point mutations correlate with an altered developmental expression of blood coagulation factor IX (hemophilia B Leyden phenotype).

Hemophilia B Leyden is characterized by low levels of factor IX antigen and activity before the age of 15 years, whereas after puberty factor IX levels rise at a rate of about 5% per year. Two distinct point mutations (deletion of A, A----G) were identified at position +13 of the factor IX gene of a Greek and an American patient with hemophilia B Leyden. The nucleotide changes have occurred 32 basepairs downstream of a previously reported point mutation in a Dutch kindred with the same hemophilic phenotype. The results point to the importance of sequences surrounding the putative start site for the constitutive expression of the factor IX gene and to the possible significance of an imperfect direct repeat of DNA.

Age Factors↗

Factor IX deficiency in an Alaskan Malamute.

Factor IX deficiency, consistent with hemophilia B, was detected in a 6-month old male Alaskan Malamute with a 2-week history of persistent oozing from an oral wound. Laboratory studies disclosed an intrinsic coagulation defect. Hemophilia A was initially suspected. Further evaluation demonstrated normal factor VIII activity and factor VIII-related antigen, but factor IX activity was only 1.3% of normal.

Alaska↗

Factor IX and prothrombin in amniotic fluid and fetal plasma: constraints on prenatal diagnosis of hemophilia B and evidence of proteolysis.

Potential limitations of prenatal diagnosis of hemophilia B, as compared to hemophilia A, include (1) occurrence of far more frequent defects with abnormal circulating antigen, (2) lower levels of factor IX in fetal plasma at 16 to 20 weeks gestation, and (3) the presence of factor IX antigen in amniotic fluid. In addition, proteolysis could occur, especially with amniotic fluid contamination of fetal plasma. A sensitive polyclonal immunoradiometric assay for factor IX antigen was used to characterize the range of levels in amniotic fluids and fetal plasma samples. To assess for altered forms, factor IX species were compared to those of a homologous clotting factor, prothrombin. Fourteen postmortem abortus blood samples from fetuses of 14 to 23 weeks gestation had factor IX antigen levels that averaged 5.1 U/dL and ranged from 1.7 to 15 U/dL. Amniotic fluid factor IX antigen averaged 2.9 U/dL, with a range from 1.4 to 8.5 U/dL in 19 separate amniocentesis samples. Thus, in a male fetus at risk of hemophilia B and with a low circulating level of gene product, mixture of fetal plasma with amniotic fluid could severely limit prenatal diagnosis, assuming that the amniotic fluid factor IX is of maternal origin. Despite rapid processing of amniotic fluid samples, the prothrombin was extensively cleaved, suggesting that it had been activated in vivo. On gel electrophoresis of amniotic fluid samples, however, factor IX was only minimally cleaved. In the postmortem fetal blood specimens, prothrombin was partially cleaved. On crossed-immunoelectrophoresis, fetal plasma prothrombin showed decreased migration in calcium, compared to EDTA, indicative of mature gamma-glutamyl carboxylation. The latter presumably resulted from fetal hepatic synthesis.

Amniotic Fluid↗

An HhaI polymorphism is present in factor IX genes of Asian subjects.

Hemophilia B is caused by decreased factor IX procoagulant activity. An HhaI restriction site polymorphism near the factor IX gene has been detected by the polymerase chain reaction. Frequency and linkage data already observed in Caucasians are confirmed and the polymorphism is also prevalent in the factor IX genes of Black and Asian populations.

Asian People↗

Defective propeptide processing of blood clotting factor IX caused by mutation of arginine to glutamine at position -4.

Blood clotting factor IX is synthesized as a precursor polypeptide that would be expected to be proteolytically cleaved in at least two positions during maturation to remove the prepeptide and propeptide regions. We show that a point mutation causing hemophilia B changes the amino acid at position -4 in the propeptide region of factor IX from an arginine to a glutamine, which results in the expression of a stable longer protein with 18 additional amino acids of the N-terminal propeptide region still attached. This suggests that in the normal maturation of factor IX the signal peptidase cleaves the peptide bond between amino acid residues -18 and -19, generating an unstable profactor IX intermediate. Further proteolytic processing to the mature factor IX depends on the arginine residue at -4. The significance of the homologous arginine residue in other processed proteins is discussed.

Amino Acid Sequence↗

The genetic distance between the coagulation factor IX gene and the locus for the fragile X syndrome: clinical implications.

In 3 families with the fragile-X [fra(X)] syndrome, we have identified a minimum of 4 recombinations in 9 meioses between the syndrome locus and the coagulation Factor IX gene. Two Factor IX intragenic restriction fragment length polymorphisms (RFLPs), produced with TaqI and XmnI, were used as markers. In lod score calculations, incomplete penetrance of the fra(X) mutation in males and females was taken into account by the computer program LIPED. The cumulative maximum lod score calculated from these data and from data previously reported was 2.75 at a recombination frequency of 20% (theta = 0.20). This indicates that the genetic distance between the Factor IX gene and the fra(X) locus is too great for Factor IX probes to be used alone for carrier detection in the fra(X) syndrome. Additional polymorphic loci more tightly linked to the fra(X) syndrome locus are required.

Factor IX↗

Immunosuppressive effects of factor IX products: an in vitro study.

The effects of a recombinant factor IX product (BeneFix), and of five plasma-derived factor IX products, AlphaNine, Immunine, Konyne, Mononine and Replinine on in vitro peripheral blood mononuclear cell (PBMC) immune function were compared in a blinded study. We assessed the effects of these products on Con-A-induced lymphocyte proliferation and interleukin-2 and interleukin-10 secretion, expression of lymphocyte activation markers, and nitric oxide secretion by stimulated mouse peritoneal macrophages. At 1 mL-1 for 48 h, Konyne reduced Con-A-induced mitogenesis by 50% (P < 0.05); AlphaNine, Mononine and BeneFix had no effect. At 10 IU mL-1, Con-A-induced mi- togenesis was at control levels with Mononine and BeneFix, but was reduced to <15% (P < 0.05) with each of the other products. IL-2 and IL-10 secretion by Con-A-stimulated lymphocytes was also markedly depressed by all the products tested except Mononine and BeneFix. Dialysis of these products did not substantially affect these results. Flow cytometric analysis of lymphocyte activation markers following Con-A stimulation showed that Konyne also decreased IL-2 receptor alpha and beta chain (CD25 and CD122) induction on PBMC. Konyne also inhibited nitric oxide secretion to levels <18% of controls. These results indicate that certain factor IX products, including some of purported higher purity, substantially depress in vitro immune function. The importance of these findings to in vivo immune function in haemophilia B patients remains to be established.

Animals↗

Why does the human factor IX gene have a G + C content of 40%?

The factor IX gene has a G + C content of approximately 40% in all mammalian species examined. In human factor IX, C----T and G----A transitions at the dinucleotide CpG are elevated at least 24-fold relative to other transitions. Can the G + C content be explained solely by this hot spot of mutation? Using our mathematical model, we show that the elevation of mutation at CpG cannot alone lower the G + C content below 45%. To search for other hot spots of mutation that might contribute to the reduction of G + C content, we assessed the relative rates of base substitution in our sample of 160 families with hemophilia B. Seventeen independent single-base substitutions are reported herein for a total of 96 independent point mutations in our sample. The following conclusions emerge from the analysis of our data and, where appropriate, the data of others: (1) Transversions at CpG are elevated an estimated 7.7-fold relative to other transversions. (2) The mutation rates at non-CpG dinucleotides are remarkably uniform; none of the observed rates are either more than twofold above the median for transitions or more than threefold above the median for transversions. (3) The pattern of recent mutation is compatible with the pattern during mammalian evolution that has maintained the G + C content of the factor IX gene at approximately 40%.

Base Composition↗

Circulating human factor IX produced in keratin-promoter transgenic mice: a feasibility study for gene therapy of haemophilia B.

It has previously been suggested that keratinocytes might provide a suitable target cell for delivery of factor IX to the systemic circulation for gene therapy of haemophilia B. Here, an investigation of the use of cellular gene promoters specific for keratinocytes was undertaken to examine whether factor IX could be passed from the epidermis to the systemic circulation. Utilizing two bovine cytokeratin gene promoters, BKIII and BKVI, three lines of transgenic mice were generated with targeted expression of human factor IX in the epidermis. All three transgenic mouse lines secreted epidermally derived human factor IX into the blood system. Most effective factor IX expression (46 ng/ml steady-state levels of circulating human factor IX) was obtained utilizing the BKVI gene promoter, the human homologue of K10, which is expressed exclusively in differentiated keratinocytes, localized distal to the basement membrane. This report demonstrates, for the first time, that human factor IX can be efficiently synthesized and secreted from keratinocytes in situ, and can cross the epidermal basement membrane to reach the systemic circulation. The transgenic mouse model will provide a good in vivo system with which to optimize the efficiency of different keratin gene promoter constructs for delivery of therapeutic gene products to the serum, especially for those promoters, such as K10, which are not effectively expressed in vitro.

Animals↗

The abnormal factor IX of hemophilia B+ variants.

A rather large proportion of the hemophilia B patients can be characterized as hemophilia B+ because of the presence in their plasma of a protein which is immunologically identical with human factor IX. In a group of 33 hemophilia B patients we found 14 cases of hemophilia B+ belonging to 11 independent pedigrees. The variant factor IX molecules of these families have been compared with respect to the following properties: 1) factor IX activity and its dependence on phospholipid concentration; 2) factor IX antigen; 3) prolongation of prothrombin time with an ox brain thromboplastin; 4) electrophoretic mobility; 5) Ca(+) binding capacity; 6) affinity for binding to heparin and 7) susceptibility of the factor IX antigen to contact-induced activation. In the study of these parameters the use of a precipitating antibody against highly purified human factor IX showed to be of great value. According to our criteria at least 7 different factor IX variants were present in the 11 families with hemophilia B+ studied. Because of this rather high heterogeneity a suitable nomenclature for subclassification of hemophilia B+ variants is proposed.

Antigens↗

Human factor IX corrects the bleeding diathesis of mice with hemophilia B.

Mice with hemophilia B have been engineered using gene targeting techniques. These animals exhibit severe factor IX deficiency and a clinical phenotype that mirrors the human disease. We have bred the founder animals onto two different strains of mice, C57B1/6 and CD-1, and have sought to determine whether adenoviral vectors expressing human factor IX could correct the bleeding diathesis of mice with hemophilia B. Initial experiments showed that purified plasma-derived human factor IX added to murine factor IX-deficient plasma resulted in complete correction of the activated partial thromboplastin time (aPTT), and that injection of 10(11) particles of an adenoviral vector expressing human factor IX resulted in normalization of a modified aPTT in mouse plasma. As an additional method of assessing the function of human factor IX in the murine coagulation system, bleeding times were performed in normal, hemophilic, and adenoviral-treated hemophilic mice. By two different bleeding-time techniques, the treated hemophilic mice gave values identical to normal littermate controls, whereas the untreated hemophilic mice exhibited heavy blood loss and prolonged bleeding. There was a marked difference in antibody formation in the two strains of mice; 100% of the hemophilic CD-1 mice formed antibodies to human factor IX, but none of the C57B1/6 mice did. These data suggest that the C57B1/6 hemophilic mice will be more useful for gene transfer studies, while the CD-1 hemophilic mice may be of greater utility in studying the development of inhibitors.

Adenoviridae↗

Thrombogenicity of a factor IX concentrate quantitated in a canine model.

Dose-ranging studies with a batch of factor IX concentrate have been performed in a canine non-stasis model of thrombogenicity. Doses between 50 and 200 IU/kg were infused over a 30 min period, and beagles were found to be more sensitive than greyhounds with regard to subsequent alterations in haemostatic parameters over a 150 min period. In beagles we detected significant increases in plasma fibrin(ogen) degradation products and reduction in fibrinogen concentrations in a dose-related manner after infusion of factor IX concentrate over the range 50-150 IU/kg. Plasma fibrinopeptide A was the most sensitive marker of activation of coagulation with significantly increased levels after factor IX at 50 IU/kg compared with control infusions of albumin. Recovery of infused factor IX was similar to values reported in man. In these experiments, measurement of urinary fibrinopeptide A did not prove to be a useful indicator of thrombogenicity. In conclusion, the beagle non-stasis model will provide a sensitive method to quantify the unwanted thrombogenic activities associated with the use of high doses of certain factor IX concentrates.

Animals↗

Antibody-probed conformational transitions in the protease domain of human factor IX upon calcium binding and zymogen activation: putative high-affinity Ca(2+)-binding site in the protease domain.

The Fab fragment of a monoclonal antibody (mAb) reactive to the N-terminal half (residues 180-310) of the protease domain of human factor IX has been previously shown to inhibit the binding of factor IXa to its cofactor, factor VIIIa. These data suggested that this segment of factor IXa may participate in binding to factor VIIIa. We now report that the binding rate (kon) of the mAb is 3-fold higher in the presence of Ca2+ than in its absence for both factors IX and IXa; the half-maximal effect was observed at approximately 300 microM Ca2+. Furthermore, the off rate (koff) of the mAb is 10-fold higher for factor IXa than for factor IX with or without Ca2+. Moreover, like the kon for mAb binding, the incorporation of dansyl-Glu-Gly-Arg chloromethyl ketone (dEGR-CK) into factor IXa was approximately 3 times faster in the presence of Ca2+ than in its absence. Since steric factors govern the kon and the strength of noncovalent interactions governs the koff, the data indicate that the region of factor IX at residues 180-310 undergoes two separate conformational changes before expression of its biologic activity: one upon Ca2+ binding and the other upon zymogen activation. Furthermore, the dEGF-CK incorporation data suggest that both conformational changes also affect the active site residues. Analyses of the known three-dimensional structures of serine proteases indicate that in human factor IX a high-affinity Ca(2+)-binding site may be formed by the carboxyl groups of glutamates 235 and 245 and by the main chain carbonyl oxygens of residues 237 and 240. In support of this conclusion, a synthetic peptide including residues 231-265 was shown to bind Ca2+ with a Kd of approximately 500 microM. This peptide also bound to the mAb, although with approximately 500-fold reduced affinity. Moreover, like factor IX, the peptide bound to the mAb more strongly (approximately 3-fold) in the presence of Ca2+ than in its absence. Thus, it appears that a part of the epitope for the mAb described above is contained in the proposed Ca(2+)-binding site in the protease domain of human factor IX. This proposed site is analogous to the Ca(2+)-binding site in trypsin and elastase, and it may be involved in binding factor IXa to factor VIIIa.

Amino Acid Sequence↗

IgG subclass identification of inhibitors to factor IX in haemophilia B patients.

Inhibitors to factor IX in haemophilia B are IgG antibodies. It is of interest to know the subclass type of these antibodies since the biological activity of the four IgG subclasses are different. Subclass identification has been difficult due to the lack of specific antibodies to IgG subclasses. Monoclonal hybridoma antibodies to these subclasses are now available. Here we present the results on the subclass identification of inhibitors from six patients with severe haemophilia B (titres 0.8-800 mu/ml). Plasma from one patient was obtained before inhibitor could be detected by coagulation assays. He had circulating complexes between factor IX and inhibitor. The technique used was crossed immunoelectrophoresis combined with an enzyme-linked immunoassay. This technique allows the subclass determination of both low-titre and high-titre inhibitors. All inhibitors gave a very strong reaction with antibody to IgG4, and four inhibitors also reacted with antibody to IgG1. Three of these inhibitors gave a faint reaction with antibody to IgG2 also, whereas no inhibitor contained any detectable IgG3. The finding of IgG4 as the main subclass is important since IgG4 antibodies do not bind complement. The presence of more than one subclass in the inhibitors demonstrates the heterogeneous nature of the inhibitors. This was demonstrated also at a stage of inhibitor development when the inhibitor could not be detected by coagulation assay.

Antibodies↗

Nucleotide substitutions at the -6 position in the promoter region of the factor IX gene result in different severity of hemophilia B Leyden: consequences for genetic counseling.

Mutations in the promoter region of the factor IX gene result in hemophilia B Leyden, which is characterized by considerable improvement in the disease after puberty. We have found that distinct nucleotide substitutions at the -6 position in the Leyden-specific (LS) region are associated with a different severity of hemophilia B. The proband (aged 2) from one family is a severe hemophiliac with factor IX activity (F.IXC) and antigen (F.IXAg) levels less than 1.0 U/dl. F.IXC and F.IXAg levels in two affected uncles are approximately 30% of normal levels. The LS region was targeted for analysis because the phenotypes suggested the inheritance of a factor IX Leyden gene. An abnormal TaqI digestion pattern was found in amplified DNA from the proband, and sequencing showed a G(-6) to C transversion that was linked to the disease in the family. In another family, two brothers (aged 8 and 9) suffer from mild hemophilia with F.IXC ranging from 7 to 10 U/dl and F.IXAg from 3 to 4 U/dl. They are the only documented members of the family with a bleeding tendency. Denaturing gradient gel electrophoresis on amplified fragments from one of the patient's genomic DNA corresponding to the 8 exons and flanking sequences of the factor IX gene suggested a defect only in a segment from the 5' region. This segment showed an altered TaqI digestion pattern, and sequencing demonstrated a G(-6) to A transition that was traced to the patient's mother and a grandmother. The different phenotypes associated with the G(-6) to A purine nucleotide transition compared with a G(-6) to C transversion provide evidence that this area is directly involved in the regulation of the human factor IX gene expression in vivo by binding of regulatory factors. The ability to predict that the conditions of a hemophilia B patient will improve with age has important implications for genetic counseling of the family. Therefore, the LS region should always be included when scanning the factor IX gene for mutations.

Adult↗

Acquired inhibitor against factor IX in a child: successful treatment with high-dose immunoglobulin and dexamethasone.

The occurrence of acquired inhibitor against factor IX:C is infrequent in haemophilia B patients and is very rare in previously healthy subjects, in whom it is often related to underlying diseases. We describe the case of a 2-year-old girl, who was referred to our hospital with haematomas, without previous bleeding history. Prolonged APTT, normal PT and a factor IX:C level below 1% were found. An inhibitor against factor IX:C was detected (5.5 U mL(-1)). Her father and mother showed normal factor IX:C levels. Treatment with high-dose immunoglobulin (400 mg kg(-1) day(-1) for 5 consecutive days by intravenous infusion) and dexamethasone (4 mg three times a day by intravenous injection for 4 consecutive days) normalized factor IX:C levels and overcame the inhibitor. In conclusion, high-dose immunoglobulin and high-dose dexamethasone are a successful and safe immunosuppressive approach for recovery from inhibitor occurrence.

Child, Preschool↗