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A new sensitive assay for bovine activated factor XI (factor XIa) using a reconstituted coagulation cascade system.

A sensitive assay for quantitating bovine activated Factor XI (Factor XIa) in vitro was developed by measuring the amidolytic activity of thrombin generated in a mixture of Factors XIa, IX and X and prothrombin prepared from bovine source and washed bovine platelets. In this system, the rate of thrombin generation increased linearly with increasing amounts (fmoles) of Factor XIa. The assay system for Factor XIa was not significantly affected by the presence of plasma kallikrein, Factor XIIa, high-molecular-weight kininogen, amylose sulfate or sulfatide within the range of the amounts used for surface-mediated activation of Factor XII, prekallikrein and Factor XI. Following surface-mediated activation of Factor XI, further generation of Factor XIa was blocked by adding freeze-thawed platelets that contain cationic proteins which bind to negatively-charged surfaces (J. Biochem. 97, 139-151, 1985). The method is useful to the kinetic analysis of the surface-mediated activation of Factors XII and XI, although it is not applicable to the activation in plasma.

Animals

Determination of the minimal concentrations of contact activation factors in deficient substrate plasmas required to assess accurately factor XII, factor XI, factor IX, and high molecular weight kininogen.

Using combined deficient plasmas prepared by passage of a deficient plasma over an anti-factor XI-monoclonal antibody column, we have determined the threshold concentrations of each coagulation factor of contact phase in factor-deficient substrate plasmas required to determine accurately the functional activities of factor XII, factor XI, factor IX and high molecular weight kininogen (HMWK). In order to reliably quantitate factor XI and factor IX activity levels, at least 20% factor XII and 20% factor XI, respectively, were required in the deficient substrate plasmas. In the assessment of factor XII activity, approximately 40% factor XI was required in the factor XII-deficient substrate plasma. On the other hand, only 11-12% factor XI or HMWK was required in the deficient substrate plasmas in the assessment of these two clotting factors. Our data emphasize that deficiencies of other clotting factors may reduce the apparent activity of the clotting factor in question if their concentration is rate-limiting in the clotting assay.

Blood Coagulation Disorders

Factor XI activity and factor XI antigen in homozygous and heterozygous factor XI deficiency.

A relatively potent antiserum against highly purified, unactivated human factor XI antigen was raised in a rabbit. This antiserum, after concentration, neutralized 50% of the factor XI clotting activity of a standard normal plasma at an antiserum dilution of 1/900. The antiserum was used in a neutralization-inhibition assay to study the relation between factor XI clotting activity and factor XI antigen in plasma from ten unrelated patients with homozygous factor XI deficiency and from 12 heterozygous family members of these patients. No evidence of factor XI antigen significantly in excess of factor XI activity was found in either group. All data to date have been consistent with the hypothesis that hereditary factor XI deficiency represents a genetic disorder resulting from the absence of factor XI molecule. Severity of bleeding in factor XI deficiency could not be correlated with the level of factor XI activity or factor XI antigen.

Animals

Purification and characterization of platelet factor XI.

Factor XI activity and antigen was purified about 300 fold from human platelets through chromatography on Con-A Sepharose, SP-Sephadex C-50, immobilized goat anti-factor XI, and SP-Sephadex. The partially purified platelet factor XI (Pt-XI) could be activated by activated factor XII generated in situ from single chain factor XI in a reaction requiring high molecular weight kininogen (HMWK) and a surface. Native Pt-XI migrated as a molecule of Mr = 245,000 on sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) as identified by Western blotting. On reduction, Pt-XI appeared to have a Mr = 52,000. Neither form was affected by exposure to trypsin. Incubation of Pt-XI with purified factor XII, HMWK, and kaolin produced activated platelet factor XI clotting activity and, concomitantly, the generation over time of a new chain on reduced SDS-PAGE of Mr = 44,500. The coagulant activity of the activated form could be neutralized by diisopropyl flurophosphate (DFP). Incubation of the activated mixture with 3H-DFP followed by reduced SDS-PAGE showed the active site to be associated with a unit of Mr = 44,500. The adsorption domain as defined by adsorption to kaolin was localized to the Mr = 44,500 chain containing the active site. Hence, both active site and adsorption functions, properties of separate chains in plasma factor XI, reside in the same chain of Mr = 44,500 of platelet factor XI.

Blood Platelets

Organization of the gene for human factor XI.

Factor XI (plasma thromboplastin antecedent) is a plasma glycoprotein that participates in the early phase of blood coagulation. The gene for the human protein has been isolated from two different lambda phage genomic libraries. Four independent recombinant lambda phage carrying overlapping DNA inserts that coded for the entire gene for factor XI were isolated and characterized by restriction mapping, Southern blotting, and selective DNA sequencing to establish the number and location of the intron-exon boundaries. The gene for human factor XI was 23 kilobases in length and consisted of 15 exons (I-XV) and 14 introns (A-N). Exon I coded for the 5' untranslated region, and exon II coded for the signal peptide. The next eight exons (III-X) coded for the four tandem repeats of 90 or 91 amino acids that were present in the amino-terminal region of the mature protein. Each of these tandem repeats was coded by two exons that were interrupted by a single intron, and these introns were located in essentially the same position within each of the four tandem repeats. The carboxyl-terminal region of the protein, which contained the catalytic chain, was coded by five exons (XI-XV) that were interrupted by four introns. The last four introns were located in the same positions as those in the genes for human tissue plasminogen activator and human urokinase.

Amino Acid Sequence

Activation of human blood coagulation factor XI independent of factor XII. Factor XI is activated by thrombin and factor XIa in the presence of negatively charged surfaces.

Human blood coagulation factor XI was activated by either autoactivation or thrombin. These reactions occurred only in the presence of negatively charged materials, such as dextran sulfate (approximately Mr 500,000), sulfatide, and heparin. During the activation, factor XI was cleaved at a single Arg-Ile bond by thrombin or factor XIa to produce an amino-terminal 50-kDa heavy chain and a carboxyl-terminal 35-kDa light chain. This activation pattern is identical to that produced by factor XIIa. The addition of a small amount of thrombin and sulfatide to factor XII-deficient plasma produced shorter clotting times than when these agents were added to factor XI/factor XII combined-deficient plasma. These results suggest that the activation of factor XI by thrombin and possibly the autoactivation of factor XI proceed in plasma to lead fibrin clot formation. These reactions may have a role on an appropriate negatively charged surface in normal hemostasis.

Anions

Comparison of bleeding tendency, factor XI coagulant activity, and factor XI antigen in 25 factor XI-deficient kindreds.

The relationship of clinical bleeding tendency and factor XI antigen (XI:Ag) in factor XI deficiency was studied in 78 members of 25 factor XI-deficient kindreds. Factor XI:Ag was measured in a competitive radioimmunoassay, using monospecific, heterologous anti-factor XI antibody. 125I-labeled factor XI, and staphylococcal protein A as the precipitating agent. Deficiency of factor XI clotting activity (XI:C), less than 0.62 U/mL, occurred in 48 individuals, 22 of whom experienced postoperative or posttraumatic bleeding: Their mean factor XI:C was 0.21 +/- 0.04 U/mL (SEM), and factor XI:Ag was 0.23 +/- 0.04 U/mL. The remaining 26 had no clinical bleeding, many despite surgical challenge: Their mean factor XI:C was 0.30 +/- 0.04 U/mL, and factor XI:Ag was 0.34 +/- 0.05 U/mL. In all, 13 kindreds had between 1 and 11 members with bleeding; the other 12 had none with deficient hemostasis. Two heterozygous factor XI-deficient individuals appeared to be positive for cross-reacting material (CRM+). The slope of the regression line for factor XI:C and factor XI:Ag data points in the 78 individuals tested did not differ from control, and all points fell within 95% confidence limits derived from control. In conclusion, bleeding tendency appears to be consistent within a given kindred and is not determined exclusively by factor XI:C or factor XI:Ag levels.

Antigens

Mechanism of activation of coagulation factor XI by factor XIIa studied with monoclonal antibodies.

The interaction of Factor XIIa with Factor XI was investigated using two monoclonal antibodies, one (3Cl) directed against the heavy chain of Factor XIa and the other (5F4) against its light chain. 3C1 either as intact IgG or as Fab' fragment, enhanced the rate of Factor XIa generation in the fluid phase but inhibited it in the presence of kaolin and high molecular weight (HMW) kininogen. In contrast, the Fab' fragments of 5F4 inhibited only the fluid phase activation and had no effect on the surface-mediated activation. 3C1 was found to block the binding of Factor XI to HMW kininogen, whereas 5F4 did not. We conclude: a domain on the heavy chain region of Factor XI is essential for binding to HMW kininogen and for optimal surface-mediated activation by Factor XIIa; and binding of 3C1 to Factor XI changes its conformation rendering it a more favorable substrate for Factor XIIa in the fluid phase.

Antibodies, Monoclonal

Characterization of a panel of monoclonal antibodies to human coagulation factor XI and detection of factor XI in Hep G2 cell conditioned medium.

We have produced a panel of ten monoclonal antibodies specific to coagulation factor XI. Western blot analysis demonstrates that 9 of these antibodies react with the heavy chain of factor XI and one with the light chain. Seven of these antibodies inhibit factor XI and factor XIa activity. We have used immobilised monoclonal antibody for the production of factor XI deficient plasma and to purify factor XI to homogeneity with high yield in a simple two-step procedure. These monoclonal antibodies were used to develop highly sensitive immunoassays capable of detecting less than 0.01 mu factor XI antigen ml-1. A strong correlation was found between antigen and activity levels in 11 patients with hereditary deficiency indicating that none was cross-reacting material positive. Cultured Hep G2 cells were found to synthesize small amounts of factor XI antigen and this could also be detected by functional assay and by western blot analysis.

Animals

Factor XI kinetics after plasma exchange in severe factor XI deficiency.

Plasma exchange in a patient with factor XI deficiency allowed the determination of the factor XI disappearance time. The decay curve showed a biphasic pattern with a t1/2 of h. After a loading dose by means of plasma exchange with fresh frozen plasma (FFP) up to a factor XI level of 65%, administration of 0.5 liter FFP every 12 h was necessary to maintain the factor XI concentration between 40 and 60%. The clearances of factor XI, calculated from the results of plasma exchange and from the maintenance dose, correlated very well and showed that the t1/2 of factor XI did not change after surgery. The patient underwent major surgery uneventfully but ultimately died 3 1/2 weeks after operation from cerebral damage due to cardiac arrest, which occurred on the 2nd postoperative day.

Factor XI

Expression of human blood coagulation factor XI: characterization of the defect in factor XI type III deficiency.

Human factor XI (FXI) is a blood coagulation factor participating in the early phase of the intrinsic pathway of blood coagulation. It circulates in blood as a glycoprotein composed of two identical chains held together by a single disulfide bond between the fourth apple domains. FXI has been expressed in baby hamster kidney (BHK) cells, where it was synthesized as a single-chain molecule that was converted to the dimer before secretion. The recombinant protein was fully active in a clotting assay, indicating that it interacted readily with other components of the coagulation cascade. A mutant FXI in which Phe283 was converted to Leu (Phe283Leu) was also expressed in BHK cells. This amino acid change occurs in the fourth apple domain of FXI and corresponds to the type III deficiency in Ashkenazi Jews. The mutant protein was secreted at reduced levels (about 8%) compared with normal FXI. This was due to a defect in the dimerization of the molecule rather than a decrease in the transcription of type III messenger RNA. Once secreted, however, the mutant protein consisted of a dimer with full biologic activity. The in vitro expression of FXI indicated that the impaired dimerization and secretion of the Phe283Leu mutant can account for the defect found in patients who are homozygous for the type III FXI deficiency.

Amino Acid Sequence

Factor XI and platelets: Evidence that platelets contain only minimal factor XI activity and antigen.

Factor-XI activity of platelets has been studied in platelet-rich plasmas and isolated platelet suspensions. Fresh platelets in both environments had little or no measurable factor-XI activity. Frozen and thawed platelet-rich normal plasma had markedly elevated apparent factor-XI activity and factor-XI activity as compared to platelet-poor plasma. Frozen and thawed platelet-rich and platelet-poor normal plasmas had equivalent factor-XI antigen. Platelets isolated from normal blood and from factor-XI deficient blood had the same small amounts of apparent factor-XI activity, which increased slightly on freezing and thawing. The data indicates that minimal factor XI is associated with the platelet. The markedly elevated apparent factor-XI activity of frozen and thawed platelet-rich plasma is shown to reflect the interaction of a platelet activator with plasma clotting factors to produce a later activated-clotting-intermediate.

Antigens

Human platelets and factor XI. Localization in platelet membranes of factor XI-like activity and its functional distinction from plasma factor XI.

Because human platelets participate in the contact phase of intrinsic coagulation and contain a Factor XI-like coagulant activity, the nature of the Factor XI-like activity was examined and compared with purified plasma Factor XI. The platelet factor XI-like activity was sedimented with the particulate fraction of a platelet lysate, was inactivated by heat (t(1/2) 3.5 min, 56 degrees C), was not a nonspecific phospholipid activity, and was destroyed by treatment with Triton X-100. Isolated platelet membranes were four-fold enriched in Factor XI activity and similarly enriched in plasma membrane marker enzymes. The Factor XI-like activity of platelet membranes was detected only when assayed in the presence of kaolin, which suggests that it is present in an unactivated form and can participate in contact activation. Concanavalin A inhibited the Factor XI-like activity of platelet lysates and platelet membranes but not of plasma or purified Factor XI. A platelet membrane-Factor XI complex was isolated after incubation of membranes with purified Factor XI. The Factor XI activity of the platelet membrane-plasma Factor XI complex was inhibited by concanavalin A, whereas unbound plasma Factor XI retained activity. An antibody raised against plasma Factor XI inhibited the in vitro Factor XI activity of plasma and of the platelet membrane-plasma Factor XI complex but had no effect on the endogenous Factor XI-like activity of washed lysed platelets or isolated platelet membranes. Washed platelets and isolated platelet membranes obtained from a Factor XI-deficient donor without a history of excessive bleeding had normal quantities of platelet Factor XI-like activity and normal behavior in the contact phase of coagulation (collagen-induced coagulant activity). These results indicate that platelet membranes contain an endogenous Factor XI-like activity that is functionally distinct from plasma Factor XI.

Antibodies

Transfusion-induced specific anti-factor XI inhibitor in a patient with previously unrecognized factor XI deficiency.

This article reports the rare occurrence and investigation of a specific anti-factor XI inhibitor that arose after fresh-frozen plasma infusion into a patient with previously unrecognized Factor XI deficiency. The IgG fraction of the patient's plasma that contained anti-Factor XI antibody was isolated by chromatography on DEAE-Affigel and concentrated. It was shown to exert inhibitory effect on purified Factor XI and XIa both in the activated and nonactivated partial thromboplastin time assay.

Aged

Amino acid sequence of human factor XI, a blood coagulation factor with four tandem repeats that are highly homologous with plasma prekallikrein.

A lambda gtll cDNA library prepared from human liver poly(A) RNA has been screened with affinity-purified antibody to human factor XI, a blood coagulation factor composed of two identical polypeptide chains linked by a disulfide bond(s). A cDNA insert coding for factor XI was isolated and shown to contain 2097 nucleotides, including 54 nucleotides coding for a leader peptide of 18 amino acids and 1821 nucleotides coding for 607 amino acids that are present in each of the 2 chains of the mature protein. The cDNA for factor XI also contained a stop codon (TGA), a potential polyadenylation or processing sequence (AACAAA), and a poly(A) tail at the 3' end. Five potential N-glycosylation sites were found in each of the two chains of factor XI. The cleavage site for the activation of factor XI by factor XIIa was identified as an internal peptide bond between Arg-369 and Ile-370 in each polypeptide chain. This was based upon the amino acid sequence predicted by the cDNA and the amino acid sequence previously reported for the amino-terminal portion of the light chain of factor XI. Each heavy chain of factor XIa (369 amino acids) was found to contain 4 tandem repeats of 90 (or 91) amino acids plus a short connecting peptide. Each repeat probably forms a separate domain containing three internal disulfide bonds. The light chains of factor XIa (each 238 amino acids) contain the catalytic portion of the enzyme with sequences that are typical of the trypsin family of serine proteases. The amino acid sequence of factor XI shows 58% identity with human plasma prekallikrein.

Amino Acid Sequence

A molecular genetic study of factor XI deficiency.

Factor XI deficiency is a rare bleeding diathesis found predominantly in Ashkenazi Jewish kindreds. A recent study of six Jewish patients identified three distinct mutations (Types I, II, and III) in the factor XI gene that were sufficient to fully define the genotypes of the patients. We have investigated 63 patients with factor XI deficiency and find overall allele frequencies of 44% for the type II mutation, 31% for the type III mutation, and 0% for the type I mutation. Therefore, 25% of the mutant factor XI alleles in our sample remain undefined. However, the distribution of mutant alleles is significantly different between Jewish and non-Jewish populations with hitherto undefined mutations accounting for 84% of the disease alleles in non-Jewish patients. Plasma factor XI:C levels were found to differ significantly between different homozygous and compound heterozygous genotypes and the inheritance of the II/III genotype was found to carry an increased risk of the most severe bleeding tendency.

Alleles

Purification of factor XI and some properties of activated factor XI from porcine plasma.

Porcine Factor (F.) XI was purified by following three successive chromatographies. By this procedure, about 5.5 mg of F. XI was obtained from 500 ml of the plasma. The F. XI forms dimer, and is heterogeneous molecule, judging from SDS-polyacrylamide gel electrophoresis. The properties of isolated porcine F. XIa are great similar with those of bovine F. XIa.

Amino Acid Sequence