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Metabolism of vitamin K and prothrombin synthesis: anticoagulants and the vitamin K--epoxide cycle.

Vitamin K is primarily located in hepatic microsomes, where the vitamin K-dependent carboxylation in prothrombin synthesis occurs. Recent evidence supports the idea that the carboxylation is linked to the metabolism of the vitamin--specifically the cyclic interconversion of vitamin K and vitamin K epoxide. The primary site of action of coumarin and indandione anticoagulants appears to be an inhibition of the epoxide-to-vitamin K conversion in this cycle. There is a correlation between the inhibition of prothrombin synthesis and the regeneration of vitamin K from the epoxide by anticoagulants. In hamsters and warfarin-resistant rats prothrombin synthesis and the epoxide-K conversion are less sensitive to warfarin than in the normal rat. The epoxide-K conversion is impaired in resistant rats, which may explain their high vitamin K requirement. There is also a correlation between vitamin K epoxidation and vitamin K-dependent carboxylation, but the apparent link may be because vitamin K hydroquinone is an intermediate in the formation of the epoxide and also the active form in carboxylation. The vitamin K-epoxide cycle is found in extrahepatic tissues such as kidney, spleen, and lung and is inhibited by warfarin.

1-Carboxyglutamic Acid↗

Maternally administered antenatal vitamin K1: effect on neonatal prothrombin activity, partial thromboplastin time, and intraventricular hemorrhage.

Infants weighing 1500 g or less at birth are susceptible to intraventricular hemorrhage. This may be due in part to low concentrations of vitamin K-dependent clotting factors. Women in labor between 24-34 weeks' gestation were selected, according to their hospital registration number, to receive 10 mg vitamin K1 intramuscularly at least four hours before delivery. Control women received no vitamin K. The study included only infants born of mothers who were in hospital more than four hours before delivery, who weighed 1500 g or less at birth, and were less than 34 weeks' gestation. Twenty vitamin K1 and 33 control infants qualified for the study. Infants in both groups received routine postnatal vitamin K1. On admission, the infant's prothrombin activity and partial thromboplastin time (PTT) were measured. A head ultrasound was done between days 2 and 4 of life. Results demonstrated significantly improved prothrombin activity, a nonsignificant trend toward improved PTT, and a significantly decreased frequency of intraventricular hemorrhage in infants whose mothers had received vitamin K1. The effect of antenatal vitamin K1 on prothrombin activity and PTT appeared to be more pronounced in female infants.

Blood Coagulation↗

Turbidimetric determination of prothrombin time by clotting in a centrifugal analyzer.

Two thromboplastin reagents ("Thrombotest" and "Normotest Automated") were used in evaluation of an automated method for determination of prothrombin time based on turbidimetric measurement of clot formation in a centrifugal analyzer. We used 60 plasma samples from patients with various diseases or being treated with oral anticoagulant and 16 normal plasma samples. Prothrombin times were calculated by a computer connected to the analyzer, a reading being made at either a certain per cent increase in total absorbance or a fixed absorbance increase. Both correlated well with the manual method (r = 0.98-0.99). The reading points best fitting the manually obtained data were estimated by minimizing the residual sum of squares in regression analyses performed at various absorbance increases. The per cent reading was better in this respect. Normotest Automated could be nearly perfectly related to the manual method, whereas Thrombotest showed a (negligibly) small deviation. Reproducibility was good within run (CV less than or equal to 3.2%) as well as between batch of the reagents, as assessed from variation in INR (CV less than or equal to 4.9%). We conclude that turbidimetry of clot formation may be validly used in automation of the prothrombin-time test. The equipment needed and the total time per analysis are about as for chromogenic substrate methods, but reagent cost is considerably lower.

Anticoagulants↗

Impaired factor X and prothrombin activation associated with decreased phospholipid exposure in platelets from a patient with a bleeding disorder.

Platelets from a platelet factor 3-deficient patient, which was first described by Weiss et al (Am J Med 67:206, 1979), were found to be equally impaired in their ability to promote factor X and prothrombin activation. Compared to normal platelets, the patient's platelets showed upon stimulation with thrombin plus collagen a much slower generation and a considerably lower level of platelet prothrombin- and factor X-converting activities. Treatment of stimulated platelets with phospholipases revealed a decreased exposure of negatively charged phospholipid at the outer surface of the patient's platelets, relative to control's. We suggest that the combined impairment of prothrombin- and factor X-converting activities in this patient is due to a defect in the mechanism by which phosphatidylserine becomes exposed at the outer surface of stimulated platelets.

Blood Coagulation Disorders↗

[Studies on the glycopeptides of canine prothrombin].

After degradation of canine prothrombin by the complex of Streptomyces griseus proteases four glycopeptides were obtained. Each of them contained aspartic acid, hexosamines, mannose, galactose and sialic acids. Canine prothrombin contains two or three carbohydrate chanins, which are bound to aspartic (asparagine) residues. Microheterogenity of the carbohydrate chains of canine prothrombin was found.

Animals↗

The use of pooled patient plasma as an abnormal prothrombin time control.

Five abnormal prothrombin time pooled patient plasma samples and seven commercially prepared abnormal prothrombin time control plasmas were compared. A fibrometer was used to run prothrombin time tests from 8 to 51 days on individual aliquots of the pooled patient plasmas and individual vials of the commercial products. Pooled patient plasmas exhibited greater reproducibility with generally lower coefficients of variation than did the commercial products, with the added advantage that they reflected the patient population more directly. Almost all samples displayed a significant rise in mean clotting times during the testing period. However, the reasons for this rise are not entirely clear.

Analysis of Variance↗

The effect of aggregation and release on platelet prothrombin-converting activity.

Platelets provide a procoagulant activity for the conversion of prothrombin to thrombin during normal hemostatis. This activity designated as platelet prothrombin-converting activity (PPCA) was monitored as rate of thrombin production in a two-stage assay using gel-filtered bovine platelets, factor Xa, and prothrombin. Expression of PPCA was not associated with ADP-induced release or platelet shape change but was associated with aggregation. Release of the contents of dense bodies, measured by release of 14C-5-hydroxytryptamine, was not required for expression of PPCA during platelet aggregation. During the PPCA assay, 5-hydroxytrypamine was released, but only after onset of thrombin production. Furthermore, the release of 5-hydroxytryptamine was retarded during the assay by the addition of 2 mM theophylline and 100 nM prostaglandin E1 without a comparable reduction in PPCA. In addition, 125I-factor-Xa was bound in greater amounts to platelets (aspirin-treated) after ADP-induced aggregation (without detectable release) than to unactivated control platelets. Finally, the PPCA of the ADP-activated platelets was saturated with respect to factors Xa and Va at less than 1 nM concentrations, indicating that the aggregation induced by ADP leads to the exposure of specific procoagulant sites by some process other than dense body secretion.

Animals↗

Effect of ingestion of glucose on fibrinolytic activity and prothrombin time in diabetic and non-diabetic persons.

Effect of ingestion of 50 g of glucose on euglobulin clot lysis time and prothrombin time was studied in 14 diabetic and 12 non-diabetic persons. There was no significant change in euglobulin clot lysis time and prothrombin time after ingestion of glucose in the non-diabetic group. In the diabetic group, ingestion of glucose resulted in significant increase in euglobulin clot lysis time at the end of one hr which returned to initial level at the end of two hours even though blood glucose level at two hrs was still higher than fasting level. Increase in clot lysis time has no correlation to the blood glucose level. There was no significant change in prothrombin time after glucose ingestion.

Blood Glucose↗

Metal binding sites of a gamma-carboxyglutamic acid-rich fragment of bovine prothrombin.

The metal binding sites of a gamma-carboxyglutamic acid-rich fragment derived from bovine prothrombin were examined using paramagnetic lanthanide ions to evaluate the role of gamma-carboxyglutamic acid resideus in metal binding. A gamma-carboxyglutamic acid-rich peptide, fragment 12-44, was isolated from a tryptic digest of prothrombin. Using 153Gd(III), fragment 12-44 was found to contain one high affinity metal binding site (KD = 0.55 microM) and four to six lower affinity metal binding sites (KD approximately 4 to 8 microM). The S-carboxymethyl derivative of fragment 12-44, in which the disulfide bond in fragment 12-44 was reduced and alkylated, contained no high affinity metal binding site and four or five lower affinity sites (KD = 8 microM). The effects of paramagnetic lanthanide ions on fragment 12-44 and its S-carboxymethyl derivative were studied by natural abundance 13C NMR spectroscopy. The 13C NMR spectrum of fragment 12-44 was recorded at 67.88 MHz and the resonances were assigned by comparison to the chemical shift of carbon resonances of amino acids and peptides previously studied. The proximity between bound metal ions and carbon atoms in fragment 12-44 was estimated using Gd(III), based upon the strategy that the magnitude of the change in the transverse relaxation rate of resonances of carbon nuclei induced by bound metal ions is related in part to the interatomic distances between bound metal and carbon nuclei. Titration of fragment 12-44 with Gd(III) resulted in the selective broadening of the gamma-carboxyl carbon, C gamma, C beta, and C alpha resonances of gamma-carboxyglutamic acid, and the C epsilon of the arginines. S-Carboxymethyl fragment 12-44, which lacked the high affinity metal binding site, showed markedly decreased perturbation of the C epsilon of the arginine residues upon titration with Gd(III). These studies indicate that gamma-carboxyglutamic acid residues in prothrombin fragment 12-44 participate in metal liganding. A high affinity metal binding site in fragment 12-44 is in close proximity of Arg 16 and Arg 25 and is stabilized by the disulfide bond. On the basis of these data, a model of the metal binding sites is proposed in which the high affinity site is composed of two gamma-carboxyglutamic acid residues which participate in intramolecular metal-dependent bridging of two regions of the polypeptide chain. The lower affinity metal binding sites, formed by single or paired adjacent gamma-carboxyglutamic acid residues, then may participate in intermolecular metal-dependent protein . protein or protein . membrane complex formation.

1-Carboxyglutamic Acid↗

Alterations in the prothrombin coagulation pathway due to preeclampsia.

Circulating plasma levels of human prothrombin antigen and activity were determined in normal pregnancy and in pregnancies complicated by hypertension, eclampsia, or preeclampsia. The ratio of prothrombin antigen to activity (Ag/Act) was within normal limits for all hypertensive patients. However, every untreated preeclamptic patient, as well as 2 eclamptic patients, had abnormal prothrombin antigen to activity ratios.

Antigens↗

The isolation and characterization of a specific antibody population directed against the prothrombin activation fragments F2 and F1 + 2.

We have raised antisera against human prothrombin activation fragment F2 in rabbits and have chromatographed the respective immunoglobulin G fractions on prothrombin-Sepharose, Pr1-Sepharose, and F2-Sepharose immunoadsorbents. The specific antibody population obtained was utilized to construct a double antibody radioimmunoassay capable of measuring as little as 0.8 ng/ml of this component. Our studies suggest that the immunoreactive site defined by this antibody population is most probably located within the negatively charged COOH-terminal region of F2. The immunologic expression of this area is unaffected by denaturation or reduction-alkylation of F2 as well as by attachment of polypeptide to the NH2-terminal of this component. However, the presence of covalently bound polypeptide at the COOH-terminal of F2 reduces its immunologic reactivity by 300- to 400-fold. Prothrombin, Pr1, and Pr*1, which contain the F2 region as part of their covalent structure, are at least 4000 to 7000 times less immunoreactive than F2 on a molar basis. Conversion of these components to thrombin as well as activation fragments generates the theoretically predicted level of immunoreactivity. Masking of the immunoreactive site within these zymogens is due to two phenomena. Firstly, covalent attachment of polypeptides on the COOH-terminal of the F2 segment significantly depresses the reactivity of this region. Secondly, a critical S--S bridge aids in the sequenstration of the immunoreactive site. This cross-link may facilitate interactions between the COOH-terminal of the F2 segment and other regions of the zymogen.

Amino Acid Sequence↗

Human monocytes have prothrombin cleaving activity.

A proportion of human monocytes form long needles of fibrin on their surfaces when they are briefly exposed to human plasma. A number of coagulation factor deficient plasmas (II, V, VII, VIII, von Willebrand, IX, X, XI and XII) were tested for their ability to promote formation of this fibrin. Monocytes failed to make fibrin only in Factor II or prothrombin deficient plasma. Thrombin is involved in the manufacture of monocyte fibrin as shown by the ability of the thrombin specific inhibitor, hirudin, to block the process and by the demonstration that monocytes are able to cleave prothrombin to thrombin, an activity which increases with time of monocyte incubation at 37 degrees C. These results indicate that human monocytes possess a prothrombin cleaving activity although it remains unclear how this activity is generated. It is speculated that thrombin serves a necessary role in both wound healing and tissue repair.

Blood Coagulation↗

The effects of ancrod, the coagulating enzyme from the venom of Malayan pit viper (A. rhodostoma) on prothrombin and fibrinogen metabolism and fibrinopeptide A release in man.

The action of ancrod on fibrinogen and prothrombin metabolism was studied in six healthy individuals by the use of 131I-fibrinogen and 125I-prothrombin and by measurement of blood levels of fibrinopeptide A. Two untreated healthy controls were studied at the same time. Rapid defibrinogenation occurred during the initial 3 hr ancrod infusion, and fibrinogen levels were maintained near zero throughout the study. Large quantities of non-thrombin-clottable TCA-precipitable 131I material could be demonstrated in the circulation, reaching a maximum 3 to 6 hr after ancrod infusion and clearing with a half-life of 6 hr. Gel filtration of 6 hr plasmas demonstrated the presence of complexes larger than fibrinogen, as well as degradation products of fibrinogen-fibrin. Prothrombin concentration and metabolism were unchanged by ancrod treatment. Fibrinopeptide A levels in the ancrod group were greather than 4,000 ng/ml during the initial defibrinogenation, declined to greater than 80 ng/ml, and then increased to high levels after 3 days. These studies provide explanations of previous observations concerning the specificity of ancrod and demonstrate that rapid clotting of fibrinogen and dissolution of fibrin can occur in vivo without recruitment of the classic coagulation mechanism.

Adult↗

Loss of prothrombin and of factor Xa-factor Va interactions upon inactivation of factor Va by activated protein C.

Activated factor V (factor Va) is composed of two nonidentical subunits which can be dissociated on chelation of the bound Ca2+ with EDTA. The isolated subunits can be recombined in the presence of Ca2+ to form factor Va. The factor Va heavy chain (Mr = 94,000) binds to prothrombin in a specific and Ca2+-independent fashion. Following inactivation of either factor Va or the factor Va heavy chain by limited proteolysis with activated protein C, factor Va no longer binds to the immobilized prothrombin. Factor Va also binds specifically to (p-amidinophenyl)-methanesulfonyl-factor Xa-Affi-Gel 15. However, neither isolated subunit binds to this column. Factor Va inactivated by activated protein C is no longer retained by the factor Xa column. This data suggests that both subunits are required for optimal factor Va-factor Xa interaction and that inactivation of factor Va with activated protein C reduces the affinity of factor Va for both prothrombin and factor Xa.

Animals↗

Rat factor X is synthesized as a single chain precursor inducible by prothrombin fragments.

Factor X in plasma is a gamma-carboxylated two-chain glycoprotein which, in activated form, plays a pivotal role in blood coagulation. We have utilized purified rat Factor X antibody, coupled to Sepharose, to isolate and characterize Factor X in rat liver, plasma, and hepatoma cells. Rat factor X is synthesized as a single chain precursor (Mr = 63,000). It is this form which undergoes vitamin K-dependent carboxylation in rat liver microsomes. Only after secretion is Factor X converted into its two-chain mature form. Single chain X synthesis and secretion in hepatoma cells is enhanced by vitamin K. The amount of single chain X secreted by these cells is one-half that of prothrombin. The NH2-terminal gamma-carboxylated fragments of prothrombin which induce prothrombin synthesis (Graves, C. B., Munns, T. W., Carlisle, T. L., Grant, G. A., and Strauss, A. W. (1981) Proc. Natl. Acad. Sci. U. S. A. 78, 4772-4776) also induce single chain X synthesis by hepatoma cells. We propose that synthesis of all vitamin K-dependent proteins may be regulated by this common control mechanism.

Animals↗

[Kinetics of prothrombin activation by factor Xa].

It is shown that activation of prothrombin by factor Xa with the presence of the substrate low concentrations occurs as two-stage reaction described by Michaelis-Mentene equation for stationary conditions. The rate constant of the complex formation is 2 and 3 order higher than the constant of dissociation and decay, respectively. Judging from a two-stage character of the process, it is possible to conclude that the second intermediate product (enzyme-modified substrate) in not form in the reaction: the both links in prothrombin sensitive to factor Xa might be attacked simultaneously. In the presence of the substrate high concentrations an inhibition may be observed due to formation of a complex, which involves one enzyme molecule and 1 + n substrate molecules. This complex preserves the enzymic activity because the constant of changes in its decay (beta) rate is larger than 0, but less than 1. The inhibition of factor Xa by the prothrombin surplus may be considered as a self-regulation element in the coagulation system at the level of molecular interactions.

Enzyme Activation↗

Heterogeneity in human prothrombin: analysis of cause.

Two fractions of human prothrombin can be isolated from single donor plasma by the technique of heparin-agarose chromatography in (sodium) citrate buffer, pH 7.5, as previously reported for pooled plasma. The two fractions, designated H-II1 and H-II2, are found in a ratio of approximately 4:1. Both forms comigrate in sodium dodecyl sulfate gel electrophoresis; however, under nondenaturing electrophoretic conditions, each fraction migrates as a discrete entity with a different mobility. The larger fraction (H-II1) has a faster mobility towards the anode. Isoelectric focusing in urea of H-II1 reveals that it has two components, a minor component with a pl of 5.25 (H-II1a) and a major component with a pl of 5.40 (H-II1b). H-II2 has a pl of 5.6 H-II1 and H-II2 possess the same amino terminal residue (alanine, 0.87-0.92 mole/mole) and the same number of gamma -carboxyglutamic acid residues (9.8-10.5). Their amino acid composition is indistinguishable. However, the two fractions of prothrombin differ in their content of neutral sugar and of sialic acid residues. Removal of sialic acid with neuraminidase abolishes the electrophoretic heterogeneity. Thus, the charge heterogneity of the three variants of prothrombin found in normal human plasma appears to result exclusively from differences in the number of sialic acid residues attached to the protein moiety of the molecule.

Amino Acids↗

[Influence of phospholipids and their combination with prothrombin complex and calcium ions on coagulation in mice and rabbits both normal and affected by acetylsalicylic acid (author's transl)].

The influence of phospholipids and their combination with prothrombin and calcium on coagulation both normal and affected by acetylsalicylic acid (ASA) was investigated by determination of the bleeding time of mice, thrombelastographic (TEG) measurements and counting of thrombocytes of rabbits. Bleeding times and times of the TEG were prolonged after oral application of ASA, while thrombus stability was not altered. The number of thrombocytes decreased. Bleeding- and TEG-times normalized after injection of phospholipids. This effect was increased and of longer duration when phospholipids were combined with calcium and prothrombin. Decrease of the number of thrombocytes caused by pretreatment with ASA normalized only after injection of phospholipids together with prothrombin and calcium. The number of thrombocytes was not negatively influenced by the therapy in animals with normal coagulation.

Animals↗