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Biomedical subjects

B J Clarke

Publications and source records attributed to B J Clarke.

At least 19 recordsLinked to original sources

Severe prothrombin deficiency caused by prothrombin-Edmonton (R-4Q) combined with a previously undetected deletion.

BACKGROUND: During infancy, a male patient experienced several life-threatening bleeding episodes. Standard coagulation tests revealed that the patient's plasma prothrombin activity was 8%, while his father's and mother's levels were 74% and 62%, respectively. OBJECTIVES: A molecular genetic approach was used to determine the molecular basis of prothrombin deficiency within the family. PATIENT/METHODS: Prothrombin genomic DNA fragments were amplified by using the polymerase chain reaction (PCR). In addition, liver cDNA fragments were amplified from the patient by using reverse transcription (RT) and PCR. The nucleotide sequences of the DNA fragments were determined. RESULTS: A novel, heterozygous point mutation (g.1755 G > A, named prothrombin-Edmonton) was detected in the patient and his mother, resulting in the mutation of Arg-4 in the prothrombin propeptide to Gln (R-4Q). RT-PCR analysis of the patient's liver sample demonstrated the presence of two mRNA transcripts that differed by the presence or absence of exon 11. Real-time PCR analysis on genomic DNA and cDNA confirmed a deletion (g.10435_10809del) in the paternal allele. CONCLUSIONS: The patient has a maternally-inherited point mutation (R-4Q) and a paternally-inherited deletion. By analogy with the previously reported factor IX San Dimas, the R-4Q mutation probably causes under-carboxylation of prothrombin and poor cleavage of the propeptide in the hepatocyte. The deletion probably results in a polypeptide that lacks 50 amino acids from the protease domain; this is likely to impair folding, secretion, stability and/or activity of the truncated prothrombin. The two mutations combine to give the prothrombin deficiency observed in the patient.

DNA, Complementary↗

Interspecies exchange mutagenesis of the first epidermal growth factor-like domain of human factor VII.

The first epidermal growth factor-like (EGF1) domain of human factor VII (FVII) is essential for binding to tissue factor (TF). We hypothesized that the previously observed increased coagulant activity of rabbit plasma (i.e. FVII) with human TF might be explained by the five non-conserved amino acids in the rabbit vs. the human FVII EGF1 domain. Accordingly, we 'rabbitized' the human FVII EGF1 domain either by exchanging the entire EGF1 domain creating human FVII(rabEGF1) or by the single amino acid substitutions S53N, K62E, P74A, A75D and T83K. After transient expression in HEK293 cells, the recombinant FVII (rFVII) mutant proteins were analyzed for biological activity and binding affinity to human TF by competitive enzyme-linked immunosorbent assay (ELISA). Biological activity of the unpurified rFVII mutant proteins was either depressed or statistically unchanged vs. rFVII(WT). However, three of six rFVII mutant proteins had increased affinity for human TF in the rank order rFVII(rabEGF1) (3.3-fold) > rFVII(K62E) (2.9-fold) > rFVII(A75D) (1.7-fold). The mutant protein rFVII(K62E) was then permanently expressed and purified. Fully activated, purified rFVIIa(K62E) had a twofold greater clotting activity and 2.8-fold greater direct FVIIa amidolytic activity when compared with rFVIIa(WT). Quantitation of the affinity of TF binding by surface plasmon resonance indicated that the KD of purified rFVII(K62E) for human soluble TF (sTF) was 1.5 nM compared with 7.5 nM for rFVII(WT), i.e. fivefold greater affinity. We conclude that substitution of selected amino acid residues of the FVII EGF1 domain facilitated the creation of human rFVII chimeric proteins with both enhanced biological activity and increased affinity for TF.

Amino Acid Substitution↗

Rapid in vivo induction of leukocyte tissue factor mRNA and protein synthesis following low dose endotoxin administration to rabbits.

INTRODUCTION: Disseminated intravascular coagulation in humans is frequently associated with Gram-negative bacterial sepsis. Therefore, to examine the role and time frame of the in vivo induction of tissue factor (TF) by bacterial endotoxin, a reverse transcription polymerase chain reaction and a solid-phase ELISA assay were developed to monitor the in vivo production in rabbits, of TF mRNA and TF antigen by peripheral blood leukocytes (PBL). METHODS: : Healthy rabbits were injected intravenously with either 1, 10 or 50 microg/kg of Salmonella endotoxin. Blood samples were obtained both before endotoxin administration and at various time points thereafter, up to 24 h. Some experiments were also done to determine whether all-trans retinoic acid would ameliorate the signs of the endotoxin-induced disseminated intravascular coagulation. RESULTS: PBL counts dropped significantly within 2 h of rabbits receiving the endotoxin, recovering to baseline levels by 24 h. Platelet counts decreased gradually over this same time frame. Fibrin deposition was noted in renal glomerular capillaries at 24 h. An increase (P<0.001) in PBL-associated TF mRNA levels was observed 2 h post-endotoxin (10 microg/kg, n = 8), followed by a gradual decline over the subsequent 24 h. The average increase in TF mRNA at 2 h was approximately 4.6-fold (P<0.001) over that seen at time 0. The amount of mononuclear cell associated TF antigen demonstrated a peak at 2 h post-endotoxin (10 microg/kg, n = 13), with levels approximately 9.6-fold greater than (P<0.001) baseline. Pre-treatment of rabbits with all-trans retinoic acid significantly (P<0.001) ameliorated the PBL-associated increase in TF mRNA and TF antigen levels. CONCLUSION: These results suggest that low dose endotoxin (10 microg/kg) faithfully reproduces the non-overt activation of coagulation observed in primates and human volunteers, supporting the hypothesis that TF expression is involved in the in vivo initiation and propagation of disseminated intravascular coagulation. Moreover, all-trans retinoic acid may be effective in modulating in vivo the TF transcription induced by endotoxin.

Animals↗

Metabolism of rabbit plasma-derived factor VII in relation to prothrombin in rabbits.

In the human circulation, factor VII is present in relatively low plasma concentration (0.01 microM) and has been reported to have a short half-life (t(1/2); 6 h). In contrast, prothrombin is present in a relatively high plasma concentration (2 microM) and has a relatively long catabolic half-life (t(1/2) = approximately 2-3 days). This report examines the metabolic characteristics of purified rabbit plasma factor VII and prothrombin, radiolabeled with (125)I and (131)I, respectively, in healthy young rabbits. From the plasma clearance curves of protein-bound radioactivities, fractional catabolic rates and compartmental distributions were calculated using a three-compartment model. Turnover of factor VII within the intravascular space (2.95 days) exceeded that of prothrombin (1.9 days). However, the whole body fractional catabolic rate of factor VII (0.34 days(-1); catabolic t(1/2) = 2.04 days) was significantly slower than that of prothrombin (0.53 days(-1); t(1/2) = 1.31 days). Furthermore, the fractional distributions of factor VII in the intravascular (0.14) and extravascular compartments (0.76) differed from those of prothrombin (0.29 and 0.53). Absolute quantities of factor VII and prothrombin catabolized by a 3-kg rabbit amounted to 0.18 and 24.0 mg/day, respectively (molar ratio of prothrombin to factor VII = 100). The molar ratio of catabolism was compared with the release rates of factor VII and prothrombin from rabbit livers perfused ex vivo. After correction for uptake of factor VII and prothrombin by the liver, the molar ratio of released prothrombin to factor VII in the perfusate was approximately 293:1 over a 0.25- to 3-h interval. These results indicate that, compared with prothrombin, factor VII in the healthy rabbit circulates as a relatively long-lived protein. This behavior does not reflect that reported for factor VII in the human circulation.

Animals↗

Activation and active site occupation alter conformation in the region of the first epidermal growth factor-like domain of human factor VII.

The first epidermal growth factor-like domain (EGF-1) of factor VII (FVII) provides the region of greatest contact during the interaction of FVIIa with tissue factor. To understand this interaction better, the conformation-sensitive FVII EGF-1-specific monoclonal antibody (mAb) 231-7 was used to investigate the conformational effects occurring in this region upon both FVII activation and active site occupation. The binding affinity of mAb 231-7 was approximately 3-fold greater for the zymogen state than for the active state; a result affected by the presence of both calcium and the adjacent Gla domain. Once activated, active site inhibition of FVIIa with a variety of chloromethyl ketone inhibitors resulted in a 10-fold range of affinities of FVIIai molecules to mAb 231-7. Gla domain removal eliminated this variation in affinity, suggesting the involvement of a Gla/EGF-1 interaction in this conformational effect. In addition, the binding of mAb 231-7 to FVIIa EGF-1 stimulated the amidolytic activity of free FVIIa. Taken together, these results imply an allosteric interaction between the FVIIa active site and the EGF-1 domain that is sensitive to variation in active site occupant structure. Thus, these present studies indicate that the conformational change associated with FVII activation and active site occupation involves the EGF-1 domain and suggest potential functional consequences of these changes.

Allosteric Site↗

Expression and purification of recombinant rabbit factor VII.

To facilitate studies of the in vivo role of the extrinsic pathway of coagulation in experimental hemostasis and thrombosis, a full-length cDNA-encoding rabbit factor VII was isolated using polymerase chain reaction-mediated DNA amplification from plaque-purified lambda gt11 phage. Repeated DNA sequencing of both full-length rabbit factor VII cDNA and shorter cDNA fragments verified four changes in the previously reported amino acid sequence of mature rabbit factor VII, now predicted to be 405 amino acids in length. Rabbit factor VII cDNA was transfected into human embryonic kidney 293 cells and a cell line that permanently expressed rabbit recombinant factor VII was established. Rabbit recombinant factor VII was purified from tissue culture media using a combination of barium citrate precipitation, DEAE-sepharose FF chromatography, benzamidine agarose, and affinity chromatography using a sheep antirabbit factor VII polyclonal antibody. The purity and authenticity of rabbit recombinant factor VII was confirmed by polyacrylamide gel electrophoresis and Western blot analysis. Homogeneous rabbit recombinant factor VII was fully active biologically as determined by prothrombin time assay in factor FVII-depleted plasmas, of both human and rabbit origin, using either human or rabbit thromboplastin. Rabbit recombinant factor VII should prove useful for future in vivo investigations of experimental coagulopathies.

Animals↗

Factor VII deficiency caused by a structural variant N57D of the first epidermal growth factor domain.

We have previously described a kindred with factor VII (FVII) deficiency whose members exhibited reduced procoagulant activity relative to FVII antigen concentration. In this report, the molecular genetic basis of the FVII defect has been determined to be a heterozygous substitution of Asp for Asn at position 57 in the first epidermal growth factor (EGF) domain. Recombinant FVII (N57D) cDNA was created by site-directed mutagenesis and transiently expressed in human 293 cells. The transfected cells synthesized an immunoprecipitable protein with an apparent molecular weight of 50 kD. Quantitation of expression by FVII enzyme-linked immunosorbent assay indicated that mutant protein yields were consistently low, typically 10% to 30% of wild-type FVII. FVII (N57D) protein did not accumulate intracellularly, and Northern blot analysis indicated equivalent FVII mRNA levels in 293 cells expressing either wild-type FVII or FVII (N57D). Secreted FVII (N57D) protein did not bind tissue factor, exhibited no procoagulant activity, and failed to bind a conformation-dependent monoclonal antibody specific for the first EGF domain of FVII. Molecular modeling of the first EGF domain of FVII predicted that the N57D amino acid substitution would disrupt tertiary bonding structure. We conclude that the N57D mutation affects folding of the first EGF domain of FVII resulting in decreased cellular secretion of a mutant FVII molecule, which is unable to bind tissue factor and is therefore biologically inactive.

Animals↗

Pleural bupivacaine placement for optimal postthoracotomy pulmonary function: a prospective, randomized study.

OBJECTIVE: To determine dependent chest tube losses of bupivacaine with paravertebral versus interpleural administration, thereby helping to explain the significant differences in pulmonary function that exist between these two techniques. DESIGN: A prospective, randomized study. SETTING: A single hospital. PARTICIPANTS: Twelve adult patients undergoing posterolateral thoracotomies. INTERVENTIONS: Paravertebral or interpleural administration of bupivacaine. MEASUREMENTS AND MAIN RESULTS: Analgesia, as assessed by visual analog pain scores and patient-controlled morphine requirements, was similar in both groups. Postoperative spirometric values were significantly better at most times with the paravertebral route of administration. Dependent chest tube bupivacaine losses were approximately four times higher in the interpleural group. CONCLUSION: Local anesthetic on the diaphragm might actively impair respiratory function through diaphragmatic and abdominal muscle weakness, while failing to contribute to pain relief.

Aged↗

Activation of a recombinant human factor VII structural analogue alters its affinity of binding to tissue factor.

A competitive enzyme-linked immunoadsorbent assay (ELISA) technique has been developed to facilitate quantitative analysis of the earliest step in the initiation of the extrinsic pathway of coagulation, i.e., complex formation of factor VII/VIIa with tissue factor. The ELISA measures the binding of biotinylated human plasma factor VII to relipidated recombinant human tissue factor. Quantitation of the relative affinity (expressed as IC50) of any factor VII molecular population or structural analogue for tissue factor can be determined by competitive binding. Subnanomolar concentrations of both wild-type recombinant human factor VII (rFVII) and rFVII(R152Q), a mutation at the FVII activation site, competed effectively with biotinylated plasma-derived factor VII in binding to tissue factor. In contrast, the affinity of rFVII(R79Q), a mutation in the first epidermal growth factor-like domain, was 12-fold lower. Following activation of rFVII(R79Q), its affinity for tissue factor and enzymatic activity increased 4-fold and 6-fold, respectively. For wild-type rFVII, enzymatic activity rose significantly following activation. However, its affinity for tissue factor was unchanged. We conclude that both the activation state of factor VII and the mutation of amino-acid residues within the first epidermal growth factor-like domain may alter the affinity of factor VII for tissue factor.

Binding Sites↗

Incomplete gamma carboxylation of human coagulation factor VII: differential effects on tissue factor binding and enzymatic activity.

The integrity of the gamma-carboxylic glutamic acid (GLA) residues of coagulation factor VII are thought to be essential for both the interaction of factor VII with its cell-surface lipoprotein receptor tissue factor and for the activated protein to manifest its serine protease activity. During the course of transiently expressing recombinant human factor VII in monkey COS cells it was noted that the factor VII synthesized in the absence of added vitamin K had <20% of expected procoagulant activity yet retained 65% of its binding activity to recombinant human tissue factor. Similar results were obtained when vitamin K was omitted from human 293 cell cultures permanently expressing recombinant factor VII. In contrast, both transient and permanent expression of factor VII in human 293 cell cultures containing physiological concentrations of vitamin K resulted in the synthesis of fully functional factor VII. Furthermore, factor VII in plasma samples from 24 patients undergoing warfarin therapy bound quantitatively to tissue factor whereas factor VII procoagulant activity averaged 65% of normal. Thus, data from both in vitro and in vivo situations indicated that factor VII molecules with suboptimal GLA content retained most of their ability to bind tissue factor but exhibited reduced procoagulant activity.

Cell Line↗

The direct binding of human factor VII in plasma to recombinant human tissue factor.

The extrinsic pathway of coagulation is initiated when zymogen factor VII binds to its cell surface receptor tissue factor. Recently recombinant human tissue factor has become available and therefore in this study the direct binding of human factor VII in plasma to recombinant tissue factor was explored. Factor VII binding was quantitated by a standard ELISA protocol using monospecific polyclonal rabbit anti-human factor VII as the primary antibody and goat anti-rabbit IgG conjugated to alkaline phosphatase as the second antibody. Both the oxidation state of the recombinant tissue factor and calcium ion concentration were found to be critical for the efficient binding of factor VII. A linear relationship was observed between absorbance and factor VII concentration when normal pooled human plasma was diluted in the range 1:25 to 1:1000 (factor VII concentration 0.5-20 ng/ml). Evidence is provided to show that binding is both specific for human coagulation factor VII and can be utilized to detect factor VII molecular variants with impaired tissue factor binding.

Binding, Competitive↗

Complete nucleotide sequence of the cDNA encoding rabbit coagulation factor VII.

Rabbit coagulation factor VII cDNA has been cloned and sequenced. Two rabbit liver cDNA libraries in lambda gt11 were screened using both random-primed, 32p-labelled, factor VII cDNAs and polymerase chain reaction technology. Three overlapping cDNA clones were isolated comprising a sequence of 1572 base pairs of DNA encoding an open-reading-frame of 443 amino acids. Mature circulating rabbit factor VII is predicted to contain 404 amino acids, two less than its human counterpart and three less than bovine factor VII.

Amino Acid Sequence↗

Plasma concentrations of bupivacaine and its enantiomers during continuous extrapleural intercostal nerve block.

Plasma concentrations of bupivacaine have been measured in 12 patients given bupivacaine through a paravertebral catheter placed under direct vision at thoracotomy. After an initial bolus of 0.5% bupivacaine 20 ml, mean (SEM) Cpmax was 1.45 (0.32) micrograms ml-1 and median (range) tCpmax was 25 (10-60) min. A concentration of 4.43 micrograms ml-1 measured in one patient was not associated with toxic signs. During continuous infusion of bupivacaine for 120 h, Cpmax was 4.9 (0.7) micrograms ml-1 and tCpmax 48 (5-96) h. No symptoms or signs of toxicity occurred. Separate measurement of R- and S-bupivacaine concentrations demonstrated significantly different concentration-time profiles.

Adult↗

Molecular cloning and expression of rabbit antithrombin III.

A cDNA containing the complete open-reading frame encoding rabbit antithrombin III (AT-III) was isolated from a rabbit liver cDNA expression library, using a specific antibody as a probe. Sequence analysis showed 84% identity between the deduced amino acid sequences of the rabbit and human proteins. A previously described cell-free expression system was used to verify the identity of the clone. The full-length cDNA was inserted into an expression vector, and messenger RNA (mRNA) transcripts generated. In vitro translation of these transcripts, in the presence of [35S]methionine, in an mRNA-dependent rabbit reticulocyte lysate system resulted in the synthesis of a 51-Kd polypeptide, as shown by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). This nonglycosylated protein was capable of forming SDS-stable complexes with human alpha-thrombin. Complex formation was significantly enhanced following the deletion of nucleotides encoding the signal peptide, and the resultant generation of a 47-Kd nonglycosylated mature protein product. When the template DNA giving rise to this product was internally truncated, two rabbit AT-III deletion mutants were generated that lacked the ability to interact with thrombin, but retained the ability to bind heparin. Cell-free expression plasmids encoding the human and rabbit AT-III mature molecules were manipulated to produce two interspecies fusion proteins. For the first, human codons were used to replace rabbit codons from residue 369-433, while in the second human codons replaced rabbit codons from residue 217-433. Both fusion proteins exhibited less efficient thrombin-complexing ability than the original cell-free-derived mature rabbit AT-III. Thus, portions of AT-III molecules from the two species, despite their high degree of homology, are not interchangeable. Knowledge of the structure of rabbit AT-III, combined with the availability of the rabbit cDNA, will permit defined experimentation aimed at understanding antithrombin III structure relative to its function in vivo.

Amino Acid Sequence↗

The first epidermal growth factor domain of human coagulation factor VII is essential for binding with tissue factor.

The intrinsic pathway of coagulation is initiated when zymogen factor VII binds to its cell surface receptor tissue factor to form a catalytic binary complex. Both the activation of factor VIIa and the expression of serine protease activity of factor VIIa are dependent on factor VII binding to tissue factor lipoprotein. To better understand the molecular basis of these rate-limiting events, the interaction of zymogen factor VII and tissue factor was investigated using as probes both a murine monoclonal antibody and a monospecific rabbit antiserum to human factor VII. To measure factor VIIa functional activity, a two-stage chromogenic assay was used; an assay which measures the factor Xa generated by the activation of factor VII to factor VIIa. Purified immunoglobulin from murine monoclonal antibody 231-7, which was shown to be reactive with amino acid residues 51-88 of the first epidermal growth factor-like (EGF) domain of human factor VII, inhibited the activation of factor VII to factor VIIa in a dose-dependent manner. The mechanism of this inhibition was demonstrated using a novel solid-phase ELISA which quantitatively measured the binding of purified factor VII zymogen to tissue factor adsorbed onto microtiter wells. Thus, the binding of factor VII zymogen to immobilized tissue factor was inhibited by antibody 231-7, again in a dose-dependent manner. Similar results were obtained using a monospecific rabbit antiserum to human factor VII which also reacted with the beta-galactosidase fusion proteins containing amino acid residues 51-88 (exon 4) of human factor VII. We conclude therefore that the exon 4-encoded amino acids of the first EGF domain of human factor VII constitute an essential domain participating in the binding of factor VII to tissue factor.

Antibodies, Monoclonal↗

Mapping of a putative surface-binding site of human coagulation factor XII.

We have localized the binding epitope(s) of two murine monoclonal antibodies (B7C9 and P5-2-1) that were shown previously to inhibit the activation of human coagulation factor XII by negatively charged surfaces. A factor XII cDNA expression library in lambda gt11 was screened with antibody B7C9, and 16 immunoreactive bacteriophage were isolated. Fusion proteins from each of the recombinant phage were reactive with both monoclonal antibodies. Two of the phage cDNA inserts were found to code for amino acid residues -6-+31 and +1-+47 of factor XII, respectively, thereby defining the limits of the antigenic peptide to amino acids +1-+31. Each of the remaining 14 recombinant phage contained longer factor XII cDNA inserts that included sequences coding for the amino-terminal 31 amino acid residues. These results were confirmed by direct binding of antibody B7C9 to synthetic peptides containing amino acids 1-14 and 1-28 of factor XII. Further experiments with a set of nested peptides also indicated that amino acid residues 1-4 were essential but not sufficient for binding of B7C9 to the peptides. Hydrophobicity analysis of the amino-terminal region of plasma factor XII revealed a highly hydrophilic region between amino acid residues 5 and 15 that contained positively charged lysine residues at positions 8, 11, and 13. We conclude that a major epitope(s) recognized by monoclonal antibodies B7C9 and P5-2-1 is present in the amino-terminal 28 amino acids of factor XII. It is proposed that binding of these antibodies to factor XII blocks interaction of the positively charged region between residues 5 and 15 with negatively charged surfaces, thereby inhibiting activation.

Antibodies, Monoclonal↗

Purification of plasma membrane from Acanthamoeba castellanii.

A simple method for isolation of plasma membrane from Acanthamoeba using self-generating gradients of Percoll is described. To obtain a membrane marker, intact amoebae were radioiodinated and the distribution of the radiolabel was followed through the plasma membrane isolation procedure. The purity of isolated plasma membrane was assessed by enrichment of radiolabel, by electron microscopy, and by enzymatic assays for contaminating membranes. As judged from enrichment of radiolabel, a 37-fold purification of plasma membrane was obtained. We estimate that 80% of the total protein was from plasma membrane and 10% from membrane-associated actin.

Acanthamoeba↗