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Biomedical subjects

M Aiach

Publications and source records attributed to M Aiach.

At least 127 records · Page 7Linked to original sources

Influence of six mutations of the protein C gene on the Gla domain conformation and calcium affinity.

The protein C Gla domain was studied in six families presenting a type II hereditary deficiency characterized by low activity in a coagulation assay and normal activity in an amidolytic assay. Five of these mutations, previously described by our group, affected Arg-5, Arg-1, Arg 229 and Ser 252. We report here the first natural Glu 7 to Asp mutation in a sixth family. We evaluated the binding of the mutated protein C to H11, a monoclonal antibody (mAb) known to recognize the sequence Phe4 to Arg9 of the Gla domain; the presence of calcium ions suppresses the recognition of this epitope by H11. Mutation of Arg229 to Gln and Ser252 to Asn did not modify the inhibition of protein C binding, whereas the Arg-1 to His mutation resulted in a loss of inhibition in the presence of CaCl2. This suggests that the protein C of this patient shows impaired carboxylation. The protein C from patients bearing the mutations Arg-5 to Trp, Arg-1 to Cys and Glu 7 to Asp bound poorly to H11 mAb, even in the absence of calcium ions. The calcium affinity of the Gla domain was studied by pseudo-affinity chromatography, in which protein C was successively eluted from a Mono Q column by CaCl2 10 mM and NaCl 0.6 M. Protein C from the patient bearing the Arg-5 to Asp mutation had a normal elution profile, suggesting that a modification of the propeptide cleavage site impairs the conformation of the Gla domain but not carboxylation.(ABSTRACT TRUNCATED AT 250 WORDS)

1-Carboxyglutamic Acid↗

A new assay based on thrombin generation inhibition to detect both protein C and protein S deficiencies in plasma.

Activated protein C reduces thrombin generation by inactivating factors V and VIII in the presence of protein S. This prompted us to develop an assay which would allow specific exploration of this reaction. The total amount of thrombin formed in plasma after activation by tissue factor and phospholipids was reduced by adding thrombomodulin. This addition allowed protein C to be activated by endogenous thrombin. The inhibition of thrombin generation (ITG) due to protein C activation could be measured by comparing thrombin formation in the presence and in the absence of thrombomodulin. ITG increased with both protein C and protein S concentrations. Normal values of ITG expressed as a percentage were between 40 and 65% and were not influenced by age or sex. ITG increased in patients under heparin therapy, decreased in patients under oral anticoagulant therapy and was decreased in women using oral contraceptives. This method could be used for screening patients for protein C and protein S deficiencies.

Amino Acid Sequence↗

Compound heterozygosity in a family with protein C deficiency illustrating the complexity of the underlying molecular mechanism.

The association of two missense mutations, a Leu 223 to Phe and an Ile 403 to Met, is described in a family presenting with various protein C deficiency phenotypes. In this family, two subjects were compound heterozygotes with protein C levels of about 25%, the other members being heterozygous for only one of the mutations. The Leu 223 to Phe mutation was also found in 9 members of 3 other families and, in all cases but one, resulted in protein C levels below 60% associated with a high incidence of thrombotic complications. The other mutation, an Ile 403 to Met, was identified in those of the family' members who presented with borderline protein C concentrations. In such a family, the genomic DNA analysis represents the only way to differentiate between the genetic status of each family member. The results highlight the importance of the genotype determination and the poor discriminative power of the plasma assays currently used.

Adolescent↗

Five novel mutations located in exons III and IX of the protein C gene in patients presenting with defective protein C anticoagulant activity.

We describe five families presenting with type II hereditary protein C deficiency characterized by normal antigen and amidolytic activity levels but low anticoagulant activity. All the exons and intron/exon junctions of the protein C gene were studied using a strategy combining amplification by the polymerase chain reaction (PCR), denaturing gradient gel electrophoresis of the amplified fragments, and direct sequencing of fragments displaying altered melting behavior. We detected five novel mutations. Three were located in the C-terminal part of the propeptide encoded by exon III: Arginine (Arg)-5 to tryptophan (Trp), Arg-1 to histidine (His), and Arg-1 to cysteine (Cys) mutations. The two others, located in exon IX, affected Arg 229 and serine (Ser) 252, which were respectively replaced by glutamine (Gln) and asparagine (Asn). DNA studies of the other exons from affected individuals showed no other abnormalities. These novel mutations provide further insight into the importance of the affected amino acids located close to the active site, near Asp 257, one of the three amino acids of the catalytic triad. The low anticoagulant activity of the abnormal protein C indicated that Arg 229 and Ser 252 play a key role during the interaction between protein C and its cofactor protein S, phospholipids, or factors Va and VIIIa. The Arg-1 to Cys mutation led to the dimerization of protein C with another plasmatic component, as evidenced by the presence in the plasma of a high molecular weight form of protein C that disappeared after reduction. No molecular mass abnormalities were observed in heavy and light chains of all other protein C mutants. In the five families explored, 9 (64%) of the 14 subjects bearing the mutations reported thrombotic events. This suggests that the protein C amino acids affected by the mutations are very important for the in vivo expression of the antithrombotic properties of protein C.

Amino Acid Sequence↗

Circulating proalbumin associated with a second case of antitrypsin Pittsburgh.

We report here the conclusive identification of circulating proalbumin of normal N-terminal sequence (Arg Gly Val Phe Arg Arg Asp Ala) in a second child with the alpha 1-antitrypsin Pittsburgh 358 Met-->Arg mutation. As in the first case, the proalbumin made up 3-5% of the total serum albumin. The finding of proalbumin associated with a second de novo mutation at the inhibitory site bait of antitrypsin confirms our earlier hypothesis; that antitrypsin Pittsburgh was acting as a specific intracellular inhibitor of the hepatic proalbumin convertase and that antitrypsin Pittsburgh could be used as a probe to identify the proprotein convertase.

Amino Acid Sequence↗

Contribution of platelet protein S (PS) to PS levels measured in plasma.

Protein S (PS) is a plasma protein synthesized by hepatocytes and endothelial cells and also found in platelets. Since it has previously been suggested that hereditary PS deficiency may sometimes remain undetected due to enhanced release of platelet PS into plasma, we investigated this question by measuring and comparing PS levels in plasma obtained using procedures susceptible to induce different degrees of platelet activation or disruption. Immunological and functional assays were employed. Plasma samples were obtained from blood centrifuged immediately on collection or after 3 h storage at room temperature, or following repeated freeze-thawing of platelet rich plasma. Analysis of variance revealed no significant difference in PS levels among the samples prepared by these different procedures. It is therefore doubtful that release of platelet PS content could mask a PS deficiency in plasma.

Adult↗

Partial characterization of an autoantibody recognizing the secondary binding site(s) of thrombin in a patient with recurrent spontaneous arterial thrombosis.

A patient with an 18 year history of recurrent arterial thrombosis and no evidence of atherosclerosis or embolism of cardiac origin presented with a prolonged thrombin clotting time when performed with human thrombin. The bovine thrombin clotting time was only slightly prolonged. During 30 months of follow-up, the thrombin time fluctuated, but remained prolonged. The patient has been treated with an oral anticoagulant for the past 8 years, with no thrombotic recurrence. The inhibitor activity was due to the presence of polyclonal IgGs which bound to thrombin-Sepharose. The influence of IgGs purified from the patient's serum was compared to the influence of normal IgGs in several systems exploring the catalytic activity of thrombin and the binding of the enzyme to macromolecular substrates through secondary binding site(s). We found that the IgGs did not impair the catalytic activity toward small synthetic substrates, but inhibited the binding of thrombin to fibrinogen, thrombomodulin and heparin cofactor II. Such proteins are known to require a secondary binding site of thrombin to interact with the enzyme. The anti-thrombin antibody might have resulted from an abnormal generation of thrombin. This would be the consequence of the process favouring thrombosis. Alternatively, the autoantibody might have favoured thrombosis primarily, by impairing natural antithrombotic mechanisms triggered by thrombin.

Adult↗

[Treatment of venous thrombosis with low molecular weight heparin and fluindione].

Thirty-one consecutive patients with deep vein thrombosis were treated with Fraxiparine, a low molecular weight heparin, and fluindione, an oral anticoagulant prescribed at an early stage. Despite the weight/biological effectiveness ratio, the dose of Fraxiparine had to be adjusted in 46 percent of the patients to remain within the therapeutic range selected (0.5 to 1 antiXa/ml units). The early administration of fluindione reduced the duration of heparin therapy to 5.75 days. Using a prescription guide on days 2 and 4 might improve the safety of the fluindione induction.

Adult↗

Two novel mutations responsible for hereditary type I protein C deficiency: characterization by denaturing gradient gel electrophoresis.

Hereditary protein C (PC) deficiency is usually associated with a high risk of thrombosis. We report the results of a study undertaken to screen for molecular defects in families with hereditary quantitative PC deficiency. Using a strategy combining polymerase chain reaction amplification of selected gene fragments, denaturing gradient gel electrophoresis of the amplification products, and direct sequencing of fragments with altered melting behavior, we studied the PC gene exons and exon/intron junctions of subjects with hereditary type I PC deficiency. Computer simulation of DNA melting was used to design several sets of primers, each containing a GC-clamp, permitting the complete analysis of each amplified exon sequence. Using this procedure, we identified two previously undescribed mutations located in exon VII: a C-to-T substitution generating a nonsense codon in place of Arg 157 in the mature PC and a G-to-A substitution converting Arg 178 to GIn. The two mutations were detected in, respectively, 3 and 2 apparently independent families. This strategy is therefore a valuable tool for screening patients, and the results emphasize its advantages over plasma assays in individuals with a family history of thrombosis.

Adult↗

Significance of high levels of heparin cofactor II in the plasma and urine of adult patients with nephrotic syndrome.

Heparin cofactor II (HCII) is a thrombin inhibitor in human plasma which displays similarities with antithrombin III (ATIII). Hereditary HCII deficiency was recently reported to be associated with thrombophilia. Since thromboembolism constitutes one of the main complications of the nephrotic syndrome (NS), both activities and antigen concentrations of HCII and ATIII were measured in the plasma and urine of 33 adult patients with nephrotic syndrome. The mean HCII plasma level was significantly increased whereas the ATIII level was decreased. Plasma HCII was significantly correlated with proteinuria and with the fibrinogen level, suggesting that HCII could act as an acute phase reactant in patients with NS. HCII antigen was detectable in 16 of the 24 available urine samples, whereas ATIII antigen was present in all of them. In addition, functionally active HCII was detected in most of the urine samples containing HCII antigen, while ATIII was only present in the inactive form. In conclusion, these findings suggest that HCII is submitted to a metabolic pathway different from that of ATIII in patients with NS.

Adolescent↗

Met 358 to Arg mutation of alpha 1-antitrypsin associated with protein C deficiency in a patient with mild bleeding tendency.

The molecular defect responsible for a dramatic prolongation of all standard clotting tests discovered in a 15-yr-old boy has been identified. Initial investigations revealed the presence of an activated Factor X (Factor Xa) and thrombin inhibitor which copurified with alpha 1-antitrypsin (alpha 1-AT), thereby suggesting the occurrence of an alpha 1-AT variant similar to alpha 1-AT Pittsburgh. This was confirmed by dot-blot analysis and direct sequencing after amplification by the polymerase chain reaction. A G to T transition at nucleotide 10038 results in the substitution of Met to an Arg, converting alpha 1-AT into an Arg-Ser protease inhibitor (serpin) that inhibited thrombin and Factor Xa more effectively than antithrombin III. Surprisingly, there was no bleeding history in the proband. The common mutation Z, which may explain a reduced expression of the allele bearing the Arg 358 Met mutation, was not observed in the propositus' DNA. To exclude the presence of another mutation, the coding regions and intron/exon junctions were sequenced. No other mutation was found. Recently, the patient experienced his first hemorrhagic episode at the age of 17. The level of the abnormal inhibitor had increased twofold 2 mo before. The large decrease in protein C concentration may account for the mild bleeding tendency in this case, despite the presence of the alpha 1-AT Pittsburgh mutation. An abnormal protein C pattern was observed in patient's plasma, suggesting that the circulating deficiency might be due to a deleterious effect of the abnormal inhibitor on both intracellular processing and catabolism of protein C.

Base Sequence↗

[Changes in levels of blood coagulation inhibitors in cirrhosis. Prospective study in 33 patients].

The variations of the main plasma inhibitors of coagulation were prospectively studied in 33 cirrhotic patients, of which 9 presented with hepatocellular carcinoma, 5 of those associated with portal vein thrombosis. The mean prothrombin index was 49 +/- 16 percent. All plasma values of inhibitors were diminished, but to varied degrees: the mean values were: protein C (PC): 33 +/- 15 percent, antithrombin III (AT III): 50 +/- 23 percent, total protein S (PST): 67 +/- 20 percent. The more severe the cirrhosis, the more decreased were the values of antithrombin II and protein C. According to Child classes A, B, and C, antithrombin III plasma values were 64 +/- 20, 50 +/- 21 and 26 +/- 11 percent and protein C values were 43 +/- 16, 32 +/- 8 and 19 +/- 9 percent, respectively. We were able to define expected plasma values of the plasma inhibitors as a function of coagulation factors during cirrhosis; AT III (percent) = 1.16 x factor II (percent) - 7.85; PC (percent) = 0.49 x AT III (percent) + 8.96; PC (percent) = 0.55 x factor II (percent) + 5.55; PST (percent) = 0.76 x factor II (percent) + 28.74. However those equations cannot be extrapolated to patients presenting with cirrhosis complicated with portal thrombosis.

Adult↗