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Biomedical subjects

M Vidaud

Publications and source records attributed to M Vidaud.

At least 109 records · Page 6Linked to original sources

Detection of Toxoplasma gondii by competitive DNA amplification of bronchoalveolar lavage samples.

The prevalence of pulmonary toxoplasmosis was assessed by a prospective analysis of 144 bronchoalveolar lavage (BAL) samples using competitive polymerase chain reaction (PCR) to avoid false-negative results due to PCR techniques. Six samples were excluded because they contained amplification reaction inhibitors. None of the samples from the 37 immunocompetent patients and only 1 sample (1.7%) from the 59 immunocompromised patients without human immunodeficiency virus infection were PCR-positive. In contrast, Toxoplasma gondii DNA was found in 6 (14%) of 42 samples from patients with AIDS. All 6 patients had < or = 40 CD4 cells/microL and anti-Toxoplasma antibodies, and 5 had other sites of Toxoplasma infection. Six other AIDS patients who had received treatment for cerebral toxoplasmosis were PCR-negative. Thus, pulmonary toxoplasmosis is frequent in AIDS patients who have other sites of Toxoplasma infection and low CD4 lymphocyte counts and who are not receiving prophylaxis.

Adolescent↗

Haemophilia B due to a de novo insertion of a human-specific Alu subfamily member within the coding region of the factor IX gene.

A de novo insertion of an Alu repeated DNA element was found within exon V of the factor IX gene in a patient with severe haemophilia B. The element interrupts the reading frame of the mature factor IX at glutamic acid 96 resulting in a stop codon within the inserted sequence. The Alu repeat is 322 bp long, and the 5' region is shortened by 38 bp. The insertion created a target site duplication of 15 bp consistent with retroposition, and contains a pure polyadenine tract of at least 78 resides at the 3' end. The nucleotide sequence agrees with a consensus for an Alu subfamily which is evolutionarily the most recently inserted, suggesting that it is an exact copy of a putative source gene. These observations indicate that retroposition of Alu elements is a continual process and a mechanism for generating human genetic defects.

Base Sequence↗

Twenty-four novel hemophilia B mutations revealed by rapid scanning of the whole factor IX gene in a French population sample.

Full scanning of the factor IX gene by means of denaturing gradient gel electrophoresis enabled us to determine the molecular defects in 48 out of 49 hemophiliacs and to evaluate the spectrum of factor IX mutations in the French population. Our results further document the high molecular heterogeneity of the disease and the efficiency of this rapid screening method for disease-causing mutations. This direct approach, which is based on computer-aided analysis of the whole coding, promoter and exon-flanking factor IX gene sequences, proved to be helpful for carrier detection and prenatal diagnosis in most hemophilia B families, including sporadic cases. Moreover, we were able to identify 24 novel molecular defects of various natures in the factor IX gene.

Base Sequence↗

Efficient screening of p53 mutations by denaturing gradient gel electrophoresis in colorectal tumors.

Alterations in exons 5-8 of the p53 gene have been found in the vast majority of human tumors. Although some specific codons have been revealed as preferential mutational sites in defined tumor types, mutations are generally so scattered within this region that various screening methods for their detection have been widely used. However, the capacity of these techniques to detect exhaustively all mutations has not been evaluated. In this report, conditions for analysing exons 5-8 of the p53 gene by denaturing gradient gel electrophoresis (DGGE) have been elaborated using the Melt87 and SQHTX computer programs. The procedure requires five different amplifications. The screening of 90 colorectal tumors revealed 56 amplification products demonstrating abnormal DGGE behavior. Direct sequencing of these amplification products after asymmetric polymerase chain reaction (PCR) showed, besides polymorphism, 49 somatically mutated DNA samples (54.4%) corresponding to 38 different p53 variants. Moreover, 25 additional p53 variants identified in other tumor types were also detectable with our conditions. Thus, altogether the procedure has been successfully used in the detection of 63 different p53 variants. The experimental differences in migration between the wild-type homoduplex DNA molecule and the heteroduplex(es) containing one mismatch were systematically compared with those calculated by the SQHTX program. The computer program was found to be reliably predictive. This DGGE procedure appears thus to be effective and reliable for detecting mutations in exons 5-8 of the p53 gene.

Base Sequence↗

A comprehensive scanning method for rapid detection of beta-globin gene mutations and polymorphisms.

We describe a scanning procedure for the detection of beta-globin gene mutations and the prenatal diagnosis of beta-thalassemias. The method is based on the combined use of PCR and denaturing gradient gel electrophoresis (DGGE) of six amplified fragments encompassing the whole beta-globin coding region and splice junctions, as well as the promoter and 3' untranslated regions. The whole beta-globin gene can be rapidly scanned for the presence of deleterious mutations. The proposed diagnostic strategy provides a major improvement over current approaches to beta-globin gene analysis in both research and clinical laboratories, especially those which analyse DNA samples from individuals belonging to various ethnic or population groups. The use of this procedure has enabled us to detect six novel sequence changes in the beta-globin gene, including two deleterious mutations and four polymorphisms.

Base Sequence↗

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↗

Rapid molecular characterization of mutations leading to unstable hemoglobin beta-chain variants.

Characterization of unstable hemoglobins by protein analysis is often difficult. However, it is facilitated by DNA analysis, especially in the case of hyperunstable beta-chain variants, which produce a beta-thalassemia phenotype. We have applied an efficient strategy to the detection of such variants at the DNA level, based on computer-designed denaturing gradient gel electrophoresis (DGGE) of amplified DNA fragments. This approach makes it possible to detect any anomaly in the beta-globin gene. We describe the use of the DGGE method for rapid characterization of beta-chain variants and report a new missense mutation in the beta-globin gene third exon, beta 127 CAG-CGG/Gln-Arg, which is responsible for the synthesis of a highly unstable hemoglobin.

Adolescent↗

Molecular characterization of cystic fibrosis: 16 novel mutations identified by analysis of the whole cystic fibrosis conductance transmembrane regulator (CFTR) coding regions and splice site junctions.

The spectrum of cystic fibrosis (CF) mutations was determined in 105 patients by using denaturing gradient gel electrophoresis to screen the entire coding regions and adjacent cystic fibrosis transmembrane conductance regulator (CFTR) gene sequences. The nucleotide substitutions detected included 16 novel mutations, 11 previously described defects, and 11 nucleotide sequence polymorphisms. Among the novel mutations, 6 were of the missense type, 4 were nonsense mutations, 4 were frameshift defects, and 2 affected mRNA splicing. The mutations involved all the CFTR domains, including the R domain. Of the 61 non-delta F508 CF chromosomes studied, mutations were found on 36 (59%), raising the proportion of CF alleles characterized in our patient cohort to 88%. Given the efficacy of the screening method used, the remaining uncharacterized mutations probably lie in DNA sequences outside the regions studied, e.g., upstream-promoter sequences, the large introns, or putative regulatory regions. Our results further document the highly heterogeneous nature of CF mutations and provide the information required for DNA-based genetic testing.

Base Sequence↗

XY sex reversal associated with a nonsense mutation in SRY.

Sex determination in humans is mediated through the expression of a testis-determining gene on the Y chromosome. In humans, a candidate gene for the testis-determining factor (TDF) that encodes a protein with a putative DNA-binding motif and has been isolated is termed SRY. Here we describe an XY sex-reversed female with pure gonadal dysgenesis who harbors a de novo nonsense mutation in the SRY open reading frame (SRY-orf). This single-basepair substitution results directly in the formation of a termination codon in the putative SRY DNA-binding motif, presumably leading to a nonfunctional gene product. This brings the number of reported XY sex-reversed females with de novo mutations in the known SRY-orf to three, each occurring in the putative DNA-binding domain. This provides further evidence to support SRY being TDF in humans and also indicates the functional importance of the putative DNA-binding domain of the SRY protein.

Base Sequence↗

Exhaustive screening of exon 10 CFTR gene mutations and polymorphisms by denaturing gradient gel electrophoresis: applications to genetic counselling in cystic fibrosis.

Several mutations in the cystic fibrosis (CF) gene have been reported. Ten, including the most prevalent mutation in Caucasians, delta F508, are located in exon 10 of the gene, in addition to five sequence polymorphisms. We have previously presented a strategy based on denaturing gradient gel analysis for the rapid detection of any nucleotide variation in all the exons and their immediate flanking regions. We now report the application of this method to the simultaneous detection of all mutations and polymorphisms located in exon 10, together with the use of exon 10 polymorphisms, especially the most frequent one (M470V), as intragenic markers for prenatal diagnosis of cystic fibrosis in families with at least one affected child and unknown disease-causing mutations.

Base Sequence↗

A directed search for mutations in hemophilia A using restriction enzyme analysis and denaturing gradient gel electrophoresis. A study of seven exons in the factor VIII gene of 170 cases.

Genomic DNA from 170 unrelated hemophilia A patients was examined for gene defects in the coding region of the Factor VIII gene. Exons 18, 22-24 and 26 contain a CGA codon for arginine within the recognition sequence for the restriction enzyme Taq I. These five sites were amplified by the polymerase chain reaction and tested for abnormal Taq I restriction patterns. In five cases, the enzyme Taq I failed to digest the amplified fragments. Direct sequencing of the amplified products demonstrated a C to T transition in the coding strand of exons 18, 22 and 24 in three severe hemophilia A patients resulting in TGA termination codons. Two patients showed G to A transition in exons 24 and 26 reflecting a C to T transition in the non-coding strand substituting a glutamine for an arginine. Three deletions involving exon 26 and one exons 23-26 were found in severe hemophiliac patients. In contrast, exons 23 and 24 failed to amplify in one patient with a moderate form of the disease suggesting an in-frame splicing of exons 22 and 25. Exon 8 and the 3' end of exon 14 were analyzed by denaturing gradient gel electrophoresis (DGGE). Two patients with a moderate form of the disease demonstrated an abnormal electrophoretic pattern in exon 8 and sequencing demonstrated missense mutations at codon 372 for arginine within a thrombin activation site. One missense mutation was a C to T transition substituting cysteine for arginine and the other was an infrequent G to C transversion at an adjacent nucleotide changing the same arginine to proline.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

Sickle cell anemia in the Tunisian population: haplotyping and HB F expression.

Thirty-three Tunisian patients, homozygous for Hb S, were examined. Haplotyping using nine restriction sites in the beta-globin gene cluster revealed that the most common type is the Benin type [---- + - + - +] which occurs at a frequency of 0.94% (31 cases); only one patient was homozygous for an atypical haplotype which shows some differences with the Benin haplotype at sites 1, 5, 6, and 8 [+ ---- + + + +]; the two remaining patients were assumed to be double heterozygotes for the Benin and atypical haplotypes. The presence of the atypical haplotype suggested a double origin of the beta S gene in Tunisia. Moreover, a heterogeneity in the Hb F production was observed, ranging between 2 to 16%, whereas the G gamma-globin expression was remarkably homogeneous in our patients with a normal amount approaching 40%. These results suggested the presence of a combination of several control factors.

Adolescent↗

The molecular genetic analysis of hemophilia A: a directed search strategy for the detection of point mutations in the human factor VIII gene.

A directed-search strategy for point mutations in the factor VIII gene causing hemophilia A was used to screen eight potentially hypermutable CpG dinucleotides occurring at sites deemed to be of functional importance. Polymerase chain reaction-amplified DNA samples from 793 unrelated individuals with hemophilia A were screened by discriminant oligonucleotide hybridization. Point mutations were identified in 16 patients that were consistent with a model of 5-methylcytosine (5mC) deamination. Four new examples of recurrent mutation were demonstrated at the following codons: 336 (CGA----TGA), 372 (CGC----TGC), 372 (CGC----CAC), and 1689 (CGC----TGC). These are functionally important cleavage sites for either activated protein C or thrombin. Further novel C----T transitions were identified in the remaining arginine codons screened (-5, 427, 583, 795, and 1696), resulting in the creation of TGA termination codons. Differences in mutation frequency were found both within and between the CpG sites and between ethnic groups. These differences are assumed to be due to differences in the level of cytosine methylation at these sites, although direct evidence for this inference is lacking.

Base Sequence↗

Frequency of the cystic fibrosis delta F508 mutation in a large sample of the French population.

We have determined the frequency of the cystic fibrosis (CF) delta F508 mutation in a large sample of CF patients originating from different areas of France, including the greater Paris, Brittany, Alsace, Lorraine and Rhône-Alpes regions. A total of 422 CF chromosomes were studied, and the defect was found to account for 75% of the mutant alleles. In the course of the survey, a rare nucleotide sequence polymorphism leading to an isoleucine to valine substitution at position 506 of the CF transmembrane conductance regulator protein has been characterized in an unaffected individual. Our data enable the evaluation of the probabilities that a chromosome negative for the delta F508 mutation carriers another CF defect.

Cystic Fibrosis↗