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C Beldjord

Publications and source records attributed to C Beldjord.

At least 91 records · Page 5Linked to original sources

Somatic mosaicism for partial paternal isodisomy in Wiedemann-Beckwith syndrome: a post-fertilization event.

Genomic imprinting has been implicated in the aetiology of an overgrowth cancer-prone syndrome, the Wiedemann-Beck-with syndrome (WBS). We have demonstrated uniparental disomy (UPD) for paternal chromosome 11p markers in 5 out of 25 sporadic cases (20%). Delineation of the extent of the disomy region may help in understanding the mechanism and the stage, meiotic or mitotic, of disomy formation in this disease and in associated tumours. Our current studies in WBS patients with seventeen 11p and one 11q markers reveal paternal isodisomy, not heterodisomy, in the five cases. For one case we demonstrate unambiguously that partial isodisomy for 11p and somatic mosaicism for UPD resulted from a post-fertilization event. The restriction of isodisomy to part of 11p in another case, and somatic mosaicism for UPD in three other cases, suggest a mitotic recombinational event that must have occurred after fertilization. Mosaic phenotypes reflect the timing of their origin and the fate of the cells involved, as well as the cell-specific pattern of imprinting. Somatic mosaicism for UPD in four cases may thus explain the incomplete forms of WBS. The association of hemihypertrophy in sporadic WBS and even some cases of isolated hemihypertrophy. This is in agreement with a recent report of paternal isodisomy for 11p markers in a patient with hemihypertrophy, Wilms' tumour and adrenocortical carcinoma. Moreover, the risk of developing a tumour seems higher (50%) for patients with paternal 11p UPD than for WBS patients in general (7.5%).

Adult↗

Genetic epidemiology of beta-thalassemia in Sicily: do sequences 5' to the G gamma gene and 5' to the beta gene interact to enhance HbF expression in beta-thalassemia?

The present epidemiological study of the molecular characteristics of beta-thalassemia in Sicily was prompted by the disparate phenotypic expression (in clinical status and absolute HbF level) observed in two beta-thalassemic homozygotes who were also homozygous for the beta-like globin gene cluster haplotype III. We suspected that polymorphisms within haplotype III could be the cause for the discrepancy. Based on the association of particular conformations of the (AT)xT(y) motif (-540 5' to the beta gene) with milder forms of thalassemia and sickle cell anemia, 38 homozygous beta-thalassemia patients were studied to define their haplotypes, the -158 site 5' to the G gamma gene (linked to haplotype III) and the structure of the (AT)xT(y) motif. We found that the patient who was phenotypically mild and homozygous for beta-thalassemia, haplotype III, and the -158 C----T mutation was homozygous for the rare (AT)9T5 motif. In contrast, the patient homozygous for beta-thalassemia, haplotype III, and the -158 mutation, but exhibiting a severe clinical course, was homozygous for the (AT)7T7 configuration. Others have suggested that (AT)9T5 is a negative regulatory protein binding sequence, and it is a silent carrier state for beta-thalassemia. The usual configuration (AT)7T7, has considerably less affinity for regulatory protein binding, and it is the most common configuration in Sicilian beta-thalassemics (67 of the 78 chromosomes studied). Within the 38 patients studied, seven were informative because they had various combinations of the (AT)9T5 and (AT)7T7 motif, and the -158 C----T mutation. The results in these patients suggest that only the co-presence of the (AT)9T5 configuration and a C----T change at -158 5' to the G gamma gene is associated with high HbF expression and a mild clinical phenotype. We postulate that these two regions of the beta-like globin gene cluster interact, when endowed with the proper sequences, to enhance the expression of HbF secondary to anemia.

Adolescent↗

A haplotype-linked four base pair deletion upstream of the A gamma globin gene coincides with decreased gene expression.

During normal human development, a switch is classically observed in the relative expression of the two gamma globin genes, the G gamma/A gamma ratio varying from 70/30 at birth to 40/60 by the end of the first year. An exception to this developmental pattern is linked to the presence of an XmnI restriction site at a position -158 to the Cap site of the G gamma gene. Another exception is observed in individuals homozygous for two easily detectable variations of the A gamma gene: the presence of a threonine residue at codon 75 and a HindIII site within the second intron. A 4-bp deletion has been described around position -225 in some thalassemic patients presenting with these variations. In this study, we find this deletion to be haplotype-linked in a series of 156 individuals of various ethnic origins and presenting with various normal and pathological phenotypes. In sickle cell patients heterozygous for this 4-bp deletion, the relative expression of the A gamma genes on the two chromosomes can be measured by estimating the A gamma T and A gamma I chains, the former always being synthesized at a lower rate. These results suggest a functional role for the deleted sequence.

Base Sequence↗

[Pathology of unstable sequence of genome: fragile-X-syndrome].

Fragile X syndrome is the most frequent form of inherited mental retardation and is associated with a fragile site at Xq27-3. This fragile site is an unstable microsatellite repeat, p(CCG). In fragile X syndrome families, this sequence exhibits variable amplification, the length of which correlates with phenotype. Affected persons have both a "full mutation" and abnormal DNA methylation. Subjects with smaller increase of this sequence, called "premutation", have little or no risk retardation, but are at high risk of having affected children or grandchildren. The passage from "premutation" to "full mutation" status occurs only with transmission from the mother. The unusual segregation patterns in fragile X pedigrees is referred to as the Sherman paradox, now elucidated by genotypic analysis. We present here a brief review of this pathology and illustrate the use of this new diagnostic test in our laboratory.

DNA↗

Rapid and direct detection of the most frequent Mediterranean beta-thalassemic mutations by multiplex allele-specific enzymatic amplification.

A rapid nonradioactive method for the diagnosis of the most frequent Mediterranean beta-thalassemic mutations is described based on a multiplex allele-specific polymerase chain reaction (PCR). This method allows direct detection of normal or mutated alleles on genomic DNA. We have used this approach to detect the most frequent Mediterranean mutations: IVS-1 nt 110 (G----A) and 39 nonsense (C----T). For each mutation three allele-specific oligonucleotides were used: one common upstream primer and two downstream primers differing in their terminal 3' nucleotide (one specific for the normal allele and one for the mutant allele). For each sample two PCR reactions were performed in parallel using in one case IVS-1 nt 110 and codon 39 normal primers and in the second case using the corresponding mutated primers. In both cases the different PCR fragments were visualized. After optimization these primers directed only amplification of their complementary allele. A single blind study was performed on the DNA of 18 individuals who were homozygous or heterozygous for these mutations. In comparison with a parallel investigation, using oligonucleotide probes, all the results were unambiguous. This diagnosis method, which is rapid, easy, direct, and inexpensive, allows the screening of a population group, including heterozygotes, which is required from an epidemiological and anthropological point of view. It could be extended to the large series screening of haplotypes before targeted diagnosis of various genetic diseases.

Algeria↗

Uniparental paternal disomy in a genetic cancer-predisposing syndrome.

The 11p15.5 region of human chromosome 11 seems to contain a locus or loci involved in congenital overgrowth anomalies as well as in the genesis of many tumours associated with the Beckwith-Wiedemann syndrome (BWS). Given the unusual differential parental allele involvement in the different aetiological forms of BWS and the loss of maternal alleles in associated tumours, we have now used 11p15.5 markers to determine the parental origin of chromosome 11 in eight sporadic cases of BWS. Probands in three informative families had uniparental paternal disomy for region 11p15.5. Further, an overall greatly increased frequency of homozygosity for several 11p15.5 markers in 21 sporadic BWS patients suggests that isodisomy probably accounts for an even higher proportion of BWS sporadic cases. This demonstrates that uniparental paternal disomy can be associated with a genetic cancer-predisposing syndrome.

Beckwith-Wiedemann Syndrome↗

Nucleotide variations in the 3' A gamma enhancer region are linked to beta-gene cluster haplotypes and are unrelated to fetal hemoglobin expression.

Molecular cloning and sequence analysis of a nondeletion form of Sicilian beta o hereditary persistence of fetal hemoglobinemia (HPFH) (mutation in IVS2 nt1 position) homozygous for haplotype III revealed the presence of four sequence variations: C----T at -158 5' to G gamma, T----C at +2285, C----A at +2476, and A----G at +2676, all 3' to A gamma. The latter three variations in the putative A gamma enhancer are identical to those observed in the case of Seattle HPFH. However, a severe beta o-thalassemia case from Algeria (mutation in IVS1 nt1 position), also homozygous for haplotype III, revealed the same nucleotide variation, albeit an inefficient HbF production. We conclude that the variations in the A gamma enhancer element do not play a role in the regulation of HbF production. To assess both the linkage of these sites with the beta-cluster haplotype and the extent of the polymorphism, we examined several black and Mediterranean chromosomes, by PCR amplification followed by both EspI digestion and oligonucleotide hybridization. Our data indicate that these sequence variations in the enhancer element are absent in Mediterranean haplotypes I, V, and VII but are consistently associated with Mediterranean haplotypes II, III, and IX, as well as with the black beta c-associated haplotype. The common feature of all the latter haplotypes is the presence of a polymorphic PvuII site between A gamma and psi beta, which is thus in linkage disequilibrium with the variations in the A gamma enhancer.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

A novel beta thalassemia gene with a single base mutation in the conserved polypyrimidine sequence at the 3' end of IVS 2.

An adult Algerian patient with homozygous beta thalassemia was found to have a unique beta thalassemia gene. Cloning and sequencing revealed that the only abnormality present in this beta gene is a transversion in the polypyrimidine stretch at the 3' end of the large intervening sequence (IVS 2) six bases 5' to the consensus AG dinucleotide sequence (CCGCCCACAG instead of CCTCCCACAG). In addition, digestion of the cloned fragment by the enzyme Mnl I demonstrates the disappearance of a restriction site as expected. This is the first example of a defect in the consensus sequence at the 3' end of an IVS leading to a thalassemia phenotype presumably due to decreased splicing.

Adult↗

Recovery of functional DNA inserts by electroendosmotic elution during gel electrophoresis.

In contrast to all previous preparative electrophoresis apparatus which used a pump, electroendosmotic elution uses bound electrical charges at the end of the separating gel to generate a buffer flow. The electroendosmotic flow increased with increasing currents and decreasing buffer concentrations: its exact characteristics for the built apparatus were determined. The electroendosmotic device was able to separate two DNA fragments differing in size by only 5% with a recovery over 95%. As demonstrated in practical examples of recovery and uses of DNA inserts, up to 10 micrograms of DNA per band can be loaded at a time. The recovered DNA can be used directly for nick-translation, ligation... without further treatment. The performances of the method are expected to improve still further if the charge density and pores of the electroendosmotic medium can be "made-to-order" to provide a better flow profile of the eluting buffer.

Buffers↗

DNA haplotype distribution in Algerian beta thalassaemia patients. An extended evaluation by family studies and representative molecular characterization.

An evaluation of beta thalassaemia mutations and the associated chromosomal haplotypes has been made among Algerian thalassaemic patients in this extended series. The major features of our findings are: (i) due to elevated proportion of consanguinity, the frequency of true homozygotes for a defect is high; (ii) Despite this high homozygosity within families, the number of molecular defects resulting in beta thalassaemia are very heterogeneous within this population. This is exemplified not only by the high heterogeneity of haplotypes and associated mutations, but also by the definition of several new haplotypes, among which two of them were found to be associated with novel mutations. Family studies have been performed in parallel to evaluate the degree of feasibility of antenatal diagnosis in this population.

Algeria↗

Common haplotype dependency of high G gamma-globin gene expression and high Hb F levels in beta-thalassemia and sickle cell anemia patients.

We have studied 42 homozygous beta-thalassemia patients from Algeria and 34 sickle cell anemia patients from Senegal and Benin, determining the relationship between haplotypes, Hb F, and G gamma-globin/A gamma-globin ratios. Populations selected have a high frequency of haplotype homozygotes because of consanguinity (Algeria) and geographic homogeneity (West Africa). We find in beta-thalassemia patients, that haplotype IX in haplotypic homozygotes and heterozygotes, haplotype III in heterozygotes, and the Senegal haplotype in sickle cell anemia patients are all linked to high G gamma-globin expression. In addition, haplotypes IX and Senegal, but not haplotype III, have high Hb F levels. All of these haplotype have a common subhaplotype (+- ) in the gamma-globin gene region. In addition, haplotypes IX, III, and Senegalese sickle cell anemia patients exhibit hematological amelioration of their disease. Conversely, haplotypes I, V, and A in thalassemia patients, which also have a common subhaplotype (-----), and the Benin subhaplotype (--++-) in sickle cell anemia patients are all associated with low G gamma-globin and low Hb F levels. Low G gamma-globin expression in the adult is associated with two haplotypes that are not common between thalassemia and sickle cell anemia patients. We conclude that the determinant for high G gamma-globin expression is haplotype-linked to common and genetically dominant subhaplotypes in the two diseases. The total Hb F level, unlike the high G gamma-globin expression, however, is linked to haplotypes but not to subhaplotypes, thus dissociating the two genetic effects.

Anemia, Sickle Cell↗