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M Claustres

Publications and source records attributed to M Claustres.

At least 109 records · Page 6Linked to original sources

Screening for cystic fibrosis mutations in southern France: identification of a frameshift mutation and two missense variations.

In the search for mutations in the cystic fibrosis gene in patients from the Mediterranean area, we have analysed exons 4, 9, 10, 19, and 21 by the single-strand conformation polymorphism (SSCP) technique in 50 patients with at least one non-delta F508 chromosome. Ten samples demonstrated a shifted band, four in exon 19 and six in exon 21. Sequencing of the PCR fragments has led to the identification of three new sequence alterations, two in exon 19 (3737 delA and I1234V), and one in exon 21 (N1303H). We also analysed the frequency of two known intronic polymorphisms in front of exon 19 (C to A change at nucleotide 3601-65) and exon 21 (G to A change at position 4006-200).

Base Sequence↗

Parental origin and germline mosaicism of deletions and duplications of the dystrophin gene: a European study.

Knowledge about the parental origin of new mutations and the occurrence of germline mosaicism is important for estimating recurrence risks in Duchenne (DMD) and Becker muscular dystrophy (BMD). However, there are problems in resolving these issues partly because not all mutations can as yet be directly detected, and additionally because genetic ratios are very sensitive to ascertainment bias. In the present study, therefore, analysis was restricted to currently detectable mutations (deletions and duplications) in particular types of families which tend to be rare. In order to obtain sufficient data we pooled results from 25 European centers. In mothers of affected patients who were the first in their family with a dystrophin gene deletion or duplication, the ratio between the paternal and the maternal origin of this new mutation was 32:49 (binomial test P = 0.075) for DMD. In five BMD families the ratio between paternal and maternal origin of new mutations was 3:2. Recurrence risk because of maternal germline mosaicism was studied in sisters or subsequent sibs of isolated cases with an apparently new detectable mutation. In 12 out of 59 (0.20; 95% CI 0.10-0.31) transmissions of the risk haplotype the DMD mutation was transmitted as well. No recurrences were found in nine BMD families.

Chromosome Deletion↗

Analysis of 30 known cystic fibrosis mutations: 10 mutations account for 27% of non-delta F508 chromosomes in southern France.

We have analyzed 131 unrelated families from Southern France for 29 known cystic fibrosis (CF) mutations identified in 8 exons of the cystic fibrosis transmembrane regulator gene. All these mutations were detected by amplification of DNA by the polymerase chain reaction (PCR) followed by restriction enzyme digestion or hybridization with allele specific oligoprobes. The most frequent mutations after the delta F508 deletion (frequency: 63%) were G542X (5.3%), delta I507 (1.1%), and N1303K (0.76%). Seven other mutations (621 + 1G --> T, Y122X, R347P, R334W, S549N, G551D, R1162X) were each identified in only one CF chromosome. Apart from G542X, most of the other mutations identified in this study were found to be associated with 7-(GATT)-repeats allele of IVS6A. In Southern France, only 73% of CF chromosomes could be identified by the analysis of 30 mutations.

Chromosomes, Human↗

Becker muscular dystrophy: demonstration of the carrier status of a female by immunoblotting and immunostaining.

Becker muscular dystrophy (BMD) often results from in-frame mutations of the dystrophin gene, leading to the production of an altered-sized protein. We examined the expression of dystrophin in a BMD patient and in his asymptomatic mother by Western blot and immunofluorescence. The combination of these techniques allowed us to demonstrate the presence of two different dystrophins, normal-sized or reduced-sized in the muscular fibers of the asymptomatic carrier. This result emphasizes the value of dystrophin analysis for carrier detection and genetic counselling of families with Becker muscular dystrophy.

Adolescent↗

Molecular deletion patterns in families from southern France with Duchenne/Becker muscular dystrophies.

We studied 38 unrelated patients from southern France with Duchenne (DMD) or Becker (BMD) muscular dystrophy for intragenic deletions of the DMD/BMD gene. We used both multiplex amplification of selected exons and cDNA probes. Of the 26 (68%) unrelated individuals found to have deletions, 24 (92%) were detected by multiplex polymerase chain reaction. All these deletions have been delineated with regard to the exon-containing HindIII fragments revealed by cDNA probes, and in two cases, junction fragments of altered size were seen. The correlation between phenotype and type of deletion agreed with the reading frame theory, except for two BMD and two DMD cases.

Adolescent↗

Germinal mosaicism from grand-paternal origin in a family with Duchenne muscular dystrophy.

We have identified a Duchenne muscular dystrophy (DMD) pedigree with an unexpected pattern of inheritance. Using marker restriction fragment length polymorphisms detected by probes that lie within and outside the DMD gene, we could demonstrate that the maternal grandfather has transmitted two distinct types of X chromosomes to his offspring. This original observation may be explained by postulating that the DMD mutation must have occurred during mitosis in early germline proliferation, leading to a germline mosaicism within this male ancestor.

DNA Probes↗

Cystic fibrosis typing with DNA probes and screening for delta F508 deletion in families from southern France.

A sample of 235 individuals from 49 French cystic fibrosis (CF) families with at least one living affected child was typed with probes for restriction fragment length polymorphisms (RFLPs) known to be linked to the CF gene, and was screened for the delta F508 mutation. Using a combination of six probes, 44 out of the 49 families were sufficiently informative to enable prenatal diagnosis or carrier determination. As in many other populations, linkage disequilibrium was found between the CF locus and the haplotype B (XV2c: allele 1; KM19: allele 2), which accounts for about 78% of CF chromosomes in our families. The delta F508 deletion was present in 64.3% of CF chromosomes.

Chromosome Deletion↗

Identification of carriers by screening for delta F508 deletion in a multi-generation cystic fibrosis family.

Samples from 30 members of a french cystic fibrosis (CF) family had to be typed with probes for restriction fragment length polymorphisms (RFLPs) known to be linked to the CF gene, to fulfill the expectations of twenty-two low-risk relatives who were asking for carrier testing. Classical linkage-disequilibrium data between KM-19 and XV-2c polymorphisms and the CF locus were not informative enough for some individuals, and other RFLPs had to be analyzed to determine which chromosomes carried the deficient gene in the family. We report the retrospective screening for delta F508 mutation in this extended family to illustrate the drastic improvements that the direct detection of the major mutation responsible for CF has on genetic counselling of relatives of patients with cystic fibrosis.

Blood Proteins↗

[Detection of deletions by the amplification of exons (multiplex PCR) in Duchenne muscular dystrophy].

The polymerase chain reaction is a new powerful method for in vitro cloning of specific regions of DNA. The use of the heat-stable DNA polymerase made the reaction amenable to automation. This method greatly facilitates the detection of mutations which are responsible for Duchenne muscular dystrophy, via DNA amplification of multiple deletions prone exons from the DMD gene.

Chromosome Deletion↗

Androgen and erythropoiesis: evidence for an androgen receptor in erythroblasts from human bone marrow cultures.

The techniques for culturing erythroid precursors made possible the study of the effect of steroids on these cells, and it has been well established that androgens and 5 beta-steroids have a direct effect on erythroid precursor cells from animal or human bone marrow. By contrast, their mechanisms of intracellular action remain poorly understood. We used tritiated methyltrienolone (R1881), a synthetic androgen that binds strongly to the androgen receptor, to characterize the binding activity in nuclear extracts of erythroblasts from human bone marrow cultures. The nuclear extracts contained binding sites that were saturable at low concentrations of 3H-R1881 (8-12 nM). Scatchard analysis revealed that the dissociation constant of the hormone-receptor complexes (Kd) was 10-20 nM, and the number of binding sites was 64-103 fmol/mg of protein. On linear sucrose density gradient analysis (5-20%), the hormone-receptor complexes sedimented in the region of 3.9 S. Finally, 5 beta-dihydrotestosterone had also a strong affinity for the binding sites. The nuclear component binding has all the physicochemical characteristics usually attributed to androgen receptors. These data strongly suggest that androgen action on erythropoiesis is mediated by a nuclear androgen receptor.

Bone Marrow Cells↗

[Somatomedin C/insulin-like growth factor I and in vitro erythropoiesis].

The effect of human somatomedin C/insulin-like growth factor I(SM-C/IGF-1) and human growth hormone (hGH) on colony formation by erythroid precursor cells (CFU-E and BFU-E) from children's bone marrow or blood was studied by methylcellulose cloning assay. We found that physiological concentrations of IGF-1, but not of hGH, stimulated erythropoiesis in vitro in the presence of erythropoietin, as demonstrated by the increased activity of a cytosolic enzyme of the heme pathway (uroporphyrinogen I synthase). The results suggest that IGF-I could be involved in the regulation of erythroid differentiation.

Bone Marrow↗

Insulin-like growth factor I stimulates human erythroid colony formation in vitro.

The effects of human GH and insulin-like growth factor I on the proliferation and differentiation of erythroid progenitor cells from the bone marrow and peripheral blood of children were studied in a hormone-depleted culture system. Growth of erythroid progenitors was quantified by directly scoring colonies and by biochemical determination of the activity of a cytosolic enzyme of the heme pathway, uroporphyrinogen I synthase. In the presence of erythropoietin, high concentrations (50-100 ng/mL) of human GH induced an increase in the number of erythroid colonies (and their uroporphyrinogen I synthase activity) formed by bone marrow or peripheral blood erythroid precursors. In the same conditions, physiological concentrations of insulin-like growth factor I (0.5-1 ng/mL) stimulated erythroid cell growth and differentiation (P less than 0.03) from bone marrow or peripheral blood.

Bone Marrow Cells↗

A paediatric case of sideroblastic anaemia. Ultrastructural studies of erythroblasts cultured from marrow BFU-E in a methylcellulose micromethod.

We examined the morphological and functional characteristics of erythroblasts derived from marrow erythroid progenitor cells grown in a methylcellulose microculture, which were taken from a female child with rare atypical sideroblastic anaemia (SA) partially responsive to pyridoxine. Colony formation was within the normal range in three successive cultures (median values: 82.25 CFU-E and 16.4 BFU-E derived colonies/6.6 X 10(4) cells) compared to growth by normal cells (65-315 CFU-E and 9-40 BFU-E). We evaluated in vitro differentiation by biochemical microassay of a cytosol enzyme involved in the haem pathway: uroporphyrinogen I synthase (UROS). The UROS values in the erythroid colonies from SA marrow were at the lowere end of the normal range (median values: 6.7 +/- 0.3 and 14.4 +/- 3.8 pmol uroporphyrinogen/h in CFU-E and BFU-E-derived colonies respectively versus 17.4 +/- 7.3 and 25 +/- 7.2 pmol/h in CFU-E and BFU-E colonies from normal subjects. Ultrastructural examination of the SA erythroblasts from non-cultured bone marrow or derived from cultured BFU-E revealed the characteristic deposition of iron in mitochondria around the nucleus of most cells (ringed sideroblasts). However, the majority of cultured cells had marked dyserythropoietic features, with a large number of bilobulated or trilobulated erythroblasts, multiple cytoplasmic vacuoles, numerous abnormalities of the nucleus, and excessive membrane material beneath the plasma membrane, all features difficult to observe in non-cultured marrows.

Anemia, Sideroblastic↗

In vitro CFU-E and BFU-E responses to androgen in bone marrow from children with primary hypoproliferative anaemia: a possible therapeutic assay.

The effects of natural and synthetic androgens on erythroid colony formation in children's bone marrow cultures were studied using a methylcellulose microculture assay. In an attempt to predict the clinical response to androgens in two children with Fanconi anaemia (FA) and two children with Diamond-Blackfan syndrome (DB), we tested the hormonal stimulation of testosterone, nortestosterone and etiocholanolone on CFU-E, BFU-E and uroporphyrinogen I synthase activity (UROS). We observed that colony formation and UROS activity were reduced when compared to values obtained with normal children's bone marrow cultures. The addition of steroids to the cultures significantly enhanced the numbers of CFU-E and BFU-E derived colonies and their UROS activity in marrow from patients with FA and one patient with DB. The strong depletion of marrow progenitor cells in the unresponsive marrow from child 4 with DB could explain the absence of hormonal response. Whereas the responsiveness to steroids varied according to the individual, the in vitro testing of erythroid differentiation in the presence of androgens theoretically may lead to an effective prediction of response to therapy in children with hypoplastic anaemia.

Androgens↗

Stimulatory effects of androgens on normal children's bone marrow in culture: effects on BFU-E, CFU-E, and uroporphyrinogen I synthase activity.

We studied the effect of natural and synthetic androgens on children's erythropoietic precursor cells in culture. Cultures of normal marrow were carried out according to a miniaturized methylcellulose method in the presence of erythropoietin. We then evaluated the effects of testosterone, nortestosterone, fluoxymesterone and etiocholanolone (10(-9)-10(-6) M) on erythroid colony-forming units (CFU-E) and burst-forming units (BFU-E). Androgen-induced growth of erythroid progenitors was quantified by directly scoring colonies and by a biochemical determination of the uroporphyrinogen I synthase activity (UROS). We observed a significant increase (p less than or equal to 0.05) in the number of CFU-E and BFU-E and in the UROS activity of derived colonies in the presence of androgens (10(-8) or 10(-7)M). This microculture assay could be useful not only to study the effect of androgens on erythroid progenitor cells in culture, but also to predict the best androgenic treatment of anemia in children and adults.

Ammonia-Lyases↗