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Biomedical subjects

C Boileau

Publications and source records attributed to C Boileau.

At least 37 records · Page 2Linked to original sources

Autosomal dominant type IIa hypercholesterolemia: evaluation of the respective contributions of LDLR and APOB gene defects as well as a third major group of defects.

Autosomal dominant type IIa hypercholesterolaemia (ADH) is characterised by an elevation of total plasma cholesterol associated with increased LDL particles. Numerous different molecular defects have been identified in the LDL receptor (LDLR) and few specific mutations in the apolipoprotein B (APOB) gene resulting in familial hypercholesterolaemia and familial defective apoB-100 respectively. To estimate the respective contribution of LDLR, APOB and other gene defects in this disease, we studied 33 well characterised French families diagnosed over at least three generations with ADH through the candidate gene approach. An estimation of the proportions performed with the HOMOG3R program showed that an LDLR gene defect was involved in approximately 50% of the families (P = 0.001). On the other hand, the estimated contribution of an APOB gene defect was only 15%. This low estimation of ADH due to an APOB gene defect is further strengthened by the existence of only two probands carrying the APOB (R3500Q) mutation in the sample. More importantly and surprisingly, 35% of the families in the sample were estimated to be linked to neither LDLR nor APOB genes. These data were confirmed by the exclusion of both genes through direct haplotyping in three families. Our results demonstrate that the relative contributions of LDLR and APOB gene defects to the disease are very different. Furthermore, our results also show that genetic heterogeneity is, generally, underestimated in ADH, and that at least three major groups of defects are involved. At this point, the contribution of the recently mapped FH3 gene to ADH cannot be assessed nor its importance in the group of 'non LDLR/non APOB' families.

Apolipoproteins B↗

R3531C mutation in the apolipoprotein B gene is not sufficient to cause hypercholesterolemia.

Familial hypercholesterolemia and familial ligand-defective apolipoprotein B-100 (FDB) are dominantly inherited disorders leading to impaired low-density lipoprotein receptor (LDLR) and apolipoprotein B-100 (APOB) interaction, plasma LDL elevation, and hypercholesterolemia. We previously identified the first French FDB-R3531C proband, a woman with very high total cholesterol, in a group of type IIa hypercholesterolemic families. We report here the investigation of her family at large that revealed the total absence of cosegregation with hypercholesterolemia. Six of the 10 subjects heterozygous for the R3531C mutation had plasma cholesterol lower than the 97.5th percentile for their age and gender, and mean cholesterol levels were not significantly different between affected and unaffected persons. Furthermore, 2 family members with similar high LDL-cholesterol levels were not carriers of the R3531C substitution, suggesting the implication of another mutation. Segregation analysis of the LDLR gene revealed statistically significant genetic linkage with hypercholesterolemia, and analysis of the proband LDLR gene led to the identification of the 664 proline to leucine defective mutation and its detection in all 6 hypercholesterolemic-related members of this family. Therefore, our results show that the family presents with familial hypercholesterolemia and give evidence that the R3531C substitution in the APOB gene is not an allelic variant leading to FDB. Furthermore, thorough analysis of our data suggests that the APOB-R3531C mutation enhances the hypercholesterolemic effect of the LDLR-P664L defect, suggesting that it is a susceptibility mutation.

Adolescent↗

[Fibrillin network in normal bone tissue].

The molecular basis for Marfan's syndrome is known to reside in mutations in FBN1, the gene for fibrillin 1. The skeletal manifestations of Marfan syndrome include morphologic abnormalities and osteopenia. Presence and distribution of fibrillin 1 in adult bone (healthy or with Marfan syndrome) has not been studied extensively. We evaluated distribution of fibrillin and type III collagen in bone and cartilage of children and adults without bone disease, using monoclonal antibodies. Fibrillin is mostly present in attachment sites for tendons. In cartilage and bone tissue, fibrillin is identified at the junction between cartilage and bone in children, and in the areas with intense osteoblastic activity. These data suggest participation of fibrillin in bone formation and growth during youth and in bone mineralisation in adult.

Adolescent↗

[Pigs, do they have their heart in their hand? Anthropological reflections on xenografts].

The therapeutic perspectives initiated by xenotransplantations are of interest since they allow a great deal of hope for all patients whose transplant delays decrease in proportion to their prognosis for survival. However, this type of therapy, while resolving the qualitative problem of transplants, could possibly lead to other dilemmas, especially the sociocultural aspects. Besides the potential risk of transmission of a pathogenic agent to the human species, xenotransplants, while creating a symbolic and actual proximity between man and animal, could abolish the ritualized and ancient distance established between the protagonists. It could be pigs or any other type of animal; the central question is one of the relationship between human and animal species. Animal husbandry and slaughtering for food are submitted to very precise cultural codes. But it would be very hasty to think that the use of an animal for therapeutic transplants would be free of all cultural connotations.

Animal Husbandry↗

Marfan syndrome and fibrillin disorders.

Marfan syndrome is the second most common inherited connective tissue disorder after osteogenesis imperfecta. Musculoskeletal abnormalities are at the forefront of the clinical picture and count among the major diagnostic criteria for Marfan syndrome, together with cardiovascular and ocular system involvement. Early diagnosis is of the utmost importance since preventive measures significantly increase life expectancy and prevent the occurrence of impairments and disabilities. Marfan syndrome is due to mutations within the fibrillin-1 gene, which is the main protein of the microfibril network. Microfibrils play a crucial role in the trophicity and function of elastic tissue. Multidisciplinary management of the patients and their families is vital.

Extracellular Matrix Proteins↗

Bone mineral density in sixty adult patients with Marfan syndrome.

Sixty adult patients (40 women, 20 men) with Marfan syndrome (MFS) according to the Berlin criteria had a full clinical examination and bone mineral density (BMD) measurement by dual-energy X-ray absorptiometry of the hip and nondominant forearm. BMD was expressed as a Z-score and compared with the reference population of the Hologic database. In MFS men, BMD (g/cm(2)) was compared with the BMD of 45 normal tall Caucasian adults. Osteocalcin was measured by radioimmunoassay. In patients with MFS, BMD was compared between patients with and without previous fractures and according to the phenotypic severity of MFS. The mean age of the patients was 32.9 +/- 9.3 years (women 32.5 +/- 9.7, men 33.4 +/- 8.6), mean height was 180.3 +/- 10.3 cm (women 176.3 +/- 9.2, men 188.1 +/- 7.5) and mean body mass index 20.9 +/- 3.6 kg/m(2) (women 20.8 +/- 3.4, men 20.95 +/- 3.97). Hyperlaxity score (Beighton criteria) was 6.9 +/- 1. 1. Six patients (10%) had a previous fracture. Thirty per cent of patients had had at least one previous operation for scoliosis, aortic dilatation or eye problems. BMD values in the 60 patients were as follows: Z-score of the hip, -1.26 +/- 0.93, p<10(-9) (neck, -0.93 +/- 1.09, p<10(-9); trochanter, -1.31 +/- 0.85, p<10(-9); intertrochanter, -1.39 +/- 0.99, p<10(-9); Ward's triangle, -0.93 +/- 1.88, p<10(-9)); Z-score of the radius: -1.6 +/- 1.06, p<10(-9) (1/3 proximal, -1.29 +/- 1.03; mid-radius, -1.94 +/- 1.04; ultradistal, -0.68 +/- 1.1, p<10(-9)). The decrease in BMD was similar in men and women at both the hip and the radius. BMD in MFS patients was significantly decreased at cortical compared with trabecular sites (radius 1/3 proximal vs ultradistal, p<0.0001; total femur vs Ward's triangle, p<0.0005). No difference in BMD was found between MFS patients with or without previous fractures and those with severe or less severe phenotypic expression of MFS. An influence of height and weight in MFS on BMD is suspected. Osteocalcin was not increased in our group of MFS patients. Thus both men and women with MFS have a significant deficit of BMD at the hip and radius. The decrease in BMD is present equally in both sexes and is more pronounced at predominantly cortical sites. In our group of patients we found no increase in fractures and no relation between decreased BMD and phenotypic expression of the syndrome.

Absorptiometry, Photon↗

A third major locus for autosomal dominant hypercholesterolemia maps to 1p34.1-p32.

Autosomal dominant hypercholesterolemia (ADH), one of the most frequent hereditary disorders, is characterized by an isolated elevation of LDL particles that leads to premature mortality from cardiovascular complications. It is generally assumed that mutations in the LDLR and APOB genes account for ADH. We identified one large French pedigree (HC2) and 12 additional white families with ADH in which we excluded linkage to the LDLR and APOB, implicating a new locus we named "FH3." A LOD score of 3.13 at a recombination fraction of 0 was obtained at markers D1S2892 and D1S2722. We localized the FH3 locus to a 9-cM interval at 1p34.1-p32. We tested four regional markers in another set of 12 ADH families. Positive LOD scores were obtained in three pedigrees, whereas linkage was excluded in the others. Heterogeneity tests indicated linkage to FH3 in approximately 27% of these non-LDLR/non-APOB ADH families and implied a fourth locus. Radiation hybrid mapping located four candidate genes at 1p34.1-p32, outside the critical region, showing no identity with FH3. Our results show that ADH is genetically more heterogeneous than conventionally accepted.

Adult↗

[Value of multidisciplinary consultation in diagnosis and survival of Marfan syndrome].

OBJECTIVES: To facilitate diagnosis, define a strategy for prevention and treatment and obtain further insight concerning Marfan's disease, we conducted a series of multidisciplinary consultations in French clinics. PATIENTS AND METHODS: Five specialists (a genetics specialist, a pediatrician or a rheumatologist, an ophthalmologist, and a psychologist) saw all the patients successively in the same clinic. A synthesis of the clinical files was prepared for analysis. Since the first consultation on 1 January 1995 and the study end on 30 June 1997, 494 patients (67% adults) participated in primary consultations, 143 were seen at follow-up consultations. RESULTS: The diagnosis of Marfan's disease was affirmed in 41% of the patients, disaffirmed in 48% and uncertain in 11%. Among the Marfan's patients, 75% were seen again within the framework of a multidisciplinary follow-up consultations. Annual work-up included cardiology (echocardiography with measurement of the proximal aorta diameter in search for indication for beta-blocker therapy or preventive valve replacement), ophthalmology (lens, retina) and rheumatology examinations (skeletal involvement). CONCLUSION: Early diagnosis and rigorous follow-up can help prevent ocular and cardiac complications in Marfan's disease. The multidisciplinary approach provides more precise data for diagnosis and possible phenotype-genotype correlations.

Adult↗

Marfan Database (third edition): new mutations and new routines for the software.

The Marfan database is a software that contains routines for the analysis of mutations identified in the FBN1 gene that encodes fibrillin-1. Mutations in this gene are associated not only with Marfan syndrome but also with a spectrum of overlapping disorders. The third version of the Marfan database contains 137 entries. The software has been modified to accommodate four new routines and is now accessible on the World Wide Web at http://www.umd.necker.fr

Computer Communication Networks↗

LDLR Database (second edition): new additions to the database and the software, and results of the first molecular analysis.

Mutations in the LDL receptor gene (LDLR) cause familial hypercholesterolemia (FH), a common autosomal dominant disorder. The LDLR database is a computerized tool that has been developed to provide tools to analyse the numerous mutations that have been identified in the LDLR gene. The second version of the LDLR database contains 140 new entries and the software has been modified to accommodate four new routines. The analysis of the updated data (350 mutations) gives the following informations: (i) 63% of the mutations are missense, and only 20% occur in CpG dinucleotides; (ii) although the mutations are widely distributed throughout the gene, there is an excess of mutations in exons 4 and 9, and a deficit in exons 13 and 15; (iii) the analysis of the distribution of mutations located within the ligand-binding domain shows that 74% of the mutations in this domain affect a conserved amino-acid, and that they are mostly confined in the C-terminal region of the repeats. Conversely, the same analysis in the EGF-like domain shows that 64% of the mutations in this domain affect a non-conserved amino-acid, and, that they are mostly confined in the N-terminal half of the repeats. The database is now accessible on the World Wide Web at http://www.umd.necker.fr

Computer Communication Networks↗

Marfan Database (second edition): software and database for the analysis of mutations in the human FBN1 gene.

Fibrillin is the major component of extracellular microfibrils. Mutations in the fibrillin gene on chromosome 15 (FBN1) were described at first in the heritable connective tissue disorder, Marfan syndrome (MFS). More recently, FBN1 has also been shown to harbor mutations related to a spectrum of conditions phenotypically related to MFS. These mutations are private, essentially missense, generally non-recurrent and widely distributed throughout the gene. To date no clear genotype/phenotype relationship has been observed excepted for the localization of neonatal mutations in a cluster between exons 24 and 32. The second version of the computerized Marfan database contains 89 entries. The software has been modified to accomodate new functions and routines.

Animals↗

Software and database for the analysis of mutations in the human LDL receptor gene.

The low-density lipoprotein receptor (LDLr) plays a pivotal role in cholesterol homeostasis. Mutations in the LDLr gene (LDLR), which is located on chromosome 19, cause familial hypercholesterolemia (FH), an autosomal dominant disorder characterized by severe hypercholesterolemia associated with premature coronary atherosclerosis. To date almost 300 mutations have been identified in the LDLR gene. To facilitate the mutational analysis of the LDLR gene, and promote the analysis of the relationship between genotype and phenotype, a software package along with a computerized database (currently listing 210 entries) have been created.

Base Sequence↗

Familial ligand-defective apolipoprotein B-100: simultaneous detection of the ARG3500-->GLN and ARG3531-->CYS mutations in a French population.

Familial ligand-defective apolipoprotein B-100 (FDB) is an autosomal dominant disorder leading to plasma LDL cholesterol elevation and coronary artery disease (CAD). Two specific mutations in the APOB gene--R3500Q and R3531C--induce FDB. We report an original method to detect both mutations simultaneously, based upon PCR-mediated, site-directed mutagenesis and double restriction of a unique PCR product. With this method we have investigated the prevalence of these mutations in 1,040 French patients. The R3500Q mutation was found in five probands. Genotypes were determined for 10 APOB polymorphic markers and were consistent with the common European ancestral haplotype previously reported. The only exception was one FDB proband who did not harbor the 48 repeat allele of the 3'HVR. Additionally, the first two R3531C mutations were identified in French probands. Genotypes were consistent with a previously reported haplotype, suggesting that this is another mutation of European ancestry.

Adult↗

[Contribution of genetics to pathogenicity and diagnosis of Marfan syndrome].

The anatomical substrate of Marfan's syndrome is a degeneration of elastic fibres and disorganization of the collagen. It is now known that these lesions are due to mutation of genes localised on chromosome 15. The first of them (FBN1) codes for the main constitutive protein of the elastic tissue: fibrillin 1, present mainly in structures which must resist load and stress (aortic adventitia, the suspending ligament of the lens, skin); the second (FBN2) codes for fibrillin 2: responsible for the orientation of the elastin and mainly present in cartilage, the aortic media, the bronchi, and all tissues rich in elastin. Mutations of FBN1 are very common and are associated not only with Marfan's syndrome but also fibrillinopathies: incomplete forms, neonatal forms, ectopic lens, isolated aneurysms of the thoracic aorta. The widespread distribution of fibrillin explains the pleiotropic nature of Marfan's syndrome and its clinical presentation. The variability of interfamilial expression is due to genetic heterogeneity (at least two genes) and alletic differences (different mutations of FBN1 from one family to another), also explaining mild forms due to quantitative reduction in normal fibrillin and severe forms by "negative dominance" where the fibrillin is structurally abnormal because of alteration of the polymerisation mechanism. The biologic diagnosis of fibrillopathy can be made by a protein test analysing fibrillin on a culture of the patient's fibroblast obtained by skin biopsy. At present, molecular diagnosis of the mutation within the FBN1 gene is not feasible as a routine procedure.

Abnormalities, Multiple↗

Software and database for the analysis of mutations in the human FBN1 gene.

Fibrillin is the major component of extracellular microfibrils. Mutations in the fibrillin gene on chromosome 15 (FBN1) were described at first in the heritable connective tissue disorder, Marfan syndrome (MFS). More recently, FBN1 has also been shown to harbor mutations related to a spectrum of conditions phenotypically related to MFS and many mutations will have to be accumulated before genotype/phenotype relationships emerge. To facilitate mutational analysis of the FBN1 gene, a software package along with a computerized database (currently listing 63 entries) have been created.

DNA Mutational Analysis↗

Fibulin-2: genetic mapping and exclusion as a candidate gene in Marfan syndrome type 2.

Fibulin-2 (FBLN2) is a new extracellular matrix protein that has been considered a candidate gene for Marfan syndrome type 2 (locus MFS2) based on chromosomal colocation at 3p24.2-p25 and disease phenotype. In the absence of polymorphic markers reported for FBLN2, direct sequencing of the gene was performed and two intragenic polymorphisms were identified. Linkage was excluded between FBLN2 and the MFS2 gene. Furthermore, two-point lod scores were generated between these markers and anonymous markers arrayed on the genetic map of 3p and closely linked to MFS2. These analyses placed FBLN2 at marker D3S1585.

Calcium-Binding Proteins↗