Search PubMed⌕ Search

Biomedical subjects

F Demenais

Publications and source records attributed to F Demenais.

At least 73 records · Page 4Linked to original sources

Evidence for the segregation of a major gene in human susceptibility/resistance to infection by Schistosoma mansoni.

Severe clinical disease caused by the major human parasite Schistosoma mansoni is the consequence of high and prolonged infections. Epidemiological studies indicate that, for individuals having frequent contacts with cercaria-infested waters, both infection intensities and reinfection after treatment depend, in large part, on their intrinsic susceptibility/resistance to infection, suggesting the role of genetic factors in human resistance to S. mansoni. To investigate whether a major gene controls human susceptibility/resistance to infection by S. mansoni, segregation analysis of infection intensities, adjusted for the factors relevant in schistosomiasis (water contact, age, sex), was performed on 20 Brazilian pedigrees (269 individuals), using both the unified mixed model and the regressive model of analysis. The results are consistent with the hypothesis that there is a codominant major gene controlling human susceptibility/resistance to infection by S. mansoni. Parameter estimates indicate a frequency of .20-.25 for the deleterious allele; thus, about 5% of the population is predisposed to high infections, 60% is resistant, and 35% has an intermediate, although fairly good, level of resistance. These findings provide a genetic basis for earlier observations on the lower resistance and the predisposition to reinfection of certain individuals. In addition to the detection of a major gene effect, the data suggest that immunity to S. mansoni develops progressively during childhood to reach a maximum around the age of puberty. The implications of these results for the strategy to be used in endemic areas to reduce morbidity and to control parasite transmission are discussed.

Age Factors↗

Investigation of factor VIII:C gene restriction fragment length polymorphisms and search for deletions in hemophiliac subjects in Algeria.

The frequency of alleles for intragenic (intron 17 and intron 25) and extragenic (DXS15 and DXS52) F8C RFLPs was investigated in the Algerian population. Altogether 287 X chromosomes (97 males and 95 females) were studied. The allele frequencies found with the two intragenic F8C RFLPs were not substantially different from those reported in a Mediterranean population. At the highly polymorphic extragenic DXS52 locus the distribution in Algeria differed from that found in France. A new allele (14 kb), called 1 DZ, was found in 3.1% of the chromosomes. Fifty-one families with hemophilia A were studied with the same probes (374 subjects). Of the females, 94% were informative for at least one intra- or extragenic RFLP. Two recombinations were found between DXS52 and F8C, of which one occurred between the DXS15, DXS52 block and F8C, indicating that the two anonymous loci are on the same side of the F8C gene. Only two obvious gene deletions were observed in 73 unrelated hemophiliacs: one encompassed exons 14-22 (about 4.3 kb of cDNA and 36 kb of genomic DNA); the other removed the last exon (exon 26, representing 2 kb of cDNA).

Algeria↗

Familial susceptibility to breast cancer: a complex inheritance.

The main results of segregation analysis aimed at identifying a major genetic factor involved in susceptibility to breast cancer are reviewed. They show that the existence of a single major gene is not sufficient to explain the distribution of the disease observed in the families concerned and suggest that the genetic inheritance involved is heterogeneous and complex. Heterogeneity has been explored in various studies according to epidemiological criteria. From these analyses, genetically homogeneous subgroups emerged (for instance families with breast cancer only or with affected males). The study of such homogeneous subgroups might help to better locate the susceptibility gene(s) on the chromosome map by analysis of genetic linkage using different markers. The results of segregation analysis depend on how epidemiological factors are taken into account. It is of major importance that epidemiological data on the proband (i.e., the individual prompting selection of a family) as well as on the members of his/her family are taken into consideration to improve understanding of the complexity of breast cancer transmission.

Breast Neoplasms↗

Robustness of the unified model to shared environmental effects in the analysis of dichotomous traits.

Simulation studies were conducted to assess to what extent the conclusions of segregation analysis, performed under the unified model, can be affected by the presence of unmeasured environmental factors shared by family members. Dichotomous data were generated on six-member nuclear families under two variants of the mixed model, incorporating environmental effects shared by all family members. When the generating model includes a polygenic component and a shared environmental effect, there is false detection of a major gene, especially when the joint likelihood of parents' and offspring's phenotypes is computed. The proportion of false conclusions increases as the shared environmental effect increases. On the other hand, the presence of a shared environmental effect in addition to a major gene component does not alter the detection of the major gene nor the transmission probability estimates, which are close to the expected Mendelian values. The rejection of the Mendelian transmission hypothesis, as observed in familial analyses of affected disorders, might be the result of mechanisms other than those considered here, such as more complex sources of environmental resemblance or a possible genetic heterogeneity.

Affective Disorders, Psychotic↗

Modeling the age-of-onset function in segregation analysis: a causal scheme for leprosy.

Several methods have been proposed to take into account the variable age of onset of a disease in genetic analysis. A different approach is presented from an etiological point of view. To illustrate the method, we used leprosy, an infectious disease with a variable age of onset depending on both the time of contamination with the bacillus and the latency of the disease; the role of a major gene in the susceptibility to this disease has been recently detected. The age-of-onset function was modeled to account for the two temporal processes: contamination event and incubation period. For genetic analysis, this function was combined with the probability of being susceptible to the disease, which was expressed by the use of regressive models. To test this new approach, ten sets of 500 nuclear families were simulated considering different hypotheses of contamination risks, which were either constant or dependent on contacts with contagious leprosy patients, and varying the extent to which the disease is heritable. Analyses of these data using two versions of the model indicate that the model can detect familial correlations in variable age of onset and discriminate between the different simulated effects.

Adolescent↗

Genetic susceptibility to leprosy on a Caribbean Island: linkage analysis with five markers.

Our recent segregation analysis, carried out on 27 large pedigrees from a Caribbean island (Desirade), has shown the presence of recessive major gene(s) controlling susceptibility to leprosy per se and nonlepromatous leprosy, respectively. Linkage analysis was performed between each of these two detected genes and each of five markers typed in the Desirade population: HLA, ABO, Rhesus, Gm and Km. No positive significant lod score was observed. However, for leprosy per se close linkage was excluded with Rhesus and Gm (and also with ABO and HLA, considering a lower value for the frequency of the gene controlling susceptibility to leprosy per se). The highest lod score, although not significant, was obtained between the gene for nonlepromatous leprosy and ABO. Our overall results, joined with previous studies and experimental data, suggest that the gene controlling susceptibility to leprosy per se and that controlling susceptibility to nonlepromatous leprosy might be different, acting at successive stages of the immune response to infection with Mycobacterium leprae.

ABO Blood-Group System↗

Genetic analysis of human breast cancer: implications for family study designs.

Genetic analysis of human breast cancer, as with many common diseases, raises several problems including sampling strategies, genetic heterogeneity, and gene-environment interactions. A reanalysis of 200 Danish breast cancer pedigrees, under the unified mixed model, was conducted to investigate more specifically these three points. We found that use of different sampling schemes leads to similar conclusions: familial transmission of breast cancer in this whole Danish sample cannot be accounted for by the Mendelian segregation of a dominant gene. Homogeneity tests, based on an a priori subdivision of the sample, were all nonsignificant under a given genetic model. However, it was possible to isolate a particular subgroup of pedigrees displaying only breast cancer, which was compatible with the segregation of a dominant gene. We have also shown that correct specification of a liability indicator according to epidemiological factors is of major importance to detect a major effect under the mixed model. Our results emphasize the need to design family studies including various types of information in the probands and family members to permit some progress in the understanding of complex diseases.

Breast Neoplasms↗

Detection of linkage between a quantitative trait and a marker locus by the lod score method: sample size and sampling considerations.

A simulation study is here conducted to measure the power of the lod score method to detect linkage between a quantitative trait and a marker locus in various situations. The number of families necessary to detect such linkage with 80% power is assessed for different sets of parameters at the trait locus and different values of the recombination fraction. The effects of varying the mode of sampling families and the sibship size are also evaluated.

Computer Simulation↗

[Endocrine polyadenomatosis of 2a type (MEN 2a). Clinical and genetic study of a family].

In a large kindred with multiple endocrine neoplasia type 2a (MEN 2a) (137 members, 5 generations), bilateral thyroid medullary carcinoma was found in all affected members. Pheochromocytoma was present in 59% of the cases, and was responsible at least for 4 out the 5 deaths related to MEN 2a. Hyperparathyroidism was less frequent (41%). Family screening leads to a reduction in age for diagnosis and to an improvement in the prevalence of complete healing after surgery. Linkage between HLA loci and a dominant gene for MEN 2a was investigated in this kindred. Lod scores for recombination fraction were all negative (-0.47 for a recombination fraction of 0.05). These results comfort the lack of linkage between MEN 2a and the HLA complex.

Adolescent↗

Detection of major genes for susceptibility to leprosy and its subtypes in a Caribbean island: Desirade island.

To determine the nature of the genetic component controlling susceptibility to leprosy and its subtypes, complex segregation analysis, by means of the POINTER strategy, was performed on 27 multigenerational pedigrees from Desirade, a Caribbean island where leprosy is highly prevalent. The results are consistent with the presence of a recessive or codominant major gene controlling susceptibility to leprosy per se and nonlepromatous leprosy, respectively. Under the major-gene model, tests of homogeneity to check for internal consistency of the sample and to compare subsamples according to an epidemiological criterion, the place of residence of the probands, were conducted; results of none of these tests were significant. However, we have noted that information on 3 generations (nuclear families with a pointer to the sibship) is of major importance for detecting major gene(s). Besides, the discrepancy in the results obtained in separate analyses of the family subsamples defined by the place of residence of the probands is discussed in terms of possible genetic and/or environmental differences. Referring to experimental data and previous studies, we suggest that the gene for susceptibility to leprosy per se and that for susceptibility to nonlepromatous leprosy might be different, acting at successive stages of the immune response to infection with Mycobacterium leprae.

Disease Susceptibility↗

Susceptibility to human cutaneous leishmaniasis and HLA, Gm, Km markers.

A relationship between markers related to the immune response (HLA system, Gm and Km immunoglobulin allotypes) and susceptibility to cutaneous leishmaniasis was investigated in a population of Hmong refugees who had recently settled in French Guiana. Two approaches were used: 1) case/control comparisons of the marker phenotype distribution to detect possible associations; 2) multiple-case family studies to search for marker-linked genes. When the distribution of HLA-A, B, C, antigens and Gm, Km allotypes was compared between patients and controls, only a significant decrease of HLA-Cw7 antigen among leishmaniasis patients was detected (p = 0.01). No interaction between any two of these markers and the disease was found. On the other hand, neither an HLA, Gm or Km susceptibility gene could be demonstrated in the informative sets of affected siblings. These results are discussed with respect to those reported in other infectious diseases.

Disease Susceptibility↗

Studies on an isolated West Indies population: IV. Genetic study of hearing loss.

Hearing troubles were found to be very frequent among inhabitants of French origin in a small Caribbean island. Segregation analysis of hearing loss was performed in 165 complete nuclear families and revealed that familial aggregation could be entirely explained by a single recessive gene with high frequency (0.40). Homozygous individuals for this gene would probably be more susceptible to ototoxic agents than other individuals. High frequency of this gene may be due to a founder effect.

Audiometry↗

HLA in familial malignant melanoma.

In a family displaying the familial atypical multiple-mole melanoma syndrome, linkage analyses were performed between HLA and an assumed dominant gene respectively determining each of the following affected phenotypes: precursor lesions; cutaneous malignant melanoma (CMM); and precursor lesions or CMM or both. The results suggest that there is a complex mechanism involving several factors, genetic and environmental interacting with the gene determining precursor lesions to cause the neoplastic transformation.

Adolescent↗

[HLA and leprosy].

Although there is now accumulating evidence that the host response to Mycobacterium leprae is genetically controlled, the nature of the genetic component is still imprecise. Case-control studies as well as family studies, in various populations, have shown that HLA linked factors confer susceptibility to tuberculoid leprosy and lepromatous leprosy respectively. Recently, associations between Gm allotypes and the disease have also been reported. Further studies of the familial cosegregation of the different forms of leprosy together with the HLA and Gm markers may permit a better understanding of the underlying genetic mechanisms.

Chromosome Mapping↗

Robustness and power of the unified model in the analysis of quantitative measurements.

The resolution between skewness in the distribution of a quantitative trait and segregation of a major gene is a difficult issue in family studies. Quantitative data were simulated on six-member nuclear families in order to study the behavior of the unified model under these circumstances. Replicates of 100 nuclear families were generated assuming a multifactorial model with skewness. In the range where a major gene was falsely detected in 80%-100% of the simulations analyzed under the transmission probability or mixed models, use of the unified model reduces the frequency of false inference to between 10% and 40%. This protection against a false conclusion requires estimation of the three transmission probabilities and testing hypotheses of Mendelian transmission and equal transmission probabilities. Alternatively, it was shown that use of a transformation to remove skewness induced by a major gene leads to a decrease of power of approximately 55%. These results suggest that the unified model may obviate the need to compare analyses performed on transformed and untransformed data, particularly when skewness is low (less than 0.2) or high (greater than 0.4). For intermediate skewness (0.2-0.4), estimating segregation parameters under the mixed model simultaneously with a transformation to remove residual skewness can be considered as an alternative method.

Genetics, Medical↗

A linkage study between HLA and cutaneous malignant melanoma or precursor lesions or both.

In seven pedigrees displaying the familial atypical multiple mole-melanoma (FAMMM) syndrome, three successive linkage analyses were performed between HLA and an assumed dominant gene determining respectively each of the following affected phenotypes: (1) precursor lesions, (2) cutaneous malignant melanoma (CMM), and (3) precursor lesions or CMM or both. Close linkage could be excluded in (1) and (3). However, if the transmission of malignant melanoma itself were assumed to be due to a single gene different from the one responsible for precursor lesions, a maximum lod score of 1.64 was observed at a recombination fraction of 5%, assuming low penetrance values. These different results are discussed in respect to the possible mechanisms causing the familial distribution of these traits. Two alternative hypotheses were proposed. Either the FAMMM syndrome is a rare genetic entity not closely linked to HLA or the association and transmission of precursor lesions and CMM in families are due to several factors among which HLA might play a role.

Disease Susceptibility↗