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S Mazoyer

Publications and source records attributed to S Mazoyer.

30 records · Page 2Linked to original sources

Germline mutations of the BRCA1 gene in breast and ovarian cancer families provide evidence for a genotype-phenotype correlation.

Mutations in the BRCA1 gene, discovered in 1994, are associated with an 80-90% lifetime risk of breast cancer. We have analysed 60 families with a history of breast and/or ovarian cancer for germline mutations in BRCA1. Twenty-two different mutations were detected in 32 families (53%), of which 14 are previously unreported. We observed a significant correlation between the location of the mutation in the gene and the ratio of breast to ovarian cancer incidence within each family. Our data suggest a transition in risk such that mutations in the 3' third of the gene are associated with a lower proportion of ovarian cancer. Haplotype analysis supports previous data which suggest some BRCA1 mutation carriers have common ancestors; however, we have found at least two examples where recurrent mutations appear to have arisen independently.

BRCA1 Protein↗

Localisation of the breast-ovarian cancer susceptibility gene (BRCA1) on 17q12-21 to an interval of < or = 1 cM.

A breast-ovarian cancer susceptibility gene, BRCA1, which is responsible for disease in approximately 45% of breast cancer families and most families that contain breast and ovarian cancer, has been assigned by genetic linkage to 17q12-21. Here, we report the analysis of three marker-disease recombinants in families that contain breast and ovarian cancer, two of which strongly suggest a location for BRCA1 telomeric to D17S702, a microsatellite polymorphism, and a third which suggests a location centromeric to EDH17B, the gene encoding estradiol-17B dehydrogenase. If the interpretation of these recombinants is correct, the results localise BRCA1 to an interval of < or = 1 cM.

Adult↗

Detailed deletion mapping of chromosome segment 17q12-21 in sporadic breast tumours.

Linkage studies have indicated that a gene on chromosome arm 17q, designated BRCA1, confers susceptibility to familial breast and ovarian cancer. To investigate the possible involvement of the BRCA1 gene in sporadic breast cancer we have analysed loss of heterozygosity (LOH) in a panel of 100 sporadic primary breast tumours using 10 PCR-based polymorphic markers from 17q12-21. Allele losses were detected in 40 of 100 tumours informative for at least one of the markers analysed. Of these 40 deleted tumours, 27 showed partial or interstitial loss on 17q. The pattern of LOH in the tumours with partial or interstitial LOH revealed three putative distinct deleted regions on 17q12-21. The first lies on the proximal long arm between D17S250 and THRA1; the second one lies between D17S776 and D17S579, the region containing the BRCA1 gene; and the third is telomeric to D17S733. The most frequently deleted region overlaps with the minimal region containing the BRCA1 gene, suggesting that this gene might also be associated with the development or progression of a proportion of sporadic breast tumours.

BRCA1 Protein↗

A physical map and candidate genes in the BRCA1 region on chromosome 17q12-21.

We have constructed a physical map of a 4 cM region on chromosome 17q12-21 that contains the hereditary breast and ovarian cancer gene BRCA1. The map comprises a contig of 137 overlapping yeast artificial chromosomes and P1 clones, onto which we have placed 112 PCR markers. We have localized more than 20 genes on this map, ten of which had not been mapped to the region previously, and have isolated 30 cDNA clones representing partial sequences of as yet unidentified genes. Two genes that lie within a narrow region defined by meiotic breakpoints in BRCA1 patients have been sequenced in breast cancer patients without revealing any deleterious mutations. These new reagents should facilitate the identification of BRCA1.

Autoantigens↗

Familial site-specific ovarian cancer is linked to BRCA1 on 17q12-21.

In a study of nine families with "site-specific" ovarian cancer (criterion: three or more cases of epithelial ovarian cancer and no cases of breast cancer diagnosed at age < 50 years) we have obtained evidence of linkage to the breast-ovarian cancer susceptibility gene, BRCA1 on 17q12-21. If the risk of cancer in these families is assumed to be restricted to the ovary, the best estimate of the proportion of families linked to BRCA1 is .78 (95% confidence interval .32-1.0). If predisposition to both breast and ovarian cancer is assumed, the proportion linked is 1.0 (95% confidence interval .46-1.0). The linkage of familial site-specific ovarian cancer to BRCA1 indicates the possibility of predictive testing in such families; however, this is only appropriate in families where the evidence for linkage to BRCA1 is conclusive.

BRCA1 Protein↗

Two germ-line mutations affecting the same nucleotide at codon 257 of p53 gene, a rare site for mutations.

Codon 257 of the p53 gene is an extremely rare target for somatic mutations (accounting for only two of 1600 published mutations). We report here two constitutional mutations both affecting the second nucleotide of codon 257. A thymine to adenine transversion resulting in an amino acid change from leucine to glutamine was found in one proband who developed multiple independent malignant tumors (osteosarcoma, phyllodes tumor, soft-tissue sarcoma). Her mother died of early-onset breast cancer. In the other case, a deletion resulting in a frameshift in the C-terminal coding region of p53 was found in a woman who was diagnosed with breast cancer at age 34. This woman belongs to a family with features of Li-Fraumeni syndrome. In both cases, the p53 mutations identified in the proband was found in other members of the family. Codon 257, even if rarely mutated in somatic cells, may thus be an important target for germ-line mutations.

Adult↗

Linkage analysis of 19 French breast cancer families, with five chromosome 17q markers.

Nineteen French breast and breast-ovarian cancer families were tested for linkage with five chromosome 17q markers. The five breast-ovarian cancer families as a group give positive evidence for linkage, whereas the 14 breast cancer-only families do not. Heterogeneity of linkage of breast and breast-ovarian cancers is significant in France and supports the existence of more than one susceptibility gene.

Adult↗

Familial ovarian carcinoma: pedigree studies and preliminary results from linkage analysis.

Thirty-seven ovarian cancer-prone families have been identified through a French co-operative network. Three main clinical presentations were observed: site-specific ovarian cancer, breast/ovarian carcinoma syndrome and Lynch syndrome II. An additional kindred with features of Li-Fraumeni syndrome is reported. It is expected that a better understanding of the mechanisms of carcinogenesis will allow the development of new methods of screening and treatment. With this aim, recent studies have mapped the gene for early-onset familial breast cancer and breast/ovarian carcinoma syndrome to the same locus in the chromosome 17q12-q23 region. Results from linkage analysis of two breast/ovarian carcinoma families and three breast cancer families favour the hypothesis of genetic heterogeneity among breast and ovarian tumors.

Adult↗

[Hereditary predisposition for cancer of the breast and the ovary].

Familial breast cancers represent about 10% of all cases of breast cancers. A predisposition locus has been located in the 17q21 chromosomal region. Nineteen French breast and breast-ovarian cancer families were tested for linkage with five highly polymorphic 17q markers. The five breast-ovarian cancer families as a group give positive evidence for linkage, whereas the 14 breast cancer families do not. Heterogeneity of linkage of familial breast cancer is significant in France and supports the existence of more than one susceptibility gene.

Adult↗

Genetic heterogeneity of early-onset familial breast cancer.

A gene for early-onset familial breast cancer has recently been mapped to the chromosome 17q12-23 region. In order to confirm the gene location, we have tested an extensive early-onset breast cancer family with 4 markers in this chromosome region. Linkage was negative with all 4 markers. This study suggests that there is genetic heterogeneity among early-onset breast cancer families.

Base Sequence↗

Five distinct deleted regions on chromosome 17 defining different subsets of human primary breast tumors.

In this study, we analyzed 105 paired sporadic primary breast tumor and normal tissue samples for loss of heterozygosity (LOH) on chromosome 17, using 12 polymorphic markers. We have identified partial or interstitial LOH in five separate regions of chromosome 17. Two of the deleted regions lie on the short arm of the chromosome, the first (region I, D17S5) in the telomeric part, distal to TP53 and the second spanning the TP53 gene (region II). Three of the five deleted regions lie on the long arm of chromosome 17: region III, on the proximal long arm between D17S250 and THRA1; region IV, between D17S776 and D17S579, including the BRCA1 gene, and region V, located distal to D17S733. No statistically significant correlations were observed between clinicopathological characteristics or steroid hormone receptor status and deletion of either region I or II. However, patients whose tumors had LOH for region I showed relapse or death more frequently than patients with tumors informative for this region but without LOH (p = 0.002). Statistically significant correlations between LOH at each of the three deleted regions of 17q and a high mitotic index were observed (region III, p = 0.005; region IV, p = 0.02, and region V, p = 0.004). In addition, LOH at region IV showed a significant association with paucity of estrogen receptors (p = 0.01). Our results show a complex pattern of LOH on chromosome 17 in breast cancer and a correlation of these events with different clinical parameters. This pattern suggests that particular subsets of allele loss may contribute specifically to different clinically defined subsets of sporadic breast tumors.

Adult↗