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R Wooster

Publications and source records attributed to R Wooster.

At least 37 records · Page 2Linked to original sources

Cancer risks in two large breast cancer families linked to BRCA2 on chromosome 13q12-13.

The penetrance of the BRCA2 gene on chromosome 13q12-13 has been estimated in two large, systematically ascertained, linked families, by use of a maximum-likelihood method to incorporate both cancer-incidence data and 13q marker typings in the families. The cumulative risk of breast cancer in female gene carriers was estimated to be 59.8% by age 50 years (95% confidence interval [95% CI] 25.9%-78.5%) and 79.5% by age 70 years (95% CI 28.9%-97.5%). The cumulative risk of breast cancer in male carriers was estimated to be 6.3% (95% CI 1.4%-25.6%) by age 70 years. There was no evidence of any risk difference between the two families. These results indicate that the lifetime breast cancer risk in BRCA2 carriers, for at least a subset of mutations, is comparable to that for BRCA1. A significant excess of ovarian cancer in gene carriers was observed (relative risk 17.69, based on three cases), but the absolute risk of ovarian cancer was less than that reported for BRCA1. Significant excesses of laryngeal cancer (relative risk 7.67, based on two possible carriers) and prostate cancer (relative risk 2.89, based on five possible carriers) were also observed. One case of ocular melanoma, as well as a second eye cancer of unspecified histology, occurred in obligate gene carriers.

BRCA2 Protein↗

The BRC repeats are conserved in mammalian BRCA2 proteins.

The breast cancer susceptibility gene BRCA2 encodes a protein of 3418 amino acids which does not exhibit substantial sequence similarity to any other protein in the public databases. A dot matrix comparison of BRCA2 with itself revealed an eight times repeated motif in the segment of the protein encoded by exon 11. As a preliminary test of the hypothesis that these motifs are functionally significant, we have sequenced exon 11 of BRCA2 in six mammals. An alignment of the predicted protein sequences shows that, overall, the motifs have been conserved while much of the intervening sequences has diverged. These data support the notion that the BRC motifs are important in BRCA2 function. There is, however, considerable interspecies variation within certain motif units, raising the possibility of redundancy and that not all of the repeats are required for the normal function of BRCA2.

Amino Acid Sequence↗

Cloning, chromosomal mapping and expression pattern of the mouse Brca2 gene.

A proportion of human breast cancers result from an inherited predisposition to the disease. Mutations in the BRCA2 gene confer a high risk of breast cancer and are responsible for almost half of these cases. The recent cloning of the human BRCA2 gene has revealed that it encodes a large protein having little significant homology to known proteins. Here we describe the mouse Brca2 gene. The gene maps to mouse chromosome 5, consistent with its location on human chromosome 13q12. We have sequenced cDNA for the entire 3329 amino acid Brca2 protein and this has revealed that, like Brca1, Brca2 is relatively poorly conserved between humans and mice. Brca2 is transcribed in a diverse range of mouse tissues, and the pattern of expression is strikingly similar to that of Brca1. Taken together, our data highlight some intriguing similarities between two genes involved in inherited breast cancer susceptibility.

Amino Acid Sequence↗

Hereditary predisposition to breast cancer.

The breast cancer susceptibility gene on chromosome 17q, BRCA1, has now been isolated. Mutations in this gene have been detected in many families with a predisposition to breast cancer. Most of these mutations result in truncation and presumed inactivation of the BRCA1 protein. A large number of distinct mutations have been reported, although some families have identical mutations, probably due to a founder effect. Certain evidence suggests that mutations positioned towards the 5' end of the gene carry a higher risk of ovarian cancer than those at the 3' end. BRCA1 is infrequently somatically mutated in sporadic breast or ovarian cancer. The BRCA2 gene has been localized to chromosome 13q12-q13. BRCA2 carries a risk of breast cancer similar to that of BRCA1, but is associated with a lower risk of ovarian cancer and a higher risk of male breast cancer. Additional breast cancer susceptibility genes probably exist, but may be difficult to locate by conventional methods.

BRCA1 Protein↗

BRCA2 mutations in primary breast and ovarian cancers.

The second hereditary breast cancer gene, BRCA2, was recently isolated. Germline mutations of this gene predispose carriers to breast cancer, and, to a lesser extent, ovarian cancer. Loss of heterozygosity (LOH) at the BRCA2 locus has been observed in 30-40% of sporadic breast and ovarian tumours, implying that BRCA2 may act as a tumour suppressor gene in a proportion of sporadic cases. To define the role of BRCA2 in sporadic breast and ovarian cancer, we screened the entire gene for mutations using a combination of techniques in 70 primary breast carcinomas and in 55 primary epithelial ovarian carcinomas. Our analysis revealed alterations in 2/70 breast tumours and none of the ovarian carcinomas. One alteration found in the breast cancers was a 2-basepair (bp) deletion (4710delAG) which was subsequently shown to be a germline mutation, the other was a somatic missense mutation (Asp3095Glu) of unknown significance. Our results suggest that BRCA2 is a very infrequent target for somatic inactivation in breast and ovarian carcinomas, similar to the results obtained for BRCA1.

Aged↗

Consistent loss of the wild type allele in breast cancers from a family linked to the BRCA2 gene on chromosome 13q12-13.

A small proportion of breast cancer is attributable to the inheritance of dominant, high penetrance susceptibility genes. One of these genes, BRCA2, has recently been localised by genetic linkage analysis to chromosome 13q12-13. This is a region known to exhibit loss of heterozygosity in 20-40% sporadic breast cancers. In this study, we have examined cancers from a family showing strong evidence of linkage to BRCA2. LOH was seen in seven out of eight informative cancers. In all cases the allele lost was the wild type allele that does not segregate with the disease in the family. The data suggest that both alleles of BRCA2 are inactivated in cancers, the pattern expected of a recessive oncogene or tumour suppressor gene.

Alleles↗

Microsatellite instability in human testicular germ cell tumours.

DNA samples obtained from 29 testicular germ cell tumours have been screened for instability at nine different microsatellite sequences consisting of dinucleotide, trinucleotide and tetranucleotide loci. Overall, in tumours from six (21%) patients we found abnormalities in at least one of the loci examined. Mutation was most frequently found in tetranucleotide and trinucleotide repeats with only a low proportion of alterations in dinucleotide repeats. This pattern of instability is distinct from that reported in colorectal cancer and other cancers that have a high level of alterations in dinucleotide repeats.

Adult↗

Familial cylindromatosis (turban tumour syndrome) gene localised to chromosome 16q12-q13: evidence for its role as a tumour suppressor gene.

The human skin is a complex organ composed of the surface epidermis, the subjacent dermis (in which blood vessels, lymphatics and nerves are located) and the skin appendages. The latter include hair follicles, sebaceous glands (which secrete lipids that may serve as a permeability barrier, emollient or antimicrobial agent), apocrine glands (which secrete scents) and eccrine glands (which produce sweat for temperature control). Hereditary cylindromatosis (MIM 123850) is a rare autosomal dominant disease characterised by the development of multiple neoplasms originating from the skin appendages. These neoplasms have been termed cylindromas due to their characteristic microscopic architecture and are believed to exhibit apocrine or eccrine differentiation. We have carried out a genome search using two families with this disease, which has provided strong evidence for linkage of cylindromatosis to loci on chromosome 16q12-q13. Using markers close to the cylindromatosis gene, consistent loss of the wild-type allele was observed in 19 tumours from four individuals in the two families, indicating that the gene is likely to be a tumour suppressor gene.

Carcinoma, Adenoid Cystic↗

Localization of a breast cancer susceptibility gene, BRCA2, to chromosome 13q12-13.

A small proportion of breast cancer, in particular those cases arising at a young age, is due to the inheritance of dominant susceptibility genes conferring a high risk of the disease. A genomic linkage search was performed with 15 high-risk breast cancer families that were unlinked to the BRCA1 locus on chromosome 17q21. This analysis localized a second breast cancer susceptibility locus, BRCA2, to a 6-centimorgan interval on chromosome 13q12-13. Preliminary evidence suggests that BRCA2 confers a high risk of breast cancer but, unlike BRCA1, does not confer a substantially elevated risk of ovarian cancer.

Breast Neoplasms↗

Instability of short tandem repeats (microsatellites) in human cancers.

The allele sizes of polymorphic microsatellite repeats in DNA from human cancers were compared to normal DNA from the same patients. In 16 out of 196 paired samples (8%), we found evidence of an extra allele of a different size in the tumour which was not present in the normal DNA. Sequence analysis confirmed that the extra allele originates from the appropriate locus and that the size change is attributable to alteration in the number of repeat units. This form of instability was more common in tri- and tetranucleotide repeats than in dinucleotide repeats. In any single tumour sample only one repeat in the set examined was abnormal, the remainder showing identical patterns in normal and tumour DNA or evidence of allele loss. The pattern of instability in diverse types of cancer differs from that reported in colorectal neoplasms.

Alleles↗

Familial male breast cancer is not linked to the BRCA1 locus on chromosome 17q.

Breast cancer in men is about a hundredfold less common than in women and this has hindered research into its genetic basis. We have examined 22 families with at least one case of male breast cancer for linkage to the hereditary breast and ovarian cancer locus, BRCA1, on chromosome 17q. We found strong evidence against linkage to BRCA1 (lod score-16.63) and the best estimate of the proportion of linked families was 0% (95% CI 0-18%). Our results indicate that there is a gene(s) other than BRCA1 which predisposes to early-onset breast cancer in women and which confers a higher risk of male breast cancer. Identification of additional pedigrees that include cases of male breast cancer may therefore facilitate the mapping and isolation of this gene.

Breast Neoplasms↗

Drug and xenobiotic glucuronidation catalysed by cloned human liver UDP-Glucuronosyltransferases stably expressed in tissue culture cell lines.

Two human UDP-Glucuronosyltransferase (UGT) cDNA clones were stably integrated into V79 chinese hamster fibroblast cells and the functional enzymes were expressed in this heterologous environment. More than 100 drugs and xenobiotics were used as substrates for glucuronidation, catalysed by the cloned UGTs to determine the chemical structures accepted as substrates. UGT HP1 exhibited a limited specificity for planar phenolic compounds, whereas UGT HP4 was more promiscuous in acceptance of non-planar phenols, anthraquinones, flavones, aliphatic alcohols, aromatic carboxylic acids, steroids and many drugs of varied structure. These conclusions are illustrated here by using a series of alkyl- and halophenols. This work indicates the considerable potential value in use of these recombinant cell lines to study human drug glucuronidation.

Animals↗

Absence of linkage to the ataxia telangiectasia locus in familial breast cancer.

Heterozygotes for ataxia-telangiectasia (AT) are known to have an increased risk of breast cancer. The gene (or genes) responsible for almost all cases of AT has been localised to chromosome 11q by genetic linkage analysis. To examine the possibility that AT heterozygosity may account for a substantial proportion of familial breast cancer, we have typed five markers on chromosome 11q in 16 breast cancer families. We have found no evidence for linkage between breast cancer and chromosome 11q markers and conclude that the contribution of AT to familial breast cancer is likely to be minimal.

Ataxia Telangiectasia↗

A germline mutation in the androgen receptor gene in two brothers with breast cancer and Reifenstein syndrome.

Breast cancer in men is rare--among the risk factors that have been identified are a family history of breast cancer and evidence of androgen insufficiency. We report a family in which two brothers who both developed breast cancer had clinical and endocrinological evidence of androgen resistance. Sequence analysis revealed a mutation in the androgen receptor gene on the X chromosome, within the region encoding the DNA binding domain. This is the first report of a germline mutation in a member of the steroid/thyroid hormone receptor superfamily associated with the development of cancer.

Aged↗

Chromosomal assignment of human phenol and bilirubin UDP-glucuronosyltransferase genes (UGT1A-subfamily).

DNA probes were prepared from the 5'-terminal portion of four cDNA clones encoding human phenol and bilirubin UDP-glucuronosyltransferases (UGTs). An additional sequence common to all four clones was isolated from the 3'-terminal portion of one of the clones (UGT1A1). The four specific and the one common DNA sequences were used as probes on a panel of 16 human--rodent somatic cell hybrid DNAs by Southern-blot analysis. The results obtained indicate that all four cDNA clones are encoded by gene(s) located on human chromosome 2.

Animals↗

Cloning and stable expression of a new member of the human liver phenol/bilirubin: UDP-glucuronosyltransferase cDNA family.

A new human liver UDP-glucuronosyltransferase (HlugP4) has been cloned and expressed in cell culture. The expressed enzyme has a molecular mass of 56 kDa and preferentially catalysed the glucuronidation of halogenated and bulky alkyl phenols. The C-terminal half of the sequence (246 amino acids) is 96% identical with the same portion of HlugP1, whereas the N-terminal half of the deduced protein sequences are only 38% identical. These results suggest that the two isoenzymes may be derived from the same gene by differential splicing of the gene product.

Amino Acid Sequence↗