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J E Eyfjörd

Publications and source records attributed to J E Eyfjörd.

At least 19 recordsLinked to original sources

p53 abnormality and chromosomal instability in the same breast tumor cells.

To clarify the important role of the tumor-suppressor gene p53 in maintaining genetic integrity, we estimated chromosome instability and staining of overexpressed p53 protein in the same cells of five primary breast carcinomas. The method included both fluorescence immunohistochemistry and fluorescence in situ hybridization (FISH) on sections from formalin-fixed, paraffin-embedded breast cancer tissue. By using a centromeric FISH probe for chromosome 17 on interphase cells in these sections, we showed that cells with abnormal p53 protein expression had a statistically significant higher number of chromosome 17 than did cells with no p53 protein staining in the same samples as well as cells in four other tumor samples with no p53 protein staining. The samples identified positive for p53 abnormality by immunostaining were shown to have p53 mutation by constant denaturing gel electrophoresis analysis and DNA sequencing. These mutated samples were characterized by high DNA index, high S-phase, abnormal karyotype, and aneuploidy. The results strongly implicate p53 mutation as a cause for chromosomal instability and a crucial step in mammary carcinogenesis.

Breast Neoplasms↗

Mutations in exons 5-8 of the p53 gene, independent of their type and location, are associated with increased apoptosis and mitosis in invasive breast carcinoma.

In breast cancer, mutations located in the zinc-binding functional domains of the p53 gene have been reported to predict a worse prognosis and a worse response to treatment with doxorubicin, compared with mutations in other parts within exons 5-8 of the gene. Similarly, mutations in residues of p53 that directly contact DNA have been associated with a poor prognosis. To investigate whether these specific p53 mutations are associated with differences in the rate of apoptosis and/or mitosis, or expression of the anti-apoptotic Bcl-2 protein, these parameters were evaluated in 89 invasive breast cancers with a confirmed p53 mutation in exons 5-8 and in 99 tumours without a p53 mutation in exons 5-8. Neither mutations located in the zinc-binding functional domains nor mutations in residues that directly contact DNA were associated with alterations in mitotic or apoptotic activity. However, compared with the wild-type p53 tumours, both apoptotic and mitotic indices showed an approximately two-fold increase in the mutant p53 group ( p< 0. 001). The presence of a p53 mutation was also associated with the presence of tumour necrosis ( p< 0.001), high tumour grade ( p< 0. 001) and low expression of Bcl-2 ( p< 0.001). Our data support the concept that in invasive breast carcinoma, loss of p53 function is involved in enhanced proliferation rather than decreased apoptosis and that the resulting acceleration of cell turnover may enhance clonal evolution and tumour progression.

Apoptosis↗

Population-based study of risk of breast cancer in carriers of BRCA2 mutation.

BACKGROUND: Estimates of an 80-90% risk of breast cancer for carriers of germline mutations in the BRCA1 and BRCA2 genes are based on studies of families at high risk of breast cancer. Risk estimates for a population are possible if the mutation status of a representative sample of that population can be assessed. In Iceland, one common founder BRCA2 mutation occurs in 0.6% of the population. Iceland has a population-based cancer registry and a large collection of pedigrees, and estimation of cancer risk in mutation carriers is therefore possible. METHODS: We studied 575 breast-cancer patients, 541 women and 34 men unselected for family history of breast cancer. Data on cancer in first-degree relatives were available from the cancer registry. Risk of cancer was estimated by comparing the history of cancer in first-degree relatives of carriers and non-carriers. FINDINGS: 56 (10.4%) of the 541 women and 13 (38%) of the 34 men carried the 999del5 mutation. The estimated risk of breast cancer at age 50 for all female carriers of the 999del5 mutation was 17.0% (95% CI 9.1-25.9) and 37.2% (22.4-53.9) at age 70. INTERPRETATION: The results of our population-based study show that the mean risk of breast cancer in carriers of mutation in BRCA2 is lower than previously suggested. Individual risk assessment will, however, have to take account of family history.

Aged↗

BRCA2 and p53 mutations in primary breast cancer in relation to genetic instability.

The products of the BRCA breast cancer susceptibility genes have been implicated in cell cycle control and DNA repair. It has been suggested that mutations in the p53 gene are a necessary step in tumorigenesis in BRCA tumors. We tested samples from 402 breast cancer patients for germ-line BRCA2 and p53 mutations in tumors. p53 mutations are more frequent in BRCA2 mutation carriers than they are in controls. Tumors with mutations in either gene had multiple chromosomal abnormalities, as shown by cytogenetic analysis.

BRCA2 Protein↗

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Government Programs↗

BRCA2 mutation in Icelandic prostate cancer patients.

Molecular genetic analysis of prostate cancer has gained considerable attention in recent years. The hope is to find genetic markers that can help to determine which patients are likely to develop a progressive or lethal disease and would therefore benefit from early treatment. The BRCA2 gene on chromosome 13 has been associated with familial male and female breast cancer. A founder mutation in this gene has been detected in the Icelandic population. This is a 5-bp deletion that leads to an early termination and truncated protein. Clustering of prostate cancers in some of the Icelandic BRCA2 families implies that mutation carriers are at increased risk of developing cancer of the prostate. The aim of the study was to investigate this mutation in Icelandic prostate cancer patients related to BRCA2 positive breast cancer probands and to estimate the prevalence of this mutation in unselected prostate cancer patients. To examine the potential role of this mutation in prostate cancer we analyzed prostate cancer cases from 16 BRCA2 families and all available samples from individuals diagnosed with prostate cancer in Iceland over a period of 1 year. The risk ratio of prostate cancer was 4.6 (1.9-8.8) in first-degree relatives and 2.5 (1.2-4.6) in second-degree relatives of the 16 BRCA2 positive breast cancer probands. Of 26 prostate cancer cases found in these families 12 were analyzed, and 8 of these (66.7%) had the BRCA2 mutation. All of these patients developed an advanced disease, and all have died of prostate cancer (median survival 22.5 months). Among unselected cases 3.1% (2/65) had the mutation and developed an advanced disease as well. This specific mutation in the BRCA2 gene is found in a subset of Icelandic prostate cancer cases and appears to be a marker for poor prognosis.

Aged↗

Genomic instability and poor prognosis associated with abnormal TP53 in breast carcinomas. Molecular and immunohistochemical analysis.

Alterations of the TP53 gene were analyzed in samples from 87 primary breast cancer patients, using molecular and immunohistochemical approaches. Mutations were detected in 17% of the samples, using polymerase chain reaction (PCR) and constant denaturant gel electrophoresis (CDGE) on exons 5-8 of the TP53 gene, and were confirmed by sequencing. Abnormal TP53 protein staining was found in 55% of the primary samples, using the monoclonal TP53 antibody DO7. A statistically significant association was found between TP53 mutations and abnormal protein staining (p = 0.002). Our results suggest that dysfunction of the TP53 protein is associated with tumor progression, as we found an association between TP53 abnormalities and accumulation of genetic lesions, measured as overall allelic imbalance (AI), homogeneously staining regions (HSR) and strong ERBB2 overexpression. Furthermore, patients with TP53 mutation had a highly elevated risk of dying from breast cancer during the study period (p < 0.001, RR = 10.68) at a median follow-up time of 42 months. Abnormal TP53 staining was much more frequent than the mutations, but it was not of prognostic significance, whereas strong staining was an independent prognostic factor. We therefore conclude that loss of functional TP53 leads to genetic instability, resulting in poorer short-term prognosis, and that only strong staining of TP53, and not abnormal protein staining in general, is of prognostic significance.

Adult↗

Study of a single BRCA2 mutation with high carrier frequency in a small population.

Germ-line changes in the cancer-predisposition gene BRCA2 are found in a small proportion of breast cancers. Mutations in the BRCA2 gene have been studied mainly in families with high risk of breast cancer in females, and male breast cancer also has been associated with BRCA2 mutations. The importance of germ-line BRCA2 mutations in individuals without a family history of breast cancer is unknown. The same BRCA2 mutation has been found in 16/21 Icelandic breast cancer families, indicating a founder effect. We determined the frequency of this mutation, 999del5, in 1,182 Icelanders, comprising 520 randomly selected individuals from the population and a series of 632 female breast cancer patients (61.4% of patients diagnosed during the study period) and all male breast cancer patients diagnosed during the past 40 years. We detected the 999del5 germ-line mutation in 0.6% of the population, in 7.7% of female breast cancer patients, and in 40% of males with breast cancer. The mutation was strongly associated with onset of female breast cancer at age <50 years, but its penetrance and expression are varied. A number of cancers other than breast cancer were found to be increased in relatives of mutation carriers, including those with prostate and pancreatic cancer. Furthermore, germ-line BRCA2 mutation can be present without a strong family history of breast cancer. Comparison of the age at onset for mother/daughter pairs with the 999del5 mutation and breast cancer indicates that age at onset is decreasing in the younger generation. Increase in breast cancer incidence and lower age at onset suggest a possible contributing environmental factor.

Adult↗

Instability of chromosomes 1, 3, 16, and 17 in primary breast carcinomas inferred by fluorescence in situ hybridization.

Abnormalities of chromosomes 1, 3, 16, and 17 were examined in 203 metaphase cells from 12 cases of primary breast carcinoma using fluorescence in situ hybridization with chromosome painting probes. The most common structural abnormalities were chromosomal rearrangements, especially translocations, and chromosome 17 was most frequently involved in these types of changes. Chromosome 16 was preferentially involved in the losses and deletions, while chromosomes 1 and 17 were more involved in the gains, including amplifications, than other chromosomes. This approach has revealed a different profile of abnormalities from those normally shown by G-banding analysis. Some of these changes are likely to be novel and may be biologic or clinical importance in breast cancer.

Breast Neoplasms↗

Molecular genetics and cytogenetics of breast carcinomas: comparison of the two methods.

Molecular genetics and cytogenetics are two different approaches to studying genetic changes in breast carcinoma. We have used karyotype analysis, fluorescence in situ hybridization, and molecular analysis of allelic imbalance on chromosomes 7q and 16q and on both arms of chromosome 17, to study 85 breast carcinomas. Twenty-five of these samples gave results that could be used to compare the two methods. Sixty-nine chromosome arms were compared, of which 48 (70%) gave concordant molecular and cytogenetical results. Samples were processed for karyotyping both by harvesting directly from the fresh tissue and after selective culture for a few days. Karyotypes among the direct harvest samples matched significantly better with the molecular genetics results than karyotypes among the cultured cell preparations.

Breast Neoplasms↗

TP53 mutation analyses on breast carcinomas: a study of paraffin-embedded archival material.

The aim of this investigation was to examine the possibility of analysing TP53 mutations in archival paraffin-embedded material with the constant denaturant gel electrophoresis (CDGE) method. We extracted DNA from 193 archival primary breast carcinoma samples, diagnosed in 1981-83; further analysis was possible for 186 of these. TP53 mutations in exons 5-8 were detected with CDGE in 30 samples (16.1%) and 17 of these mutations were confirmed by sequencing. Immunohistochemistry demonstrated TP53 nuclear accumulation in 58 tumours (31%). A strong association between the presence of TP53 mutations and TP53 immunostaining was observed (P < 0.001). Our mutation and immunohistochemistry results are in agreement with other findings based on fresh tumour tissue. TP53 abnormalities were significantly related to high S-phase fraction, low oestrogen receptor (ER) content and high tumour grade. Survival of patients with TP53 abnormalities, in the group as a whole, did not differ from patients with normal TP53. Our study did, however, show that patients with abnormal TP53 had a significantly shorter post-recurrence survival (P = 0.005) than patients with normal TP53.

Amino Acid Sequence↗

A single BRCA2 mutation in male and female breast cancer families from Iceland with varied cancer phenotypes.

The BRCA2 gene on chromosome 13 has been shown to be associated with familial male and female breast cancer. Here we describe a study on BRCA2 in 21 Icelandic families, including 9 with male breast cancer. We have previously reported linkage to the BRCA2 region in an Icelandic male breast cancer family and subsequently found a strong indication of linkage to BRCA2 and the same BRCA2 haplotype in breast cancer cases from 15 additional families, indicating a common origin. We describe a five base-pair deletion in exon 9 of BRCA2 in an affected male from the male breast cancer family. The same mutation occurs in all the families with the shared BRCA2 haplotype indicating a founder effect. Among mutation carriers there are 12 males with breast cancer, which accounts for 40% of all males diagnosed with breast cancer in Iceland over the past 40 years. Three of them have no family history of breast cancer indicating that this mutation may have variable penetrance. The same BRCA2 mutation appears to be associated with different cancer phenotypes in this population including male and female breast cancer, prostate cancer, pancreas cancer and ovarian cancer.

BRCA2 Protein↗

p53 abnormalities and genomic instability in primary human breast carcinomas.

Abnormalities in the p53 tumor suppressor gene have been shown to affect cell cycle control and lead to genetic instability in cell lines of murine and human origin. We have examined genetic instability in 183 primary human breast carcinomas with and without p53 abnormalities. Mutation analysis was performed by constant denaturant gel electrophoresis and DNA sequencing, and abnormal protein expression was examined by immunohistochemical staining methods. Genetic instability was studied by detection of gene amplification, allelic loss, karyotype analysis, and fluorescent in situ hybridization. We found a significant association between p53 abnormalities and genetic instability detected by these methods.

Breast Neoplasms↗

Cytogenetic studies of breast carcinomas: different karyotypic profiles detected by direct harvesting and short-term culture.

Chromosome analysis was performed on samples from 85 consecutive patients with breast cancer by one or more of three different methods: direct harvest, culture after mechanical disaggregation, and culture after collagenase digestion. Metaphases suitable for karyotyping were obtained in 70% of the cases; direct harvest yielded metaphases in 29% and cultures without and with digestion in 40% and 59%, respectively. Chromosomal abnormalities were detected in 37 cases. Cells judged to be phenotypically abnormal in culture were twice as likely to reveal chromosomal aberrations as normal-looking cells. Eight cases showed multiclonal abnormalities. Significant differences were detected in the karyotypic profile depending on the method used. With direct harvest, the yield of complex chromosomal changes was 87%, compared to 44% after culture of digested tissue (P < 0.01), and also polyploidy was more common in direct-harvested samples. Detailed karyotypic analysis was possible in 29 primary tumors. The chromosomes most frequently involved were 1, 3, 7, 11, 16, and 17. Recurrent structural abnormalities were der(1;16)(q10;p10), i(1)(q10), del(6)(q21), and del(1)(p22). Breakpoints clustered to the centromere regions of chromosomes 1, 3, 11, 15, and 16 and to the short arms of chromosomes 7, 17, and 19. Seven of twenty-nine fully analyzed cases had a family history of breast cancer, and changes of chromosomes 1, 3, and 15 seemed to be more common in these cases. There was an association between karyotype and survival: The 3 year survival was 63% in patients with complex karyotypic changes and 92% in those without complex changes.

Breast Neoplasms↗

TP53 mutations and breast cancer prognosis: particularly poor survival rates for cases with mutations in the zinc-binding domains.

Acquired mutations in TP53 as well as immunohistochemically detectable protein expression have been implicated as prognostic factors for breast cancer. We have evaluated the relationship between mutations detected in 119 breast tumours and various clinicohistopathological indices, stratifying the mutations according to the functional domains as defined by the recent elucidation of the crystal structure of the protein. Patients with missense mutations located in regions encoding parts of the protein involved in zinc-binding had significantly decreased disease-free and overall survival relative to patients whose tumours had mutations in other domains. These results indicate that these biochemically defined domains also have biological relevance in terms of breast cancer disease course, and suggest that some mutations in TP53, more than others, can contribute to the development of clinically more aggressive and perhaps treatment resistant breast tumours. When confirmed, this will be of potential importance in predicting the clinical behaviour of breast cancer and its responsiveness to therapy.

Adult↗

TP53 mutations and abnormal p53 protein staining in breast carcinomas related to prognosis.

Abnormalities in the TP53 tumour suppressor gene were evaluated in 106 unselected breast carcinomas and compared to clinical outcome of the disease. Tumours were screened for p53 abnormalities using immunohistochemical staining and polymerase chain reaction-constant denaturant gel electrophoresis (PCR-CDGE) analysis, followed by PCR and direct sequencing. Allelic loss at the TP53 locus was determined with polymorphic markers by comparing normal and tumour DNA. For approximately half of the patients, abnormal p53 protein expression in serum was determined by an ELISA assay. p53 abnormalities, detected as mutations and/or nuclear staining, were found in 37.6 (38/101) of cases. Nuclear staining for p53 protein could be identified in 33.7% of the tumours. Mutations in exons 5-8 were detected in 18.9% of the tumours, and an association was found between mutations and nuclear staining. Allelic loss in the TP53 region on 17p was more frequent in tumours showing changes in the TP53 gene (72.7%) compared to tumours with no mutation (45.8%). Serum levels of p53 antibodies showed no association with either TP53 mutations or nuclear staining. Women with TP53 mutations in their tumours had an elevated risk of dying during the study period (RR (relative risk) = 3.4, P = 0.014). The effects of p53 positive staining were similar (RR = 3.2, P = 0.013). Considering all abnormalities, mutation and/or staining, the relative risk of dying from breast cancer was 3.5 (P = 0.008).

Adult↗

TP53 abnormalities and genetic instability in breast cancer.

TP53 abnormalities in breast carcinomas and inherited TP53 changes in breast cancer patients and in Li-Fraumeni-like families were looked for. Tumours were screened for mutations in the TP53 gene by means of the PCR-CDGE method followed by PCR and direct sequencing. Allelic loss was determined by polymorphic markers, by comparing normal and tumour DNA. Abnormal protein expression was examined by immunohistochemical staining. TP53 abnormalities in the tumours were examined in relation to genetic instability, clinical data and family history. Genetic instability was studied by detection of oncogene amplification, allelic loss, karyotype analysis and fluorescent in situ hybridization, FISH. Our studies showed that TP53 abnormalities were significantly associated with amplification of the erbB2 oncogene and allelic loss on chromosome 17. Chromosomal abnormalities were also significantly more common in tumours with TP53 abnormalities. Looking at clinical data we found significant association between TP53 abnormalities and poor prognosis.

Alleles↗