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C Theillet

Publications and source records attributed to C Theillet.

At least 73 records · Page 4Linked to original sources

DNA amplification at 11q13.5-q14 in human breast cancer.

Band q13 of chromosome 11 is frequently amplified in human breast cancers, but the gene(s) responsible for the emergence of this amplicon remain(s) elusive as yet. As a tribute to the complexity of the amplification events involving 11q13 sequences in human breast cancer, we have now studied a more telomeric region at 11q13.5-q14 defined by a new transcription unit, D11S833E. We have observed that amplicons present in cell lines and primary tumors amplified for both BCL1 and D11S833E could be interrupted between these two loci. Such discontinuities were demonstrated by using a probe for the KRN1 gene, which we have localized between the BCL1/FGF4 region and D11S833E. In fact, KRN1 was not present in 4 out of 10 amplicons bearing both BCL1 and D11S833E. Furthermore, we have observed tumors in which D11S833E could be amplified in the absence of amplification of other known markers of 11q13. Therefore, D11S833E defines a new and independent amplification unit in this region.

Breast Neoplasms↗

p53 and RAS gene mutations in multiple myeloma.

We analysed genomic DNA from 30 patients with multiple myeloma (MM), searching for alterations in the p53 and RAS genes by a combination of polymerase chain reaction and single-strand conformation polymorphism techniques. Mutations in the p53 gene were observed in 20% (6 out of 30) of the patients, and were located in conserved sequence blocks within exons 5 and 7. These were single-nucleotide substitutions and consisted predominantly (4/6) of G:C to A:T transitions. Of the six patients with a mutated p53 gene, four were in the terminal phase of the disease. RAS gene mutations were found more frequently since they occurred in 47% (14 out of 30) of the patients. Mutations consisted of single-nucleotide substitutions, located in codons 12, 13 and 61 of either K- or N-RAS, to the exclusion of H-RAS. Moreover, one patient bore two simultaneous mutations, affecting simultaneously the K- and the N-RAS genes. RAS gene mutations were more frequently observed in patients with fulminating disease (10/15, 67%) than in patients with less aggressive forms of the disease (4/15, 26%). We also analysed genomic DNAs from 10 human myeloma cell lines, of which two bore mutations affecting codon 12 of the K-RAS gene, and one codon 12 of the N-RAS gene. The first two cell lines were obtained from freshly explanted tumor cells in which we observed identical mutations. Results presented here show that activating mutations in the RAS genes are, in MM, more frequent than those affecting the p53 gene and suggest that both events are related to terminal phases of the disease.

Amino Acid Sequence↗

Amplification of 11q13 DNA sequences in human breast cancer: D11S97 identifies a region tightly linked to BCL1 which can be amplified separately.

In the course of our study on the amplification of 11q13 sequences in human breast cancer, we have investigated the amplification status of the anonymous DNA fragment D11S97 in a series of 125 mammary tumors. Our results indicate that, as with bladder carcinomas, D11S97 can be amplified separately from BCL1. In addition, we have shown that D11597 is physically linked to both D11S146 and BCL1, and is less than 100 kb centromeric to the D115146. These results indicate that, in addition to other 11q13 loci, sequences located approximately 500 kb centromeric from BCL1 could contribute to carcinogenesis of epithelial cells in vivo.

Breast Neoplasms↗

Nucleotide sequence polymorphism in a hotspot mutation region of the p53 gene.

By screening for mutations in the p53 coding sequence by means of single-strand conformation polymorphism (SSCP) in a series of breast tumors we detected a novel polymorphism. This change in the SSCP pattern was detected in 6.2% of the tumor DNAs analysed and implied an A to G substitution at the last base of codon 213, thus representing a neutral change. First suspecting a somatic mutation we confirmed its presence in matched sets of DNAs from normal tissues. Extending our study to a series of 60 ovarian carcinomas and 70 healthy blood donors we noticed that this polymorphism represented only 3% and 2.6% respectively. We wondered if the difference in frequency in the breast cancer population might not be related to familial breast cancer and analysed 26 DNAs from patients showing predisposition to the disease. Two patients presented this polymorphism and one corresponding kindred was analysed, revealing a mendelian mode of transmission but no correlation with the cancer phenotype.

Base Sequence↗

D11S146 and BCL1 are physically linked but can be discriminated by their amplification status in human breast cancer.

Band q13 of chromosome 11 is frequently altered in a number of human cancers. We have undertaken physical mapping in this region, starting with D11S146, an anonymous 11q13 DNA fragment. This probe has been used by others as a landmark to locate MEN1, a locus of predisposition to multiple endocrine neoplasia. Long-range restriction mapping locates D11S146 within approximately 400 kb of the BCL1 translocation breakpoint involved in certain B-cell malignancies. BCL1 and two proto-oncogenes, INT2 and HST, were previously found to be coamplified in approximately 1/5 breast carcinomas. Although close to BCL1, D11S146 is present in less than 3/4 of these amplification units and delimits their centromeric boundary. Therefore, we propose that D11S146 defines two genetic regions. The centromeric region--PYGM/D11S146--contains MEN1. The telomeric one includes the D11S146/BCL1/INT2/HST area and is relevant to DNA amplification in carcinomas and to B-cell translocations.

Breast Neoplasms↗

Decrease of c-erbB-2 and c-myc RNA levels in tamoxifen-treated breast cancer.

The c-myc, c-erbB-2, hst and int-2 oncogenes are frequently amplified and/or overexpressed in human breast carcinomas. We studied the effect of tamoxifen on RNA levels of these oncogenes in 19 breast cancer patients treated for 3 weeks prior to surgery as compared with 22 control patients. RNA levels were measured by in situ hybridization coupled with computer-aided quantification. c-myc and c-erbB-2 expression was high in the control population (mean values: 23.4 and 29.1 grains/cell respectively) and significantly decreased in the tamoxifen-treated population (mean values: 14.6 and 7.4 grains/cell respectively) (P = 0.018, P = 0.003 respectively); hst and int-2 RNA levels were low (2-6 grains/cell) and not significantly altered by the treatment. There was a correlation between gene amplification and expression for c-erbB-2 (P = 0.0005) and hst (P = 0.02) in the control population. Elevated c-erbB-2 RNA level was correlated with the absence of estrogen (P = 0.02) or progesterone (P = 0.05) receptors. In the ER+ population, the tamoxifen-treated group had significantly lower c-myc expression levels than the control group (P = 0.04) which is in agreement with the estrogen induction of c-myc in ER+ T47D cell line and its inhibition by antiestrogens. Surprisingly, c-erbB-2 expression in the tamoxifen-treated group was significantly diminished in the ER- (P = 0.02) and PR- (P = 0.01) populations. This effect was not observed in the ER- BT474 cell line. These results suggest that in vivo tamoxifen decreases c-myc and c-erbB-2 RNA levels in breast cancer cells via two different mechanisms. To our knowledge this is the first evidence of in vivo down regulation of a gene by tamoxifen in ER- breast cancer cells.

Adult↗

BEK and FLG, two receptors to members of the FGF family, are amplified in subsets of human breast cancers.

Tumor DNA samples from 387 breast carcinomas have been investigated for amplification of BEK and FLG genes, both of which have been shown to code for cell surface receptors to FGFs. BEK and FLG were found amplified in 11.5 and 12.7% of breast tumors respectively. Statistical analysis, performed on the subset of 297 primary cancers without presurgical therapy, showed for BEK a trend of preferential amplification in patients above 50 years (P = 0.055), whereas amplification of FLG could significantly be correlated with nodal involvement (P = 0.032) and seemed prevalent in steroid hormones receptor positive tumors. Since the same tumors were previously analysed for the amplification of MYC, ERBB2 and HST/INT2/BCL1 possible associations with BEK and FLG amplifications were looked for. BEK was found significantly correlated with MYC and FLG with HST/INT2/BLC1. The amplification of these two FGF receptor genes may therefore represent additional steps in the molecular phenotyping of breast cancer.

Age Factors↗

p53 mutations in ovarian cancer: a late event?

Using a combination of polymerase chain reaction and single-strand conformation polymorphism techniques we analyzed 34 ovarian cancer samples (30 primary tumors and four matched metastases) for the presence of mutations in exons 5, 6, 7, 8 and 9 of the p53 gene. Mutations in this portion of the gene are known to lead to the loss of the oncosuppressive potential of p53. Thirty-six percent (11/30) of the ovarian carcinomas tested presented a mutated p53 allele. Mutations were clustered in exons 5 and 7 to the exclusion of the other exons screened. Most mutations (10/11) were point mutations, but no preferential pattern of nucleotide substitution could be observed. In three tumors the mutation of one allele was concomitant with the loss of the wild-type counterpart. Another sample presented both alleles independently mutated. These observations are in agreement with the recessive nature of the p53 mutation. However, analysis of tissue sections from two tumors showed that the portion composed of 100% cancer cells could hold both the mutated and the wild-type form. Moreover analysis of serial sections gave evidence of a heterogeneous cellular content in one of these tumors, suggesting that p53 mutations may, in some cases, occur late during ovarian cancer evolution. It is, moreover, noticeable that, in matched sets of primary tumors and metastases, the same mutation was observed in both tumor samples. Therefore, even as a late event, p53 mutation occurs before metastatic spread.

Amino Acid Sequence↗

Cathepsin D assay in primary breast cancer and lymph nodes: relationship with c-myc, c-erb-B-2 and int-2 oncogene amplification and node invasiveness.

In breast cancer, axillary lymph node invasiveness is the major prognostic factor in predicting relapse and metastasis. Nevertheless, since 30% of node-negative tumors also relapse, it is necessary to develop other independent prognostic factors. Oncogene amplification and the level of cathepsin D (cath-D), an acidic lysosomal protease produced and secreted in excess by breast cancer cells, have been proposed as additional prognostic factors. We have compared the cytosolic cath-D level and the amplification of three oncogenes: c-myc, neu-erb-B-2 and int-2 in 140 primary breast carcinomas and 64 axillary lymph nodes collected in 1987 and 1988 at the Cancer Center of Montpellier (Centre Paul Lamarque). None of the patients had previously received hormonal or chemotherapy. The cath-D concentration was measured with an immunoradiometric assay using monoclonal antibodies. DNA purified from the same samples was analyzed by a standard Southern blotting technique to estimate oncogene amplification. No correlation was found between the level of cath-D in the tumor and node invasiveness. Using a cut-off level of 60 pmol/mg protein, the status of cath-D was not correlated with neu-erb-B-2 and int-2 amplification and only correlated with c-myc amplification (P = 0.011). Both c-myc and cath-D are associated with cell proliferation, induced by estrogens in ER+ breast cancer, and constitutively produced in ER- breast cancer. The level of cath-D was significantly higher in the invaded lymph nodes (P = 0.04) than in the histologically non-invaded ones. Nevertheless, some non-invaded lymph nodes contained a high level of cath-D, as confirmed by immunoperoxidase staining. In conclusion, in breast cancer, a high cytosolic cath-D concentration is more frequent in tumors with c-myc amplification but is dissociated from neu-erb-B-2 or int-2 amplification, suggesting that the determination of these three markers will have an additional prognostic value.

Axilla↗

BCL-1 participates in the 11q13 amplification found in breast cancer.

In an attempt to probe the significance of HST and INT-2 gene amplification in human breast carcinomas, we have surveyed the amplification status of five molecular markers located on the long arm of chromosome 11 (BCL-1, HST, INT-2 & SEA on 11q13, and ETS-1 on 11q23) in a population of 297 mammary tumors. ETS-1 was rarely amplified and always independently from the other proto-oncogenes. Concerning band q13: (i) 50 tumors (approximately 17%) were co-amplified for BCL-1, HST & INT-2; (ii) in 3 cases, amplification extended to the SEA gene; (iii) in 6 carcinomas, BCL-1 was the only amplified marker. The fact that we never observed amplification of HST & INT-2 independently of BCL-1, which in turn can be amplified solely, suggests the presence, between HST/INT-2 and BCL-1, of a genetic element which could be important in the development of a subset of mammary tumors.

Breast Neoplasms↗

In situ detection of c-myc mRNA in adenocarcinomas, adenomas, and mucosa of human colon.

We used a sensitive RNA:RNA in situ hybridization technique to study steady-state levels of c-myc proto-oncogene mRNA in primary human colon adenocarcinomas, villous adenomas, and normal mucosa samples. Frozen tissue sections, fixed in 4% buffered paraformaldehyde, were hybridized to 35S-labeled anti-sense transcripts of a c-myc clone and processed for autoradiography. The specificity of the hybridization was controlled by using 35S-labeled plasmid transcripts as a negative control, while RNA preservation in the tissue sample was assessed by using 35S-labeled anti-sense transcripts of a murine 28S rRNA clone. c-myc RNA was detectable in all the carcinomas (eight) and villous adenomas (four), but steady-state levels varied from high to low in different tumors with similar histology. Low levels of c-myc RNA were detected in epithelial stem cells of some of the normal mucosa samples (five). No genetic alterations of the c-myc locus were found by Southern analysis of DNAs extracted from the carcinomas.

Adenocarcinoma↗

Amplification of FGF-related genes in human tumors: possible involvement of HST in breast carcinomas.

In order to document a possible involvement of structural alterations of FGF (Fibroblast Growth Factor)-like genes in human oncogenesis, we have screened a large series of human tumors for amplification of five FGF-related genes (Basic-FGF, INT2, HST, FGF5 and FGF6). None of 37 hematopoietic neoplasms, one out of 13 melanomas (8%), three out of 43 bladder tumors (7%) and 41 out of 238 breast carcinomas (17%) contained amplified FGF-related sequences, namely HST and INT2. Only these two genes, both located on band q13 of chromosome 11 have been found amplified. In all cases they were co-amplified and in only one instance did amplification extend to the ETS1 locus at position 11q23. INT2 and HST RNA could be evidenced by RNA/RNA in situ hybridization in breast carcinomas. Our results indicate a correlation between RNA expression and gene amplification in the case of HST but not of INT2. Although evaluation of the clinical significance of HST amplification and expression must await long-term follow-up of the patients, we suggest that HST gene product could play a role in development and/or progression of human breast cancer.

Breast Neoplasms↗

Proto-oncogene amplification and human breast tumor phenotype.

Amplification of c-myc, c-erbB-2, hst and int-2 proto-oncogenes was investigated in two independently collected breast tumor series comprising 292 carcinomas. Differences in the frequencies of amplification could be observed between these two series for c-myc (9.3% vs. 20.8%) and hst/int-2 (21.5% vs. 15.6%) whereas similar values were found for c-erbB-2 (22.5% vs. 20.3%). Statistical correlations between amplification and disease parameters were also dependent on population sampling. Therefore we performed our statistical analysis on the pooled populations and focused on the 219 primary breast carcinomas from patients without therapy prior to surgery. Amplification of c-erbB-2 was strongly correlated to the absence of either estrogen (ER-, P = 0.003) or progesterone (PR-, P = 0.004) receptors. An amplified c-myc was significantly associated with PR- (P = 0.005) and was prevalent in high grade tumors. On the contrary, hst/int-2 amplification was correlated to PR+ tumors (P = 0.01) and was more frequent in ER+ and low grade tumors, and was also correlated with lymph node involvement (P = 0.04). Our data suggest that amplification of each of these proto-oncogenes could be representative of a particular subset of breast tumors. Therefore, proto-oncogene amplification may be helpful in characterizing new biological subclasses in human breast cancer.

Breast Neoplasms↗

In situ c-myc expression and genomic status of the c-myc locus in infiltrating ductal carcinomas of the breast.

We have studied the expression of the c-myc protooncogene and the cycle-dependent histone 4 gene at the cellular level by RNA:RNA in situ hybridization in 18 primary breast ductal adenocarcinomas. These tumors have previously been examined by Southern and Northern blot analysis for the genomic status of c-myc and its expression, respectively (Escot et al., Proc. Natl. Acad. Sci. USA, 83: 4834-4838, 1986). Positive c-myc hybridization signals were associated with carcinoma cells in all cases, including tumors which had no apparent alterations of the c-myc locus. Steady-state levels of c-myc mRNA appeared heterogeneous in carcinomas with similar histology. High levels of hybridization were found in four of seven tumors with strong amplification of the c-myc locus. Similarly high levels of c-myc hybridization were detected in two of nine cases which had an apparently normal c-myc locus but comparatively low cellularity. In addition to carcinoma cells, dense clusters of infiltrating lymphocytes, present in three tumors, exhibited c-myc hybridization. The expression of the histone 4 gene failed to correlate with levels of c-myc expression. We conclude that in infiltrating ductal carcinomas: (a) the c-myc protooncogene is transcriptionally activated; (b) c-myc amplification is probably underestimated due to heterogeneous cellularity; (c) high-level c-myc amplification is related to high-level expression, but other unknown factors also may play a role; (d) differences in levels of c-myc expression may not only be attributed to differences in the growth fractions; and (e) c-myc mRNA in total RNA from biopsy samples may be contributed by infiltrating lymphocytes.

Breast Neoplasms↗

Genetic variability of proto-oncogenes for breast cancer risk and prognosis.

This paper summarizes the results of a study on human breast cancers performed mainly at the Centre René Huguenin in collaboration with other American and French groups, and supported in part by a Grant from the Association pour la Recherche sur le Cancer (ARC) Villejuif. During this work, the following conclusions emerged: c-myc proto-oncogene amplification is a common alteration in ductal invasive tumors, more frequently found in recurrent and metastatic tumors, suggesting a role for c-myc in tumor progression. However, in the current state of our study, it does not appear to be linked to prognosis; parts of the short arm of chromosome 11 are deleted in 20% of tumors resulting in hemizygosity for several genes (c-ha-ras, beta globin, pTH, calcitonin, catalase). These deletions seem to be linked with aggressiveness of tumors; a restriction fragment length polymorphism (RFLP) study of c-ha-ras has shown a significant association of the frequency of rare ha-ras alleles in cancer patients compared to that of normal individuals. Although this result is currently a matter of controversy, further studies must be independently repeated to be conclusive; -- another RFLP was found in c-mos proto-oncogene, which is detected only in patients with breast cancers or other types of tumors. The molecular basis for this RFLP has been elucidated. The significance of this association is unknown.

Breast Neoplasms↗

Reduction to homozygosity of genes on chromosome 11 in human breast neoplasia.

The somatic loss of heterozygosity for normal alleles occurring in human tumors has suggested the presence of recessive oncogenes. The results presented here demonstrate a loss of heterozygosity of several genes on chromosome 11 in primary breast tumors. Restriction fragment length polymorphism analysis of these DNAs further suggests that the most frequent loss of sequences in breast tumors occurs between the beta-globin and parathyroid hormone loci on the short arm of chromosome 11. The loss of heterozygosity for chromosome 11 loci has a significant association with tumors that lack estrogen and progesterone receptors, grade III tumors, and distal metastasis.

Alleles↗