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C Escot

Publications and source records attributed to C Escot.

29 records · Page 2Linked to original sources

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↗

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↗

Amplification of the int-2 gene in primary human breast tumors.

Proviral activation of the int-2 gene is a frequent occurrence in mammary carcinomas induced by mouse mammary tumor virus (MMTV). Here, we have examined the human homolog of int-2 in 110 primary breast cancer DNAs. The locus was amplified 2- to 15-fold in 18 of the tumor DNA samples. Amplification of int-2 has a highly significant association (P less than 2 X 10(-6] with tumors from patients who subsequently developed a local recurrence of the disease or a distal metastasis.

Animals↗

Genetic alteration of the c-myc protooncogene (MYC) in human primary breast carcinomas.

We have studied the genomic organization of the c-myc locus (MYC) from 121 human primary breast carcinomas. Two types of alterations were observed: (i) the c-myc protooncogene appeared to be amplified 2- to 15-fold in 38 (32%) of the carcinoma DNAs and (ii) a non-germ-line c-myc-related fragment of variable size was detected in 5 primary breast carcinoma DNAs. With three exceptions, all the tumors containing a genetic alteration of the c-myc locus were invasive ductal carcinomas. A significant correlation (P less than 0.02) was observed between patients more than 50 years old and the presence of a genetically altered c-myc. Enhanced levels of c-myc RNA were observed in 10 of 14 breast carcinomas examined. The c-myc gene was genetically altered in 6 of these 10 tumors. The frequency with which the c-myc gene is altered and its correlation with age suggest that it may play a role in the development of breast carcinomas.

Adenofibroma↗

High frequency of rare alleles of the human c-Ha-ras-1 proto-oncogene in breast cancer patients.

The c-Ha-ras-1 locus in 104 breast cancer patients and 56 unaffected individuals was examined for allelic restriction fragment-length polymorphism. Four common and 16 rare alleles were detected in the combined populations. The distribution of common and rare alleles differed significantly between the two populations. The common restriction fragments represented 91% of the allele pool in the unaffected population. In breast cancer patients, these common alleles represented only 59% of the allele pool (P less than .001). More specifically, the frequency of two of the common fragments, the 6.5- and 8.0-kilobase alleles, was significantly diminished in the breast cancer population (P less than .001 and P less than .02, respectively). The frequency of rare c-Ha-ras-1 alleles and hence genotypes composed of two rare alleles was increased in the breast cancer population (P less than .001). One of the rare alleles had a significant (P less than .05) association with these breast cancer patients. These results suggest that genotype analysis of the c-Ha-ras-1 locus, in combination with other clinical parameters, may be of prognostic value in assessing the potential for cancer.

Adult↗

Mammary tumorigenesis in feral Mus cervicolor popaeus.

A pedigreed breeding population of feral Mus cervicolor popaeus with a high incidence of mammary tumors, arising between 6 and 14 months of age, is described. These mice were chronically infected with a type B retrovirus which is distantly related to the mouse mammary tumor virus (MMTV) of inbred strains of Mus musculus. MMTV-induced mammary tumors in inbred mice frequently (80%) contained an insertion of the viral genome into the int-1 or int-2 loci of the tumor cellular genome. These two cellular genetic loci were also altered by viral insertion in 11 of 20 M. cervicolor popaeus mammary tumor cellular DNAs tested. Results of our study of mammary tumorigenesis in feral mice demonstrate that viral-induced rearrangement and activation of the int loci are not limited to the genetic background of inbred mice selected for highly infectious MMTV and a high incidence of mammary tumors.

Animals↗

Loss of a c-H-ras-1 allele and aggressive human primary breast carcinomas.

The human H-ras protooncogene was shown to be expressed in 16 of 22 invasive ductal carcinomas of the breast. The K- and N-ras protooncogenes were either not expressed or expressed at low levels. No amplification or rearrangement of the three ras genes was detected among the 104 breast carcinoma DNAs tested. These results indicate that the overexpression of H-ras in human breast tumors is not correlated with alteration of the protooncogene. In addition, we did not find any point mutation at the codon 12 of the H-ras or K-ras protooncogenes in 32 and 64, respectively, tumor DNAs examined. However, in tumor DNAs from 14 of 51 patients, heterozygous for H-ras-1 related BamHI restriction fragments, one allele was lost. This allele loss did not alter ras Mr 21,000 protein expression. Correlation with clinicopathological data showed, however, that the loss of one H-ras-1 allele in breast carcinoma DNAs is significantly linked to histological Grade III tumors, the lack of estrogen and/or progesterone receptors, and the subsequent occurrence of distal metastasis. Our results thus indicate that the loss of one H-ras-1 allele correlates with the most aggressive primary carcinomas of the breast.

Aged↗

[Absence of the chemical activation of type C endogenous viruses in cells of 129/J mice].

Production of Type C virus by Mouse cells generally activated by chemical agents does not occur in 129/J Mouse cells. No viral production, as tested by reverse transcriptase activity and electron microscopic methods can be detected in cells treated by chemical inducers. Immunofluorescence does not reveal the presence of viral specific proteins and viral RNA expression determined by molecular hybridization between cellular RNA and viral cDNA does not increase as it does in BALB/c cells under the action of the inducers studied.

Animals↗