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At least 19 recordsLinked to original sources

DNA ploidy, c-myc oncoprotein p62 and v-H-ras oncoprotein p21 in colorectal carcinoma.

DNA ploidy and expression of the c-myc oncoprotein p62 and the v-H-ras oncoprotein p21 were examined in 54 colorectal carcinomas. DNA ploidy, determined by DNA flow cytometry, was diploid in 19 samples and aneuploid in 35. Expression of the p62 oncoprotein, determined by immunohistochemical staining, was intensely positive in 18 samples while that of the p21 oncoprotein, also determined by immunohistochemical staining, was positive in 29. There was no correlation between DNA ploidy and expression of the p62 oncoprotein, and DNA ploidy did not correlate with expression of the p21 oncoprotein. There was, however, a close correlation between expression of the p62 oncoprotein and that of the p21 oncoprotein being P < 0.01 according to Peason's chi-square test.

Adult↗

[Oncoproteins and anti-oncoproteins in blood serum as biomarkers of early health effects induced by occupational and environmental carcinogens].

Over a whole life-span a genetic machinery of human cells is exposed to carcinogenic effect of various chemical, physical and biological factors leading to cellular changes in the genome like point mutation and translocation or amplification of genes. Together with growing an ageing of the human organism, the number and heterogeneity of mutated cells increase. Thus, the presence or absence of the neoplastic process may depend on the length of life, efficiency of the immunological system, cumulation of adverse affects of environmental factors or inherited susceptibility to a disease. There is no doubt that neoplasms which develop due to inheritance of different genetic defects or due to direct environmental effect progress in line with similar mutations, resulting finally in the genome destabilisation and disturbances in the balance between proliferation and differentiation processes. The knowledge as to how far environmental carcinogens affect cellular genome is still limited. Nevertheless, data collected to date help to understand the mechanisms by which environmental carcinogens may initiate the process of transforming normal cells into neoplastic ones. It is most likely that activation of some oncoproteins and deactivation of some suppressive genes and related qualitative and quantitative changes in oncoproteins and anti-oncoproteins participating in the growth control and cellular division, are the essential mechanisms which are involved in this process. The discovery that activation of oncoproteins and related emergence of oncoprotein in cells, increased in the number of changed, can be monitored in easily available biological fluids, such as blood or urine, has become of great importance for occupational medicine and environmental health. That has provided new diagnostic measures for evaluating carcinogenic effects of the working and living environments. The fact, that the emergence of oncoproteins in biological fluids may precede by many months or even years clinical manifestations of neoplastic disease should greatly contribute to undertaking more effective preventive measures.

Antibodies, Neoplasm↗

[Conformational aspects of biological activity of functional fragments of the p21ras oncoproteins. 3. Fragment 34-46 of the native oncoprotein and the decapeptide corresponding to its 35-44 sequence].

Theoretical conformational analysis was used to study the spatial structure of a putative binding site responsible for binding of p21 oncoproteins to other oncoproteins. Conformational properties of the isolated address sequence localized in fragment 34-46 of native p21 and of the decapeptide molecule corresponding to the 35-44 sequence in the primary structure of oncoproteins of this family were revealed. Our calculations demonstrated a similarity between the spatial structures of the peptides, which confirms the hypothesis on the identity of their biological functions.

Models, Molecular↗

[Conformational aspects of biological activity of functional fragments of the p21ras oncoproteins. 4. Address fragments of the receptor oncoproteins].

Decapeptide fragments of the scr, fgr, fps, and yes oncoproteins were studied by theoretical conformational analysis, and the arrangement of ionized residues in these fragments was found to be complementary to the binding site of p21. The results demonstrated a similarity in conformational properties of these peptides and their structural complementarity to the address fragment of p21. On the basis of this computation, a model of interaction of the p21ras family of oncoproteins with their cellular receptors was suggested.

Binding Sites↗

The c-Ets oncoprotein activates the stromelysin promoter through the same elements as several non-nuclear oncoproteins.

The c-ets protooncogenes have recently been shown to code for transcription factors that activate the oncogene responsive unit of the polyoma virus enhancer. We show that transcription of the stromelysin gene, which is highly expressed in transformed cells and tumours, is efficiently activated by c-Ets-1 and -2 through two DNA elements. The distal element is a highly conserved palindrome composed of two strong binding sites for c-Ets-1. The proximal element does not bind c-Ets-1, but may be activated indirectly by increased synthesis of c-Jun and c-Fos. Both ets responsive elements mediate activation by the oncoproteins Ha-Ras, v-Src and v-Mos. These results suggest that c-Ets participates in the mechanisms by which stromelysin gene expression is deregulated in transformed cells and tumours.

Animals↗

BCR/ABL oncoprotein-targeted antitumor activity of antisense oligodeoxynucleotides complementary to bcr/abl mRNA and herbimycin A, an antagonist of protein tyrosine kinase: inhibitory effects on in vitro growth of Ph1-positive leukemia cells and BCR/ABL oncoprotein-associated transformed cells.

We investigated whether antisense oligodeoxynucleotides complementary to bcr/abl mRNA or protein kinase antagonists display antitumor activity on Ph1-positive leukemia cell lines. bcr/abl antisense oligomers showed inhibitory effects on the in vitro growth of Ph1-positive leukemia cell lines in liquid culture, and further displayed an inhibitory effect on transformed murine hematopoietic cells using transfection with a retroviral vector expressing P210bcr/abl oncoprotein. However, in vitro treatment with a bcr/abl antisense oligomer did not completely abolish the expression of bcr/abl mRNA and did not display the desired "killing effect" on Ph1-positive leukemia cells. On the other hand, investigation of the effect on Ph1-positive leukemia cells by various types of protein kinase antagonists revealed that herbimycin A, a protein tyrosine kinase antagonist, displays preferential and remarkable suppression of the growth of Ph1-positive leukemia cells and P210bcr/abl associated transformed cells by virtue of suppressing bcr/abl protein tyrosine kinase activity. These results may provide important future insights in developing a new category of antitumor therapy by targeting oncogene products.

Antibiotics, Antineoplastic↗

Prognostic value of K-ras mutations, ras oncoprotein, and c-erb B-2 oncoprotein expression in adenocarcinoma of the lung.

This trial was undertaken to determine the prognostic role of K-ras (p21), c-erb B-2 (p185) protein expression, and the presence or nonpresence of a K-ras gene mutation in patients with adenocarcinoma of the lung. This was a retrospective study of 103 patients with adeno- or large-cell carcinoma of the lung who had available paraffin-stored tumor material. The relation of several clinical variables to survival was analyzed. Immunohistochemical techniques were used to determine expression of p21 and p185. Polymerase chain reaction (PCR) and sequencing were used to determine K-ras mutation status. Tumor stage was the only nonmolecular clinical variable predictive of survival (p=0.0001). A combination of K-ras mutation and p 185 expression (p=0.0144), ras mutation and strong p21 expression (p=0.0137), and K-ras mutation and the combined expression of p21 and p185 were predictive of poor survival (p=0.0415) in univariate analysis of all patients. The sole presence of K-ras mutation was predictive of survival. Additionally, when combined with elevated p21 or p185 expression in a subset of patients with 4 or more years of follow-up, negative correlation with survival was observed.

Adenocarcinoma↗

Effect of herbimycin A, an antagonist of tyrosine kinase, on bcr/abl oncoprotein-associated cell proliferations: abrogative effect on the transformation of murine hematopoietic cells by transfection of a retroviral vector expressing oncoprotein P210bcr/abl and preferential inhibition on Ph1-positive leukemia cell growth.

Herbimycin A, a benzoquinoid ansamycin antibiotic, was demonstrated to decrease intracellular phosphorylation by protein tyrosine kinase (PTK). In Philadelphia chromosome (Ph1)-positive leukemias such as chronic myelogenous leukemia (CML) and Ph1-positive acute lymphoblastic leukemia (ALL), both of which express bcr-abl fused gene products (P210bcr-abl or P190bcr-abl protein kinase) with augmented tyrosine kinase activities, herbimycin A markedly inhibited the in vitro growth of the Ph1-positive ALL cells and the leukemic cells derived from CML blast crisis. However, the same dose of herbimycin A did not inhibit in vitro growth of a broad spectrum of Ph1-negative human leukemia cells, and several other protein kinase antagonists also displayed no preferential inhibition. Furthermore, we demonstrated that herbimycin A has an antagonizing effect on the growth of transformed cells by a transfection of retroviral amphotrophic vector expressing P210bcr/abl into a murine interleukin (IL)-3-dependent myeloid FDC-P2 cell line. This inhibition was abrogated by the addition of sulfhydryl compounds, similar to the reaction previously described for Rous sarcoma virus transformation. The inhibitory effect of herbimycin A on the growth of Ph1-positive cells was associated with decreased bcr/abl tyrosine kinase activity, but no decrease of bcr-abl mRNA and protein, suggesting that the inactivation of bcr-abl tyrosine kinase activity by herbimycin A may be induced by its binding to the bcr-abl protein portion that is rich with sulfhydryl groups. The present study indicates that herbimycin A is a beneficial agent for the investigation of the role of the bcr-abl gene in Ph1-positive leukemias and further suggests that the development of agents inhibiting the bcr-abl gene product may offer a new therapeutic potential for Ph1-positive leukemias.

Benzoquinones↗

Immunohistochemical detection of RAS, JUN, FOS, and p53 oncoprotein expression in human colorectal adenomas and carcinomas.

BACKGROUND: Recent evidence suggests that progressive stages of colorectal tumorigenesis can be defined by a sequence of genetic events characterized by deletion and expression of certain genes and appearance of several oncoproteins. Although the significance of these events is not entirely clear, oncoprotein expression may be directly involved in the tumorigenic mechanism. EXPERIMENTAL DESIGN: We examined the expression of two nuclear oncoproteins, JUN and FOS (Abbreviations used in this paper are lower case letters for oncogenes and upper case letters for oncoproteins), that have not been previously associated with development of colorectal cancer. This study involved detecting p39 c-JUN and p55 c-FOS, as well as two oncoproteins previously known to be expressed during colorectal tumorigenesis, p21 RAS and the tumor suppressor protein, p53. Expression was detected with immunohistochemical methods on formalin-fixed, paraffin-embedded sections of normal human colons, tubular adenomas, tubulovillous adenomas, and adenocarcinomas. Either single oncoprotein expression or coexpression of four selected pairs; RAS/JUN, RAS/FOS, RAS/p53, or JUN/FOS were evaluated. RESULTS: We found that the expression of all four single oncoproteins and oncoprotein pairs were detected in very few normal colon specimens or tubular adenomas. However, all four oncoproteins and the four oncoprotein pairs were expressed significantly more often in adenocarcinomas. Oncogene expression in tubulovillous adenomas varied with lesion size. The number of lesions expressing any of the four oncoproteins or pairs was not significantly different than normal colon in small (< 1 cm diameter) tubulovillous adenomas. Significantly more large lesions (> 1 cm. diameter) expressed the single oncoproteins RAS, JUN, and FOS than normal colon. Of the four oncoprotein pairs, only RAS/JUN was significantly coexpressed in large tubulovillous adenomas. CONCLUSIONS: We conclude that independent expression of RAS, JUN, and FOS occurred significantly more often in large tubulovillous adenomas and adenocarcinomas while p53 expression occurred primarily in adenocarcinomas. Also, although all four oncoprotein pairs were expressed significantly more often in adenocarcinomas, only RAS/JUN was significantly coexpressed in the large tubulovillous adenomas. These results are comparable with the observed sequential activation of Ki-ras and p53 described by others and suggests that the expression of the nuclear oncogenes, JUN and/or FOS, are also important events in colorectal tumorigenesis.

Adenocarcinoma↗

Repression of SV40 T oncoprotein expression by DMSO.

SV40 large T oncoprotein-transformed murine mesenchymal 3T3 T stem cells (CSV3 cells) can be induced to growth arrest and then differentiate into adipocytes. When differentiation occurs, SV40 T oncoprotein expression is repressed (Estervig et al., J Virol 63:2718, 1989). To determine if repression of T oncoprotein expression can also be induced pharmacologically, the effect of a variety of agents that have been reported to effect differentiation in various cell types but not in 3T3 T or CSV3 cells was tested. This rationale suggests that if any of these agents repress T oncoprotein expression in CSV3 cells, then the results would establish that repression of T oncoprotein expression can be mediated by mechanisms independent of overt differentiation. The results show that dimethylsulfoxide (DMSO) is the only agent tested that represses T oncoprotein expression in CSV3 cells. Repression occurs in a dosage-dependent manner within 24-96 hours after exposure to DMSO. The effect of DMSO on T oncoprotein expression is mediated by posttranslational mechanisms that decrease the stability of the T oncoprotein. DMSO-induced repression of T oncoprotein expression is also associated with reversion of the transformed phenotype in CSV3 cells as demonstrated by the loss of responsiveness to a specific transformation-associated mitogen. These data support the conclusion that the pharmacological repression of T oncoprotein expression represents a form of cancer suppressor activity that can be mediated by a distinct molecular mechanism.

Acetamides↗

The expression of oncoproteins in transitional cell carcinoma: its correlation with pathological behavior, cell cycle and drug resistance.

OBJECTIVE: To investigate the relationship of oncoproteins with histological grade, tumor stage, cell cycle and multidrug resistance (MDR) in bladder cancer. METHODS: The expression of various oncoproteins (p21, EGFR1, erbB-2, c-jun, c-myc, bcl-2, Bax) and suppressor gene products (WT-1, RB gene, p53) was studied in normal urothelium, transitional cell carcinoma (TCC) cell lines and their MDR sublines by using specific antibodies and an indirect immunofluorescence flow-cytometric method. RESULTS: The total increased rate of measured oncoproteins in TCC cell lines was 62.7%. There was no difference in the expression rate of oncoproteins between low-grade/stage TCC cell lines and high-grade/stage TCC cell lines. All of these TCC cell lines have aneuploidy and increased proliferative activity in the cell cycle, but a correlation with oncoprotein expression was not seen. They had a low expression rate of c-myc, Bax and RB gene when compared to normal urothelium. On the contrary, the expressions of p21, EGFR1, erbB-2, bcl-2, WT-1 and p53 oncoproteins were significantly higher than in normal urothelium (p < 0.05). A long-term cultured MDR subline of TCC8702 (TCC8702/ADR1000) demonstrated a generally decreasing expression of oncoproteins in addition to p53. CONCLUSIONS: The p21, EGFR1, erbB-2, bcl-2, WT-1 and p53 oncoproteins were increased in TCC cells compared to normal urothelium. Oncoprotein expression is related to tumorigenesis of TCC cells, but no correlation was seen between the incidence and tumor differentiation and cell cycle. These oncoproteins decreased gradually in the process of generation of MDR in addition to p53. It indicates that the p53 oncogene is closely related to the acquired MDR of TCC cells.

Carcinoma, Transitional Cell↗

Detection of the extracellular domain of c-erbB-2 oncoprotein in sera from patients with various carcinomas: correlation with tumor markers.

Using a serum enzyme immunoassay (EIA) kit from Triton diagnostics we detected c-erbB-2 oncoprotein activity in random sera containing highly elevated tumor markers and also in serial specimens from cancer patients expressing elevated oncoprotein activities. Elevated oncoprotein activity was found not only in sera of breast and ovarian carcinomas but also in sera from colorectal, pancreatic, and prostate carcinomas and even from primary hepatoma. Whenever oncoprotein was overexpressed in an individual patient, there was usually an excellent correlation between the oncoprotein activity and the level of dominant tumor marker in serial serum specimens. Based on the size exclusion S-200 column chromatography, we found only a single molecule containing c-erbB-2 oncoprotein activity in pooled sera from cancer patients whereas two oncoproteins slightly different in size were detected in breast tumor tissue cytosol. Using HPLC on a Superose 12 HR column, the serum portion of the oncoprotein was eluted at a position near IgG, suggesting that the extracellular domain of the oncoprotein exists as a dimer in the serum.

Antigens, Tumor-Associated, Carbohydrate↗

Clinical and prognostic significance of the expression of the c-erbB-2 and c-erbB-3 oncoproteins in primary and metastatic malignant melanomas and breast carcinomas.

Several growth factors and proto-oncogenes play a leading regulatory role during human carcinogenesis. In this systematic immunocytochemical study we observed the expression (overexpression) of the c-erbB-2 and c-erbB-3 oncoproteins in 30 primary cutaneous malignant melanomas (CMMs), 10 already metastasized malignant melanomas (MMMs) and 15 lymph-node negative breast carcinomas (BCs). Both oncoproteins were expressed as a result of either oncogene amplification or post-translational stabilization c-erbB-2 alone is unable to bind neuregulins, but it is able to act as a pan c-erbB receptor subunit. Heterodimerization between cerbB-2 and c-erbB-3 is required to initiate neuregulin directed signal transduction. We employed an indirect, four step streptavidinbiotin conjugated immunocytochemical technique for antigen detection. The visualization of the primary antigen-antibody reaction was carried out with alkaline phosphatase or immunoperoxidase labeling and the use of the appropriate enzymatic substrates. The presence of c-erbB-2 oncoprotein was detected in 12/30 CMMs, 8/10 MMMs and 6/15 BCs, while c-erbB-3 was identified in 14/30 CMMs, 7/10 MMMs and 6/15 BCs. The intensity of the cell membrane localized immunoreactivity was observed to be greater when the c-erbB-2 oncoprotein was targeted (A, AB and B). The c-erbB-3 oncoprotein was also detected in the cytoplasm with medium intensity (B, BC and C). Unfortunately, little is known concerning the range of oncoprotein overexpression after formalin fixation and paraffin embedding. We demonstrated overexpression localized to several cell clones within the oncoprotein positive population of malignant cells. The immunocytochemically defined extent of expression of both oncoproteins was between 10-40% (+ to +2) of the total cell population in the malignant melanomas and 20-35% (+2) of the total cell population in the BCs. In conclusion a) the results of the present study demonstrate the presence of c-erbB-2 and c-erbB-3 oncoprotein expression (overexpression) in melanoma and breast carcinoma, and b) oncogene receptor directed immunotherapy, as part of a more individualized anti-cancer treatment, represents a potentially valuable targeted treatment for the future.

Breast Neoplasms↗

Coexpression of Bcl-2, c-Myc, and p53 oncoproteins as prognostic discriminants in patients with colorectal carcinoma.

PURPOSE: This study was undertaken to evaluate the clinical use of Bcl-2, c-Myc, and p53 oncoproteins, either singly or in combination, as prognostic discriminants relative to recurrence and overall survival in patients with Dukes B or C colorectal carcinoma. METHODS: Analyses were made on archival pathology tissues of 48 patients with colorectal cancer. The oncoproteins were localized using commercially available monoclonal antibodies: clone 124 for Bcl-2, 9E11 for c-Myc, and DO-7 for p53. The avidin-biotin peroxidase complex method was used. Patients were followed up for a period of 2 to 36 months. RESULTS: Expression of Bcl-2 and c-Myc was cytoplasmic, whereas nuclear p53 immunoreactivity was localized in the tumor cells. Sixty percent (29/48), 65 percent (31/48), and 37 percent (18/48) of the tumors showed overexpression of Bcl-2, c-Myc, and p53 oncoproteins, respectively. Fifty-four percent (18/33) and 100 percent (9/9) of moderately and poorly differentiated tumors, respectively, were positive for Bcl-2 (P < 0.01). No such correlation was noted for c-Myc and p53 oncoproteins. Univariate analysis showed that patients with Bcl-2 and c-Myc overexpression were associated with poorer overall survival than patients with Bcl-2-negative (P < 0.0124) and c-Myc-negative (P < 0.036) tumors. In addition, when patients were subgrouped according to Dukes stage, a statistically significant poorer overall survival was observed in Dukes C patients with Bcl-2-positive tumors (P < 0.017). Furthermore, multivariate analysis revealed that coexpression of three oncoproteins was predictive of a worse prognosis than for those individuals expressing none of the oncoproteins (P < 0.031) and only one positive oncoprotein (P < 0.014). CONCLUSION: These findings suggest that oncoprotein coexpression possesses significant prognostic and potential therapeutic value; incorporation of molecular markers into future prospective randomized trials is advisable.

Adult↗

Expression of bcl-2 oncoprotein in transitional cell carcinoma of the upper urinary tract.

We investigated the immunoreactivity for bcl-2 oncoprotein in 154 cases of transitional cell carcinoma of the upper urinary tract (TCC-UUT) and its relation with the immunoreactivity for p53 oncoprotein and proliferating cell nuclear antigen (PCNA) immunoreactivity. Immunohistochemically, bcl-2 oncoprotein was recognized as positive in 29.2% of the samples. The immunoreactivity for bcl-2 oncoprotein was significantly (P < 0.05) correlated only with stage, though there was a borderline correlation (P = 0.050) with PCNA immunoreactivity. Furthermore, in invasive TCC the immunoreactivity for bcl-2 oncoprotein was associated with PCNA immunoreactivity (P < 0.041). The 5-year disease-free and overall survival rates were 55.7% and 71.5%, respectively. A univariate analysis of survival revealed that stage, grade, pattern of growth, immunoreactivity for p53 oncoprotein, and PCNA immunoreactivity each had a significant effect on disease-free and overall survival rates, whereas the immunoreactivity for bcl-2 oncoprotein had no significant effect on either rate. In the final models of the multivariate analysis, stage was found to be the only prognostic factor for disease-free survival and for overall survival. Detection of immunoreactivity for bcl-2 oncoprotein appears to be of no real value in deciding the prognosis of TCC-UUT.

Adult↗

Quantification of the c-myc oncoprotein in human glioblastoma cells and tumor tissue.

The identification of a quantifiable oncoprotein marker in glial cells could lead to its use as an aid in the diagnosis, grading, and treatment of tumours of glial origin. In this study, monoclonal antibodies to the c-myc oncoprotein were used in conjunction with immunofluorescence microscopy, flow cytometry, and immunoblot analysis to quantitate and characterize the expression of this oncoprotein in neoplastic and benign cultured glial cells and brain-tumor tissue. Flow cytometric analysis revealed that the c-myc oncoprotein was highly expressed in neoplastic cell lines and in glioblastoma tumor specimens. In contrast, anti-c-myc oncoprotein staining was not present in a non-neoplastic glial cell line or in a benign brain tissue specimen. Immunoblot analysis revealed two distinct c-myc oncoprotein bands, having molecular weights of 64 and 75 kD. Densitometric determinations of the relative levels of the 64-kD protein were in good agreement with the determinations made by flow cytometry. Flow cytometry was also used to relate the quantity of the c-myc oncoprotein present in the cells to their cell cycle phase. In the malignant cultured cells, the protein underwent an approximate twofold increase as the cells progressed from G1/G0 to G2/M in the cell cycle. The present results suggest that the c-myc oncoprotein may prove to be a useful marker for the proliferation status and/or malignancy of glial cells.

Brain Neoplasms↗

c-myc and c-myb oncoproteins during induced maturation of myeloid and erythroid human leukemic cell lines.

c-myc and c-myb mRNAs have been found to be tightly regulated during hemopoietic differentiation. We have studied nuclear c-myc and c-myb oncoproteins through the cell cycle, during macrophage, granulocyte, erythroid, and megakaryocytic differentiation of KG1, HL60, and HEL cells. p62c-myc and p75c-myb content of propidium iodide-stained nuclei was quantitated by flow cytometry using fluoresceinated antibodies CT14-G4 and MB4.3, respectively. In uninduced cells p62c-myc content is highest in HL60, followed by HEL, then KG1, while p75c-myb is highest in HEL, followed by HL60 and KG1. All lines showed a less than 2-fold increment in both oncoproteins over the cell cycle. Macrophage induction of KG1 and HL60 resulted in early increase in both oncoproteins, followed by a decline to less than starting values by 48 h, concurrent with a reduction of S phase cells and the appearance of adherent alpha-naphthyl acetate esterase-positive cells. p62c-myc changes were more pronounced in HL60 and p75c-myb changes in KG1. Different patterns of oncoprotein expression were found when different inducing agents were used for granulocyte differentiation of HL60. Under all conditions, however, both oncoproteins declined to basal levels before granulocyte maturity. Hemin-induced erythroid differentiation of HEL to hemoglobin-containing cells resulted in biphasic p62c-myc and p75c-myb kinetics. In contrast, dimethyl sulfoxide-induced megakaryocytic differentiation of HEL was accompanied by an early and steady decline in both oncoproteins. Despite considerable reduction in oncoprotein levels, HEL cells were still actively cycling at 120 h. It appears that c-myc and c-myb proteins decline with differentiation, well before proliferation ceases in some lineages. The kinetics of the decline differ between the two oncogenes and vary with the lineage induced and the nature of the inducing agent used. The cell cycle distribution of the oncoproteins does not change during maturation. These data suggest disparate roles for c-myc versus c-myb during hemopoietic differentiation and the existence of multiple signal transduction pathways for down-regulation of these genes.

Antibodies, Monoclonal↗

Prognostic significance of co-expression of c-erbB-2 oncoprotein and epidermal growth factor receptor in breast cancer patients.

The expression of c-erbB-2 oncoprotein and epidermal growth factor receptor (EGFR) was examined by immunocytochemical and radioreceptor assays in 115 patients with primary breast cancer. In 48 of 115 patients (42%), the assays were found to be positive for the expression of c-erbB-2 oncoprotein, and, in 44 of 115 (35%) patients, the assays were positive for the expression of EGFR. There was no correlation between the expression of c-erbB-2 oncoprotein and EGFR. Clinical survey demonstrated that both c-erbB-2 oncoprotein expression and EGFR expression have independent prognostic values. Furthermore, when patients were divided into three groups on the basis of the expression of both c-erbB-2 oncoprotein and EGFR, those who were found to be positive for the expression of both c-erbB-2 oncoprotein and EGFR showed a worse prognosis than other groups. These results suggest that the combination of the expression of both c-erbB-2 oncoprotein and EGFR may be important in selecting patients who have a poor prognosis.

Biomarkers, Tumor↗