Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P10415 (Bcl-2)
33,771 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Mutation, deactivation and disregulated expression of oncogenes and tumour-suppressor genes may be involved in the pathogenesis of oral squamous cell carcinoma (SCC). Deactivation of the p53 tumour-suppressor gene allows cell proliferation and blocks apoptosis of malignant oral keratinocytes. Mutation in the ras oncogene results in persistent mitogenic signalling. Upregulatioed c-Myc expression, in the presence of growth factors, provides an additional proliferative signal. Loss of retinoblastoma tumour-suppressor gene (Rb) function may contribute to oral keratinocyte hyperproliferation and recent evidence suggests that simultaneous deactivation of both p53 and Rb is required for tumourigenesis. Enhanced Bcl-2 and reduced Fas expression inhibit tumour cell apoptosis and may convey resistance to cytotoxic drugs and T cell-mediated cytotoxicity, respectively. Exogenous mutagens such as tobacco, alcohol and viral oncogenes may cause altered expression of oncogenes and tumour-suppressor genes in some cases of oral SCC. The impact of these mechanisms on future therapies for oral SCC is highlighted.
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PMID:Review article: The role of oncogenes, tumour suppressor genes and growth factors in oral squamous cell carcinoma: a case of apoptosis versus proliferation. 870 24

The cooked meat mutagen 2-amino-3-methylimidazo[4,5-f]quinoline (IQ) produces tumors at multiple sites in the F344 rat, including adenocarcinomas of the colon. In the present study, the development of IQ-induced colorectal tumors was shown to be accompanied by the progressive inhibition of programmed cell death. This was associated with increased expression of the antiapoptosis protein Bcl-2 and decreased expression of bax, a known activator of apoptosis. Carcinomas bearing high levels of bcl-2 expression exhibited low levels of p53, the tumor suppressor protein that in some circumstances has been shown to down-regulate bcl-2. Because they lack mutations in the genes commonly associated with increased cell proliferation (APC, Ki-ras, and p53) and show no evidence of microsatellite instability, IQ-induced colon tumors might arise via the deregulation of bcl-2 expression, leading to inhibition of programmed cell death.
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PMID:Inhibition of apoptosis in colon tumors induced in the rat by 2-amino-3-methylimidazo[4,5-f]quinoline. 881 12

Clinicopathological evidence has accumulated that colorectal adenocarcinoma with minimal or no glandular differentiation constitutes two entities with different prognosis. In a series of 20 predominantly nonglandular, poorly differentiated adenocarcinomas, histological features, DNA content, p53 protein expression, Ki-ras mutation, and microsatellite instability were analyzed and correlated to the biology of the tumors. In addition, the presence of Epstein-Barr virus (EBV) transcripts was tested by RNA in situ hybridization and EBV DNA was demonstrated by nested polymerase chain reaction. Histologically, 13 tumors showed small uniform cells and 7 tumors showed large pleomorphic cells. Tumors with uniform cells exhibited more commonly an expansive growth pattern (69.2% versus 0%; P < 0.025) and a dense peritumor lymphoid infiltrate (84.6% versus 14.3%; P < 0.01) resembling their gastric counterpart, solid or medullary carcinoma. These tumors showed less frequent lymph node as well as hematogeneous metastases than pleomorphic carcinomas. In addition, they were usually diploid (84.6% versus 28.6%; P < 0.05) and lacked stabilization of the p53 protein (0% versus 42.9%; P < 0.05). No significant difference between the medullary and the pleomorphic tumor type was found with respect to bcl2 expression and the occurrence of Ki-ras mutations at codon 12. In contrast, microsatellite instability was almost totally restricted to poorly differentiated adenocarcinomas of the medullary type (100% versus 14.3%; P < 0.001). Finally, polymerase chain reaction revealed EBV DNA in 5 tumor specimens, which was, however, restricted to the peritumor lymphoid infiltrate as shown by in situ hybridization. Correlation with the biology of the tumors revealed that only one patient with the uniform cell type died due to metastastic disease during the follow-up period (median, 31 months), which was the case in five of the seven patients with the pleomorphic-type carcinoma (P < 0.025). Our results clearly indicate that the poorly differentiated colonic carcinoma with minimal or no glandular structures constitute two different entities, a medullary and a pleomorphic variant, which markedly differ in their phenotype, genotype, and prognosis.
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PMID:Poorly differentiated colonic adenocarcinoma, medullary type: clinical, phenotypic, and molecular characteristics. 913 4

Bcl-2 protein has been shown to contribute to oncogenesis because it can transform and immortalize cells in cooperation with c-myc, ras, or viral genes. However, in vivo studies have not yet established whether bcl-2 can play a role in metastasis. Here we investigate the potential metastatic role of bcl-2. We introduced the human bcl-2 gene into a low bcl-2 expressing human breast cancer cell line MCF7 ADR. We demonstrate that two bcl-2 overexpressing clones injected intravenously or intramuscularly into nude mice induce a significantly higher number of experimental and spontaneous lung metastases compared to the control transfectant clone. We demonstrate that bcl-2 overexpressing clones are more invasive and migratory in response to chemotactic stimuli than the control transfectant clone. Furthermore, zymographic analysis shows that secretion of 72 and 92 kDa gelatinases increases in the two bcl-2 overexpressing transfectants. Tumors originating from bcl-2 overexpressing clones also show a decrease in the latency period of tumor appearance. In conclusion, our data show that bcl-2 overexpression enhances both tumorigenicity and metastatic potential of MCF7 ADR cells by inducing metastasis-associated properties.
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PMID:Bcl-2 overexpression enhances the metastatic potential of a human breast cancer line. 933 47

Hepatitis B virus is a causative agent of hepatocellular carcinoma, and in the course of tumorigenesis, the X-gene product (HBx) is known to play important roles. Here, we investigated the transforming potential of HBx by conventional focus formation assay in NIH3T3 cells. Cells were cotransfected with the HBx expression plasmid along with other oncogenes including Ha-ras, v-src, v-myc, v-fos, and E1a. Unexpectedly, the introduction of HBx completely abrogated the focus-forming ability of all five tested oncogenes. In addition, the cotransfection of Bcl-2, an apoptosis inhibitor, reversed the HBx-mediated inhibition of focus formation, suggesting that the observed repression of focus formation by HBx is through the induction of apoptosis. Next, to test unequivocally whether HBx induces apoptosis in liver cells, we established stable Chang liver cell lines expressing HBx under the control of a tetracycline-inducible promoter. Induction of HBx in these cells in the presence of 1% calf serum resulted in typical apoptosis phenomena such as DNA fragmentation, nuclear condensation, and fragmentation. Based on these results, we propose that HBx sensitizes liver cells to apoptosis upon hepatitis B virus infection, contributing to the development of hepatitis and the subsequent generation of hepatocellular carcinoma.
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PMID:X-gene product of hepatitis B virus induces apoptosis in liver cells. 941 92

The hallmark of chronic myeloid leukemia (CML) is the chimeric tyrosine kinase oncogene bcr-abl. Since expression of bcr-abl mRNA frequently increases with disease progression and a duplication of the Philadelphia chromosome (harbouring the bcr-abl hybrid locus) represents the most frequent karyotypic abnormality in acute phase CML, we hypothesized that the level of BCR-ABL protein may affect the disease phenotype. Therefore, the biological effects of high and low levels of BCR-ABL expression were compared in growth factor-dependent and -independent myeloid and lymphoid cell lines. Our results demonstrated that low levels of BCR - ABL were sufficient to render these cell lines growth factor independent and tumorigenic, but higher levels were mandatory for additional protection against apoptotic stimuli. The provision of growth factor or an activated ras oncogene did not afford the same degree of protection as high levels of BCR-ABL and there were qualitative differences between the survival signals mediated by BCR-ABL and Bcl-2. These results have enabled us to establish a dose-dependent hierarchy of BCR-ABL induced biological effects, thus distinguishing the activation of pathways mediating protection from cytokine withdrawal from those protecting against other apoptotic stimuli.
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PMID:BCR-ABL activates pathways mediating cytokine independence and protection against apoptosis in murine hematopoietic cells in a dose-dependent manner. 946 59

Isolated murine splenic B cells undergo spontaneous apoptosis. Motifs containing unmethylated CpG dinucleotides in bacterial DNA or in synthetic oligodeoxynucleotides (ODN) are known to activate murine B cells. Now we show that ODN that induce spleen B cell cycle entry also inhibit spontaneous apoptosis in a sequence-specific fashion. Reversal of the CG to GC abolished activity. Methylation of the central cytosine decreased activity. When CpG is preceded by a cytosine or followed by a guanine, activity was abolished. Other substitutions at the same positions had no effect. Dose-response curves for apoptosis protection and G1 entry suggested that a uniform population of ODN recognition sites controlled downstream ODN effects. A CpG ODN with a nuclease-resistant phosphorothioate backbone (S-ODN) was also active, and increased the levels of c-myc, egr-1, c-jun, bclXL, and bax mRNA and c-Myc, c-Jun, Bax, and BclXL protein in spleen B cells. Levels of c-myb, myn, c-Ki-ras, and bcl2 mRNA remained unchanged. When protein synthesis was inhibited, at 16 h ODN-induced cell cycle entry was abolished and apoptosis protection was partially preserved. Under these conditions, c-Myc was still present, but c-Jun and BclXL were not detected. Our results suggest that CpG containing ODN motifs provide signals for both survival and cell cycle entry. Single base changes determine whether this signal proceeds through a rate-limiting step governing at least two steps in apoptosis (plasma membrane transition, DNA cleavage) and two phases of the cell cycle (G1 and S phase entry). This biologic action is associated with increased c-Myc, c-Jun, and BclXL expression.
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PMID:CpG oligodeoxyribonucleotides rescue mature spleen B cells from spontaneous apoptosis and promote cell cycle entry. 963 2

A panel of 16 human ovarian carcinoma cell lines comprising cisplatin naive as well as those with acquired cisplatin resistance was studied to determine if there was a relationship between ras status and cisplatin sensitivity. From the ras expression studies alongside data produced by direct DNA sequencing, there was very little to suggest that ras overexpression or mutation plays a role in the cisplatin sensitivity of the panel of human ovarian carcinoma cell lines tested. A weak correlation (r2 = 0.53) was found between total Ras protein levels and resistance to cisplatin. No relationship was found between Kirsten-Ras protein levels and cisplatin sensitivity (r2 = 0.0). Only one ras mutation (codon 13, Kirsten exon 1, glycine --> aspartate in the HX62 cell line) was observed in the cisplatin naive cell lines from the panel which comprised both cisplatin sensitive and resistant models. Of interest, however, was that the HX62 cell line was the most resistant to cisplatin. No ras mutations were found in those cell lines which had repeatedly been exposed, and acquired resistance, to cisplatin. The A2780 and CH1 human ovarian carcinoma cell lines were transfected with activated, mutant Harvey-ras and, as a result, were shown to display elevated MAP kinase phosphorylation in low serum concentration growth medium. No changes in cisplatin sensitivity were found following transfection with activated Harvey-ras in these 2 human ovarian carcinoma tumor cell models which, importantly, differed greatly in their expression of Bcl-2. Therefore, when conducted under similar conditions to previously published studies, very little evidence was found to support Harvey-ras activation as a factor which can either sensitize or confer resistance to cisplatin in human ovarian carcinoma cell lines.
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PMID:ras mutation and platinum resistance in human ovarian carcinomas in vitro. 963 99

This study demonstrates that Ha-rasVal12 oncogene overexpression sensitizes NIH/3T3 fibroblasts to lovastatin (LOV) cytotoxicity. This sensitization is through apoptosis, which was characterized by increasing CPP32 (caspase-3) activity and DNA fragmentation. Bcl-2 overexpression increased the resistance of the Ha-ras transformants to LOV and rescued the cells from apoptosis, further confirming that the LOV-sensitive cells died of apoptosis. Further analysis showed that Ha-ras activity inversely correlated with WAF1 activity. LOV treatment suppressed Ha-ras activity but induced WAF1 activity and disrupted the cell population in G0/G1 and S phases. The Ha-ras transformants expressing either dominant negative RasAsn17 or Raf-1CB4 showed reverted susceptibility to LOV. These data confirm the involvement of Ras and demonstrate that Raf-1 signalling is required for LOV-induced cell death. Taken together, the possible action of LOV-induced apoptosis is through suppressing Ha-ras activity and increasing WAF1 activity, which alters cell cycle progression and finally activates suppressed apoptotic pathway in a Fas/Fas-L- and p53-independent fashion.
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PMID:Ha-rasVal12 oncogene increases susceptibility of NIH/3T3 cells to lovastatin. 967 86

We have previously shown that metastatic carcinomas of unknown primary site overexpress several tumor markers as well as the products of the oncogenes c-myc, ras and c-erbB2. We analyzed the tissue expression of the protein products of the apoptosis modulation genes p53 and bcl-2 in 47 CUP cases. Formalin-fixed, paraffin embedded tumor specimens were stained with commercially available antibodies to p53 (DO7) and bcl-2 after antigen retrieval by the microwave method. Staining was evaluated by intensity (1+ to 3+), percentage of positive cells (1-100%), and the 'intensity times percentage' product defined as the immunoreactivity index with values ranging from 0 to 300. Immunoreactivity index values higher than 150 were considered to characterize protein over-expression. Expression of p53 was identified in 70.2% of tumors while 53% of them showed a high immunoreactivity index. Bcl-2 expression was detected in 65% of tumors and overexpressed in 40%. Overexpression of both proteins was detected in 20% of tumors. The detection of either protein was not associated with any of the major clinicopathological variables studied. Nevertheless, a trend towards a more favourable response to platin based chemotherapy was seen in the cases that showed a strong expression of both proteins, when analysed by immunoreactivity index and percentage of positive cells. We conclude that CUP overexpress at a high percentage the p53 and the bcl2 proteins. The observed weak association of strong expression of these proteins with response to platin-based chemotherapy deserves further evaluation in the CUP setting.
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PMID:Bcl2 and p53 protein expression in metastatic carcinoma of unknown primary origin: biological and clinical implications. A Hellenic Co-operative Oncology Group study. 967 43


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