Comparison of p53 Mutational Status with mRNA and Protein Expression in a Panel of 24 Human Breast Carcinoma Cell Lines

被引:0
作者
Nicole Concin
Christa Zeillinger
Dan Tong
Margit Stimpfl
Margit König
Dieter Printz
Felix Stonek
Christian Schneeberger
Lukas Hefler
Christian Kainz
Sepp Leodolter
Oskar A. Haas
Robert Zeillinger
机构
[1] Molecular Oncology Group,Children's Cancer Research Institute
[2] Department of Gynecology and Obstetrics,Department of Gynecology and Obstetrics, Division of Endocrinology
[3] St. Anna Children's Hospital,undefined
[4] University of Vienna Medical School,undefined
[5] Ludwig Boltzmann Institute for Gynecological Oncology and Fertility Treatment,undefined
[6] Ludwig Boltzmann Institute for Cytogenetic Diagnosis,undefined
来源
Breast Cancer Research and Treatment | 2003年 / 79卷
关键词
breast cancer; cell lines; FASAY; FISH; p53;
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学科分类号
摘要
We analyzed the p53 mutational status, mRNA and protein expression in 24 human breast carcinoma cell lines. Following measurement of their DNA content with flow cytometry, we ascertained the copy numbers of the centromere of chromosome 17 (cen17) and p53 with fluorescence in situ hybridization (FISH). A functional yeast assay (FASAY) was used to screen for inactivating mutations. Positive results were subsequently verified by DNA sequencing. Finally, we assessed the mRNA expression with a competitive reverse transcription-polymerase chain reaction (RT-PCR) assay and the protein expression with immunocytochemical staining, western blot, and quantitative flow cytometry. The DNA content of the cell lines ranged from 0.85 to 2.58. Nine cell lines had concordant copy numbers (between two and four) of p53 and cen17, whereas 12 had more, and three less cen17 than p53 copies. The FASAY was successful in all but one cell line and revealed the presence of mutated alleles in 16 of them, 13 cell lines expressed only the mutated, and three both the mutated and the wild-type alleles. The mutations were comprised of 11 missense, two nonsense, and three frameshift mutations. Immunocytochemical staining, western blot and quantitative flow cytometry yielded comparable p53 protein expression results. However, both the mRNA and the protein expression levels varied considerably in the different cell lines and no consistent pattern with regard to the respective p53 mutational status became evident. The results obtained in these breast carcinoma cell lines indicate that no clear-cut linear relationship exists between the p53 mutational status and the extent of its respective mRNA and protein expression. Therefore, direct DNA analyses and functional assays remain the only methods for the reliable detection of p53 mutations.
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页码:37 / 46
页数:9
相关论文
共 185 条
[1]  
Lane DP(1992)Cancer: p53, guardian of the genome Nature 258 15-16
[2]  
Zambetti GP(1992)Wild-type p53 mediates positive regulation of gene expression through a specific DNA sequence element Genes Dev 6 1143-1152
[3]  
Bargonetti J(1991)Participation of p53 protein in cellular response to DNA damage Cancer Res 51 6304-6311
[4]  
Walker J(1994)Cell cycle control and cancer Science 266 1821-1828
[5]  
Kastan MB(1991)p53 mutations in human cancers Science 253 49-53
[6]  
Onyekwere O(1995)The control of apoptosis and drug resistance in ovarian cancer: influence of p53 and bcl-2 Oncogene 11 1217-1228
[7]  
Sidransky D(1993)p53-dependent apoptosis modulates the cytotoxicity of anticancer agents Cell 74 957-967
[8]  
Vogelstein B(2000)A prospective trial of midwest breast cancer patients: a p53 gene mutation is the most important predictor of adverse outcome Int J Cancer 89 32-38
[9]  
Craig RW(2001)Prognostic value of TP53 gene mutation in adjuvant treated breast cancer patients Breast Cancer Res Tr 69 65-68
[10]  
Hartwell IH(2000)The prognostic value of p53 and c-erb B-2 immunostaining is overrated for patients with lymph node negative breast carcinoma: a multivariate analysis of prognostic factors in 613 patients with a follow-up of 14-30 years Cancer 88 804-813