Staining patterns of p53 immunohistochemistry and their biological significance in colorectal cancer
- 29 February 2000
- journal article
- research article
- Published by Wiley in The Journal of Pathology
- Vol. 190 (4) , 450-456
- https://doi.org/10.1002/(sici)1096-9896(200003)190:4<450::aid-path545>3.0.co;2-8
Abstract
Immunohistochemistry (IHC) is a cheap and rapid method to detect p53 inactivation but the results are often discordant with gene mutation analysis. This study aimed to investigate whether there is a difference in the immunohistochemical staining patterns of p53‐positive cells on comparing tumours with inactivating gene mutations with those without. Tissues of 142 colorectal cancers were investigated for p53 inactivation simultaneously by IHC and gene analysis using SSCP of exons 4–9 and sequencing. In addition, tumours were investigated immunohistochemically for the expression of mdm‐2 protein, known to be transcriptionally transactivated by the wild‐type (wt) p53 gene. p53‐positive cells of tumours without detectable p53 gene mutations were microdissected using a PALM laser microscope system and subjected to p53 sequence analysis. Among the 142 cases of colorectal cancer (male/female=88/54; mean age 66a±11 years, range 24–90 years), 74% (n=105) of tumours were positive by p53 IHC and mutations in the p53 gene were found in 51% (73 patients). In 16% (12 patients) with mutations in the p53 gene, IHC for p53 was negative. In tumours with mutations in the p53 gene and positive p53 IHC, staining of all nuclei of the tumour was more frequently (57/61, 93%) found than in tumours without p53 gene mutations, where staining of scattered single cells was predominantly seen (29/44, 66%; pn=33) showed only staining of scattered single cells, predominantly (24/33, 82%; p<0.0001) in tumours without gene mutations. Single cell microdissection followed by mutation analysis of scattered p53‐positive cells revealed no gene mutations. A scattered positive immunohistochemical reactivity of p53 in colorectal cancer cells might therefore represent a functionally active non‐mutated p53 gene and should not be considered as a marker of gene mutation and inactivation. Copyright © 2000 John Wiley & Sons, Ltd.Keywords
This publication has 21 references indexed in Scilit:
- Mdm2: keeping p53 under controlOncogene, 1997
- Genetic alterations and oxidative metabolism in sporadic colorectal tumors from a Spanish communityMolecular Carcinogenesis, 1997
- Structure and Function of the p53 Tumor Suppressor Gene: Clues for Rational Cancer Therapeutic StrategiesJNCI Journal of the National Cancer Institute, 1996
- p53 gene point mutations in relation to p53 nuclear protein accumulation in colorectal cancersThe Journal of Pathology, 1995
- Association of p53 Gene and Protein Alterations with Metastases in Colorectal CancerThe American Journal of Surgical Pathology, 1995
- Association of p53 mutations with short survival in colorectal cancerGastroenterology, 1994
- p53 In tumour pathology: Can we trust immunohistochemistry?—revisited!The Journal of Pathology, 1994
- An evaluation of six antibodies for immunohistochemistry of mutant p53 gene product in archival colorectal neoplasmsThe Journal of Pathology, 1994
- The p53-mdm-2 autoregulatory feedback loop.Genes & Development, 1993
- P53 in tumour pathology: Can we trust immunocytochemistry?The Journal of Pathology, 1992