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Updated: Aug 14, 2026

Optimization of a Multiplex RNA-based Expression Assay Using Breast Cancer Archival Material
Published on: August 1, 2018
Analysis of the candidate tumor suppressor Ris-1 in primary human breast carcinomas
Javier Silva1, José M A Silva, Marta Barradas
1Department of Medical Oncology, Hospital Universitario Puerta de Hierro, C/San Martín de Porres, E-28035 Madrid, Spain.
Abstract:
Frequent chromosome 3 losses have been described in several tumors types, which strongly suggest the presence of one or several tumor suppressor genes. Recently, a novel candidate tumor suppressor gene termed Ris-1 (for Ras-induced senescence 1) has been identified at chromosomal position 3p21.3. Ris-1 has been proposed to participate in anti-tumor responses that resemble cellular senescence and that are elicited by oncogenes such as Ras. To analyze the role of Ris-1 as a putative tumor suppressor gene in human breast cancer, we have performed a real-time quantitative analysis of its mRNA expression in 60 patients. Moreover, we carried out a first approach to evaluate the most common inactivation mechanism that can affect expression levels of tumor suppressor genes (mutation, promoter hypermethylation and allelic losses). Furthermore, a correlation study between expression as well as inactivating mechanisms of Ris-1 and several clinico-pathological parameters of the tumors was designed, with the objective of appraising the prognostic value of Ris-1 status. Decreased expression of Ris-1 was observed in 23% of the cases and overexpressed Ris-1 was detected in 15% of the primary breast tumors. Our data showed high frequency of LOH (30%) at one of the markers used. Nevertheless, a polymorphism related with the expression levels was described. Statistically significant correlations were found between decreased Ris-1 expression and negative progesterone receptors, as well as between overexpressing Ris-1 tumors and high histological grade. Despite all these data, we conclude that the suggested role of Ris-1 as tumor suppressor gene is not evident, at least in breast cancer. Future and larger series studies in different tumor types are necessary to clarify Ris-1 function in human cancer.
Insights
Researchers investigated the Ras-induced senescence 1 (Ris-1) gene in breast cancer, finding its role as a tumor suppressor gene is not clear. Further studies are needed to understand Ris-1
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Chromosome 3 losses suggest tumor suppressor genes in various cancers.
- Ras-induced senescence 1 (Ris-1) at 3p21.3 is a candidate tumor suppressor gene.
- Ris-1 may mediate anti-tumor responses resembling senescence induced by oncogenes like Ras.
Purpose of the Study:
- To analyze the role of Ris-1 as a tumor suppressor gene in human breast cancer.
- To evaluate Ris-1 mRNA expression and common inactivation mechanisms (mutation, hypermethylation, allelic loss).
- To correlate Ris-1 status with clinico-pathological parameters for prognostic value.
Main Methods:
- Real-time quantitative analysis of Ris-1 mRNA expression in 60 breast tumors.
- Assessment of mutation, promoter hypermethylation, and Loss of Heterozygosity (LOH).
- Correlation analysis with clinico-pathological features.
Main Results:
- Decreased Ris-1 expression in 23% and overexpression in 15% of primary breast tumors.
- High frequency of LOH (30%) observed at one marker.
- Significant correlations found between decreased Ris-1 and negative progesterone receptors, and overexpression with high histological grade.
Conclusions:
- The role of Ris-1 as a tumor suppressor gene in breast cancer is not evident.
- A polymorphism related to Ris-1 expression levels was identified.
- Larger studies across different tumor types are required to clarify Ris-1's function in human cancer.
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