RASSF1A polymorphism A133S is associated with early onset breast cancer in BRCA1/2 mutation carriers
Boning Gao1, Xian-Jin Xie, Chunxian Huang
1Hamon Center for Therapeutic Oncology Research, The University of Texas Southwestern Medical Center at Dallas, 6000 Harry Hines Boulevard, Dallas, TX 75390-8593, USA. boning.gao@utsouthwestern.edu
Abstract:
The tumor suppressor gene RASSF1A regulates cell cycle progression, apoptosis, and microtubule stability and is inactivated by promoter methylation in approximately 50% of breast cancers. It has been shown previously that the polymorphism A133S in RASSF1A reduces its ability to regulate cell cycle progression and this polymorphism is associated with an increased risk of breast cancer. We analyzed the frequency of RASSF1A A133S in 190 Caucasian women without breast cancer and 653 patients with breast cancer including 138 BRCA1 and BRCA2 (BRCA1/2) mutation carriers, 395 non-BRCA1/2 mutations carriers, and 120 untested for BRCA1/2 mutations. Patients with breast cancer had a higher frequency of A133S than the controls [P = 0.017; odds ratios (OR), 1.71; 95% confidence intervals (95% CI), 1.10-2.66]. There is also a higher frequency of A133S in patients with higher familial breast cancer risk (P = 0.029; OR, 1.76; 95% CI, 1.06-2.92) and patients carrying BRCA1/2 mutations (P = 0.037, OR, 1.82; 95% CI, 1.04-3.18). Importantly, we found that the co-occurrence of a BRCA1 or BRCA2 mutation and A133S in RASSF1A was associated with earlier onset of breast cancer compared with those individuals with either a BRCA1/2 mutation or the A133S polymorphism alone (36.0 versus 42.0 years old, P = 0.002). Our data suggest that the presence of the RASSF1A A133S polymorphism is associated with breast cancer pathogenesis in general and modifies breast cancer age of onset in BRCA1/2 mutations carriers. Our results warrant a large-scale study to examine the effect of the A133S polymorphism in the development of breast and other types of cancers.
Insights
The RASSF1A A133S polymorphism increases breast cancer risk and is linked to earlier onset in BRCA1/2 mutation carriers. This genetic variant plays a role in breast cancer development and progression.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- The tumor suppressor gene RASSF1A is crucial for cell cycle control and apoptosis.
- RASSF1A is frequently inactivated in breast cancer via promoter methylation.
- The RASSF1A A133S polymorphism impairs cell cycle regulation and is associated with increased breast cancer risk.
Purpose of the Study:
- To investigate the frequency of the RASSF1A A133S polymorphism in breast cancer patients and controls.
- To determine the association of RASSF1A A133S with breast cancer risk, familial risk, and BRCA1/2 mutations.
- To analyze the impact of RASSF1A A133S, alone or with BRCA1/2 mutations, on breast cancer age of onset.
Main Methods:
- Genotyping analysis of the RASSF1A A133S polymorphism.
- Case-control study comparing breast cancer patients (including BRCA1/2 carriers) and healthy controls.
- Statistical analysis to assess frequency, odds ratios, confidence intervals, and age of onset.
Main Results:
- The RASSF1A A133S polymorphism was more frequent in breast cancer patients (OR, 1.71) compared to controls.
- Higher frequency of A133S was observed in patients with high familial breast cancer risk and BRCA1/2 mutation carriers.
- Co-occurrence of BRCA1/2 mutation and RASSF1A A133S significantly reduced age of onset (36.0 years) compared to either factor alone (42.0 years).
Conclusions:
- The RASSF1A A133S polymorphism is associated with general breast cancer pathogenesis.
- This polymorphism modifies the age of onset in individuals carrying BRCA1/2 mutations.
- Further large-scale studies are warranted to explore the role of RASSF1A A133S in various cancers.
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