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Visualization of DNA Repair Proteins Interaction by Immunofluorescence
Published on: June 26, 2020
Aberrant expression of DNA damage response proteins is associated with breast cancer subtype and clinical features
Gulnur Guler1, Cigdem Himmetoglu, Rafael E Jimenez
1Department of Pathology, Hacettepe University, Ankara, Turkey.
Abstract:
Landmark studies of the status of DNA damage checkpoints and associated repair functions in preneoplastic and neoplastic cells has focused attention on importance of these pathways in cancer development, and inhibitors of repair pathways are in clinical trials for treatment of triple negative breast cancer. Cancer heterogeneity suggests that specific cancer subtypes will have distinct mechanisms of DNA damage survival, dependent on biological context. In this study, status of DNA damage response (DDR)-associated proteins was examined in breast cancer subtypes in association with clinical features; 479 breast cancers were examined for expression of DDR proteins γH2AX, BRCA1, pChk2, and p53, DNA damage-sensitive tumor suppressors Fhit and Wwox, and Wwox-interacting proteins Ap2α, Ap2γ, ErbB4, and correlations among proteins, tumor subtypes, and clinical features were assessed. In a multivariable model, triple negative cancers showed significantly reduced Fhit and Wwox, increased p53 and Ap2γ protein expression, and were significantly more likely than other subtype tumors to exhibit aberrant expression of two or more DDR-associated proteins. Disease-free survival was associated with subtype, Fhit and membrane ErbB4 expression level and aberrant expression of multiple DDR-associated proteins. These results suggest that definition of specific DNA repair and checkpoint defects in subgroups of triple negative cancer might identify new treatment targets. Expression of Wwox and its interactor, ErbB4, was highly significantly reduced in metastatic tissues vs. matched primary tissues, suggesting that Wwox signal pathway loss contributes to lymph node metastasis, perhaps by allowing survival of tumor cells that have detached from basement membranes, as proposed for the role of Wwox in ovarian cancer spread.
Insights
Triple negative breast cancer exhibits distinct DNA damage response (DDR) protein alterations. Aberrant DDR protein expression in triple negative cancers correlates with poorer disease-free survival, suggesting new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- DNA damage response (DDR) pathways are crucial in cancer development.
- Triple-negative breast cancer (TNBC) heterogeneity necessitates subtype-specific understanding of DDR mechanisms.
- Inhibitors targeting DNA repair pathways are under investigation for TNBC treatment.
Purpose of the Study:
- To investigate the status of DDR-associated proteins in various breast cancer subtypes.
- To correlate protein expression with clinical features and patient survival.
- To identify potential therapeutic targets within specific breast cancer subtypes, particularly TNBC.
Main Methods:
- Examined expression of DDR proteins (γH2AX, BRCA1, pChk2, p53) and tumor suppressors (Fhit, Wwox) in 479 breast cancers.
- Assessed Wwox-interacting proteins (Ap2α, Ap2γ, ErbB4).
- Correlated protein expression with tumor subtypes and clinical features using multivariable models.
Main Results:
- Triple-negative cancers showed significantly reduced Fhit and Wwox, increased p53 and Ap2γ.
- TNBC tumors were more likely to exhibit aberrant expression of multiple DDR proteins.
- Disease-free survival was linked to subtype, Fhit, membrane ErbB4 levels, and aberrant DDR protein expression.
- Wwox and ErbB4 expression was significantly lower in metastatic tissues compared to primary tissues.
Conclusions:
- Specific DNA repair and checkpoint defects in TNBC subgroups may offer novel treatment strategies.
- Loss of the Wwox signaling pathway may contribute to lymph node metastasis, potentially by enabling survival of detached tumor cells.
- Understanding DDR protein alterations is key to personalized treatment approaches in breast cancer.
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