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Two Missense Variants Detected in Breast Cancer Probands Preventing BRCA2-PALB2 Protein Interaction
Laura Caleca1, Irene Catucci2, Gisella Figlioli2
1Unit of Molecular Bases of Genetic Risk and Genetic Testing, Department of Research, Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy.
Abstract:
PALB2 (partner and localizer of BRCA2) was initially identified as a binding partner of BRCA2. It interacts also with BRCA1 forming a complex promoting DNA repair by homologous recombination. Germline pathogenic variants in BRCA1, BRCA2 and PALB2 DNA repair genes are associated with high risk of developing breast cancer. Mutation screening in these breast cancer predisposition genes is routinely performed and allows the identification of individuals who carry pathogenic variants and are at risk of developing the disease. However, variants of uncertain significance (VUSs) are often detected and establishing their pathogenicity and clinical relevance remains a central challenge for the risk assessment of the carriers and the clinical decision-making process. Many of these VUSs are missense variants leading to single amino acid substitutions, whose impact on protein function is uncertain. Typically, VUSs are rare and due to the limited genetic, clinical, and pathological data the multifactorial approaches used for classification cannot be applied. Thus, these variants can only be characterized through functional analyses comparing their effect with that of normal and mutant gene products used as positive and negative controls. The two missense variants BRCA2:c.91T >G (p.Trp31Gly) and PALB2:c.3262C >T (p.Pro1088Ser) were detected in two breast cancer probands originally ascertained at Breast Cancer Units of Institutes located in Milan and Bergamo (Northern Italy), respectively. These variants were located in the BRCA2-PALB2 interacting domains, were predicted to be deleterious by in silico analyses, and were very rare and clinically not classified. Therefore, we initiate to study their functional effect by exploiting a green fluorescent protein (GFP)-reassembly in vitro assay specifically designed to test the BRCA2-PALB2 interaction. This functional assay proved to be easy to develop, robust and reliable. It also allows testing variants located in different genes. Results from these functional analyses showed that the BRCA2:p.Trp31Gly and the PALB2:p.Pro1088Ser prevented the BRCA2-PALB2 binding. While caution is warranted when the interpretation of the clinical significance of rare VUSs is based on functional studies only, our data provide initial evidences in favor of the possibility that these variants are pathogenic.
Insights
Pathogenic variants in BRCA1, BRCA2, and PALB2 genes increase breast cancer risk. Functional analysis of two variants, BRCA2:p.Trp31Gly and PALB2:p.Pro1088Ser, revealed they disrupt crucial protein interactions, suggesting they may be pathogenic.
Area of Science:
- Genetics and Molecular Biology
- Cancer Research
- Biochemistry
Background:
- Germline pathogenic variants in DNA repair genes BRCA1, BRCA2, and PALB2 are linked to increased breast cancer risk.
- Variants of Uncertain Significance (VUSs), particularly missense variants, pose challenges in clinical risk assessment due to limited data.
- Functional analyses are crucial for classifying VUSs and understanding their impact on protein function.
Purpose of the Study:
- To functionally characterize two unclassified missense variants, BRCA2:c.91T >G (p.Trp31Gly) and PALB2:c.3262C >T (p.Pro1088Ser), detected in breast cancer patients.
- To assess the impact of these variants on the interaction between BRCA2 and PALB2 proteins.
- To provide evidence for the potential pathogenicity of these variants.
Main Methods:
- Utilized a green fluorescent protein (GFP)-reassembly in vitro assay to evaluate the BRCA2-PALB2 interaction.
- Tested the functional effect of BRCA2:p.Trp31Gly and PALB2:p.Pro1088Ser variants on protein binding.
- Compared variant effects to normal and mutant controls.
Main Results:
- The functional assay demonstrated that both BRCA2:p.Trp31Gly and PALB2:p.Pro1088Ser variants disrupt the binding between BRCA2 and PALB2 proteins.
- These variants were located in critical protein-interaction domains and predicted as deleterious by in silico analyses.
- The assay proved to be a robust and reliable method for testing variants affecting protein interactions.
Conclusions:
- The functional data suggest that BRCA2:p.Trp31Gly and PALB2:p.Pro1088Ser variants may be pathogenic by impairing the BRCA2-PALB2 interaction.
- Functional studies provide valuable evidence for classifying rare VUSs, aiding in breast cancer risk assessment.
- Further clinical correlation is warranted, but these findings contribute to understanding the role of these variants in DNA repair and cancer predisposition.
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