Familial breast cancer screening reveals an alteration in the RAP80 UIM domain that impairs DNA damage response
J Nikkilä1, K A Coleman, D Morrissey
1Department of Clinical Genetics and Biocenter Oulu, Oulu University Hospital, University of Oulu, Finland.
Abstract:
Germline mutations in two major susceptibility genes, BRCA1 and BRCA2, account for nearly 20% of familial breast cancers. A majority of the remaining genetic factors involved in heritable breast cancer susceptibility are, however, unknown. Recently, a new BRCA1-interacting protein, receptor associated protein 80 (RAP80), was identified. RAP80 plays an important role in BRCA1-mediated DNA damage responses (DDRs) by recruiting BRCA1 to DNA double-strand breaks (DSBs). A comprehensive screening of DNA from affected index cases of 112 BRCA1/BRCA2 mutation-negative Finnish breast cancer families revealed altogether 10 alterations in RAP80, one of which, c.241-243delGAA, resulted in a single glutamic acid deletion at residue 81 in a highly conserved region of ubiquitin interaction motif 1. The resultant delE81 protein product displayed significantly reduced ubiquitin binding and DSB localization. Expression of the RAP80 delE81 allele impaired both BRCA1 and ABRA1 DSB recruitment, thus compromising BRCA1-mediated DDR signaling. Compared with wild-type RAP80, expression of the delE81 allele was associated with a significant increase in cytogenetically detectable chromosomal aberrations, particularly chromatid breaks. Although evidently quite rare, these results suggest that critical constitutional mutations in RAP80 abrogate DDR function and may be involved in genetic predisposition to cancer.
Insights
Rare mutations in the RAP80 gene may contribute to hereditary breast cancer by impairing DNA damage response pathways. This finding suggests RAP80 as a potential factor in familial cancer predisposition.
Area of Science:
- Genetics
- Molecular Biology
- Cancer Research
Background:
- Germline mutations in BRCA1/BRCA2 genes are linked to familial breast cancer, but most genetic factors remain unknown.
- Receptor-associated protein 80 (RAP80) is a newly identified BRCA1-interacting protein crucial for DNA damage response (DDR).
Purpose of the Study:
- To investigate the role of RAP80 mutations in hereditary breast cancer susceptibility.
- To identify genetic alterations in RAP80 in BRCA1/BRCA2-negative familial breast cancer cases.
Main Methods:
- Screening of RAP80 DNA in 112 Finnish breast cancer families negative for BRCA1/BRCA2 mutations.
- Functional analysis of a specific RAP80 mutation (c.241-243delGAA) on protein function and DNA damage response.
Main Results:
- Ten RAP80 alterations were identified, including a deletion (delE81) affecting ubiquitin binding and DNA double-strand break (DSB) localization.
- The RAP80 delE81 mutation impaired BRCA1 recruitment to DSBs, compromising DDR signaling and increasing chromosomal aberrations.
- Expression of the delE81 allele led to a significant rise in chromatid breaks.
Conclusions:
- Constitutional mutations in RAP80, though rare, can disrupt DNA damage response pathways.
- These RAP80 mutations may represent a novel genetic factor in hereditary breast cancer predisposition.
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