Abstract

Germ line mutations of the BRCA1 gene confer a high risk of breast cancer and ovarian cancer to female mutation carriers. The BRCA1 protein is involved in the regulation of DNA repair. How specific tumor-associated mutations affect the molecular function of BRCA1, however, awaits further elucidation. Cell lines that harbor BRCA1 gene mutations are invaluable tools for such functional studies. Up to now, the HCC1937 cell line was the only human breast cancer cell line with an identified BRCA1 mutation. In this study, we identified three other BRCA1 mutants from among 41 human breast cancer cell lines by sequencing of the complete coding sequence of BRCA1. Cell line MDA-MB-436 had the 5396 + 1G>A mutation in the splice donor site of exon 20. Cell line SUM149PT carried the 2288delT mutation and SUM1315MO2 carried the 185delAG mutation. All three mutations were accompanied by loss of the other BRCA1 allele. The 185delAG and 5396 + 1G>A mutations are both classified as pathogenic mutations. In contrast with wild-type cell lines, none of the BRCA1 mutants expressed nuclear BRCA1 proteins as detected with Ab-1 and Ab-2 anti-BRCA1 monoclonal antibodies. These three new human BRCA1 mutant cell lines thus seem to be representative breast cancer models that could aid in further unraveling of the function of BRCA1.

Highlights

  • Germ line mutations of the BRCA1 breast cancer susceptibility gene predispose female carriers to develop breast cancer and ovarian cancer (OMIM 113705; http://www.ncbi.nlm.nih.gov/ omim/)

  • The BRCA1 protein normally resides in a nuclear multiprotein complex, including BRCA2, BARD1, and RAD51, and the DNA damage repair proteins MSH2, MLH1, MSH6, ATM, NBS1, MRE11, RAD50, BLM, and RFC

  • BRCA1 has been suggested to have a pivotal function within BRCA1associated genome surveillance complex by coordinating the actions of damage-sensing proteins and executive repair proteins

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Summary

Introduction

Germ line mutations of the BRCA1 breast cancer susceptibility gene predispose female carriers to develop breast cancer and ovarian cancer (OMIM 113705; http://www.ncbi.nlm.nih.gov/ omim/). A single human BRCA1 mutant breast cancer cell line had far been described We screened 41 human breast cancer cell lines for alterations in the BRCA1 gene sequence.

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