Ratajska Magdalena, Matusiak Magdalena, Kuzniacka Alina, Wasag Bartosz, Brozek Izabela, Biernat Wojciech, Koczkowska Magdalena, Debniak Jaroslaw, Sniadecki Marcin, Kozlowski Piotr, Klonowska Katarzyna, Pilyugin Maxim, Wydra Dariusz, Laurent Geoff, Limon Janusz, Irminger-Finger Irmgard
Department of Biology and Genetics, Medical University of Gdansk, 80-211 Gdansk, Poland.
Department of Pathology, Medical University of Gdansk, 80-214 Gdansk, Poland.
Oncol Rep. 2015 Nov;34(5):2609-17. doi: 10.3892/or.2015.4235. Epub 2015 Sep 1.
BARD1 is the main binding partner of BRCA1 and is required for its stability and tumor-suppressor functions. In breast cancer and other epithelial cell carcinomas, alternatively spliced isoforms of BARD1 are highly upregulated and correlated with poor outcome. Recent data indicate that germline mutations of BARD1 may predispose to breast and/or ovarian cancer. To evaluate the role of BARD1 germline mutations in predisposition to ovarian cancer we scanned a cohort of 255 patients for the presence of previously reported mutations located in exons 5, 8 and 10 using high-resolution melting analysis. Within this group we identified single-patients carrying mutation in exon 8 (c.1690C>T, p.Gln564Ter), two different variants in exon 10 (c.1972C>T, p.Arg658Tyr; c.1977A>G, p.=) and a carrier of novel missense mutation located in exon 5 (c.1361C>T, p.Pro454Leu). Three out of four identified mutations alter exonic splicing enhancing motives and result in expression of incorrect splicing skipping of exons 5, 8, and 2-9, respectively. Our data indicate that BARD1 variants may predispose to ovarian cancer in limited number of patients although based on actual data it is difficult to estimate its actual penetrance.
BARD1是BRCA1的主要结合伴侣,对其稳定性和肿瘤抑制功能至关重要。在乳腺癌和其他上皮细胞癌中,BARD1的选择性剪接异构体高度上调,且与不良预后相关。最近的数据表明,BARD1的种系突变可能易患乳腺癌和/或卵巢癌。为了评估BARD1种系突变在卵巢癌易感性中的作用,我们使用高分辨率熔解分析对255名患者的队列进行扫描,以检测先前报道的位于外显子5、8和10中的突变。在该组中,我们鉴定出一名在外显子8中携带突变(c.1690C>T,p.Gln564Ter)的患者、两名在外显子10中携带不同变异(c.1972C>T,p.Arg658Tyr;c.1977A>G,p.=)的患者以及一名在外显子5中携带新型错义突变(c.1361C>T,p.Pro454Leu)的携带者。四个已鉴定突变中的三个改变了外显子剪接增强基序,分别导致外显子5、8和2-9的不正确剪接缺失的表达。我们的数据表明,BARD1变异可能在少数患者中易患卵巢癌,尽管根据实际数据很难估计其实际外显率。