4.6 Article

The BRCA1 alternative splicing variant Δ14-15 with an in-frame deletion of part of the regulatory serine-containing domain (SCD) impairs the DNA repair capacity in MCF-7 cells

期刊

CELLULAR SIGNALLING
卷 24, 期 5, 页码 1023-1030

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cellsig.2011.12.023

关键词

BRCA1; Alternative splicing; Breast cancer; DNA damage; Homologous recombination; Non-homologous end joining; BRCA1-serine-containing domain (SCD)

资金

  1. Internal Grant Agency of the Ministry of Health [NT12280]
  2. Charles University Grant Agency [428711]
  3. Czech Science Foundation [P302/10/1022]
  4. Grant Agency of the Academy of Sciences of the Czech Republic [IAA500040802]
  5. [SVV-2011-262513]

向作者/读者索取更多资源

The BRCA1 gene codes for a protein involved in the DNA double strand break (DDSB) repair. Alongside the dominant full-length splicing form of BRCA1, numerous endogenously expressed alternative splicing variants of unknown significance have been described in various tissues. Some of them retain the original BRCA1 reading frame but lack several critical BRCA1 structural domains, suggesting an altered function of the resulting protein in the BRCA1-regulated processes. To characterize the effect of the BRC1 Delta 14-15 splicing variant (with an in-frame deletion affecting the regulatory serine-containing domain) on the DDSB repair, we constructed the MCF-7 clones stably expressing the analyzed variant with/without a shRNA-mediated downregulation of the endogenous full-length wildtype BRCA1 expression. Our results show that the expression of the BRCA1 Delta 14-15 variant delays the gamma-radiation-induced DDSB repair, alters the kinetics of irradiation-induced foci formation/decomposition and reduces the non-homologous end-joining capacity in MCF-7 cells. Therefore, the BRCA1 Delta 14-15 is not able to functionally replace the full-length wt BRCA1 in the DDSB repair. Our findings indicate that the endogenously expressed BRCA1 alternative splicing variants may negatively influence genome stability and support the growing evidence of the pathological potential of the sequence variants generated by an altered or misregulated alternative splicing in the process of mammary malignant transformation. (C) 2011 Elsevier Inc. All rights reserved.

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