Institute of Biochemistry and Experimental Oncology, First Faculty of Medicine, Charles University in Prague, U Nemocnice 5, 128 53 Prague 2, Czech Republic.
Cell Signal. 2012 May;24(5):1023-30. doi: 10.1016/j.cellsig.2011.12.023. Epub 2012 Jan 3.
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 BRCA1Δ14-15 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 wild-type BRCA1 expression. Our results show that the expression of the BRCA1Δ14-15 variant delays the γ-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 BRCA1Δ14-15 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.
BRCA1 基因编码一种参与 DNA 双链断裂(DDSB)修复的蛋白质。除了优势的全长剪接形式的 BRCA1 外,在各种组织中还描述了许多内源性表达的、具有未知意义的替代剪接变体。其中一些保留了原始的 BRCA1 阅读框,但缺乏几个关键的 BRCA1 结构域,这表明产生的蛋白质在 BRCA1 调节的过程中具有改变的功能。为了研究 BRCA1Δ14-15 剪接变体(具有影响调节性含丝氨酸结构域的框内缺失)对 DDSB 修复的影响,我们构建了稳定表达分析变体的 MCF-7 克隆,同时使用 shRNA 介导的内源性全长野生型 BRCA1 表达下调。我们的结果表明,BRCA1Δ14-15 变体的表达延迟了 γ 辐射诱导的 DDSB 修复,改变了照射诱导焦点形成/分解的动力学,并降低了 MCF-7 细胞中非同源末端连接的能力。因此,BRCA1Δ14-15 不能在 DDSB 修复中功能性地替代全长 wt BRCA1。我们的发现表明,内源性表达的 BRCA1 替代剪接变体可能会对基因组稳定性产生负面影响,并支持越来越多的证据表明,在乳腺恶性转化过程中,由改变或失调的替代剪接产生的序列变体具有病理潜力。