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BRCA1 错义变异 c.5242C>A 通过增加剪接抑制因子结合诱导外显子跳跃。

The c.5242C>A BRCA1 missense variant induces exon skipping by increasing splicing repressors binding.

机构信息

INSERM U563, Institut Claudius Regaud, 20-24 rue du Pont St Pierre, 31052, Toulouse, France.

出版信息

Breast Cancer Res Treat. 2010 Apr;120(2):391-9. doi: 10.1007/s10549-009-0392-3. Epub 2009 Apr 30.

Abstract

Several unclassified variants (UV) of BRCA1 can be deleterious by affecting normal pre-mRNA splicing. Here, we investigated the consequences at the mRNA level of the frequently encountered c.5242C>A UV in BRCA1 exon 18. We show that the c.5242C>A variant induces skipping of exon 18 in UV carriers and in vitro. This alteration predicted to disrupt the first BRCT domain of BRCA1. We show that two splicing repressors, hnRNP A1 and hnRNP H/F, display a significant preference toward binding with the mutated exon 18 and assemble into a protein complex. Sequence analysis of the region surrounding the c.5242C>A change reveals the presence of hnRNP A1 and hnRNP H/F binding sites, which are modified by several UVs. Mutation of these sites alters the RNA binding ability of both splicing regulators. In conclusion, our work supports the model of the pathogenicity of the c.5242C>A BRCA1 variant that induces exon skipping by creating a sequence with silencer properties. We propose that other UVs in exon 18 interfere with splicing complex assembly by perturbing the binding of hnRNP A1 and hnRNP H/F to their respective cis-elements. RNA analysis is therefore necessary for the assessment of the consequences of UVs on splicing of disease-associated genes and to enable adequate genetic counseling for breast/ovarian cancer families.

摘要

几种未分类的 BRCA1 变体(UV)可通过影响正常的前体 mRNA 剪接而具有有害性。在这里,我们研究了 BRCA1 外显子 18 中频繁遇到的 c.5242C>A UV 在 mRNA 水平上的后果。我们表明,c.5242C>A 变体在外显子 18 的 UV 携带者和体外诱导外显子跳过。这种改变预测会破坏 BRCA1 的第一个 BRCT 结构域。我们表明,两种剪接抑制剂 hnRNP A1 和 hnRNP H/F 对与突变外显子 18 的结合表现出明显的偏好,并组装成蛋白质复合物。对 c.5242C>A 变化周围区域的序列分析揭示了 hnRNP A1 和 hnRNP H/F 结合位点的存在,这些位点被几种 UV 修饰。这些位点的突变改变了这两个剪接调节剂的 RNA 结合能力。总之,我们的工作支持了 c.5242C>A BRCA1 变体通过创建具有沉默特性的序列来诱导外显子跳跃的致病性模型。我们提出,外显子 18 中的其他 UV 通过干扰 hnRNP A1 和 hnRNP H/F 与其各自顺式元件结合来干扰剪接复合物的组装。因此,对于评估 UV 对疾病相关基因剪接的影响并为乳腺癌/卵巢癌家族提供适当的遗传咨询,RNA 分析是必要的。

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