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The RNA processing factors THRAP3 and BCLAF1 promote the DNA damage response through selective mRNA splicing and nuclear export

机译:RNA处理因子Thrap3和BCLAF1通过选择性mRNA剪接和核出口促进DNA损伤响应

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摘要

mRNA splicing and export plays a key role in the regulation of gene expression, with recent evidence suggesting an additional layer of regulation of gene expression and cellular function through the selective splicing and export of genes within specific pathways. Here we describe a role for the RNA processing factors THRAP3 and BCLAF1 in the regulation of the cellular DNA damage response (DDR) pathway, a key pathway involved in the maintenance of genomic stability and the prevention of oncogenic transformation. We show that loss of THRAP3 and/or BCLAF1 leads to sensitivity to DNA damaging agents, defective DNA repair and genomic instability. Additionally, we demonstrate that this phenotype can be at least partially explained by the role of THRAP3 and BCLAF1 in the selective mRNA splicing and export of transcripts encoding key DDR proteins, including the ATM kinase. Moreover, we show that cancer associated mutations within THRAP3 result in deregulated processing of THRAP3/BCLAF1-regulated transcripts and consequently defective DNA repair. Taken together, these results suggest that THRAP3 and BCLAF1 mutant tumors may be promising targets for DNA damaging chemotherapy.
机译:MRNA拼接和出口在基因表达的调节中起着关键作用,最近的证据表明通过在特定途径内的选择性剪接和出口基因的基因表达和细胞功能的额外调节层。在这里,我们描述了RNA处理因子Thrap3和Bclaf1在调节细胞DNA损伤响应(DDR)途径中的作用,这是维持基因组稳定性和预防致癌转化的关键途径。我们表明,Thrap3和/或Bclaf1的丧失导致DNA破坏剂的敏感性,DNA修复和基因组不稳定性。另外,我们证明,这种表型可以至少部分地解释Thrap3和Bclaf1在编码关键DDR蛋白的转录物中的选择性mRNA剪接和出口,包括ATM激酶。此外,我们表明Thrap3内的癌症相关突变导致DERAP3 / BCLAF1调节转录物的解毒加工,因此缺陷DNA修复。总之,这些结果表明Thrap3和Bclaf1突变肿瘤可能是DNA损伤化疗的有前途的靶标。

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  • 来源
    《Nucleic Acids Research》 |2017年第22期|共18页
  • 作者单位

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Univ Napoli Federico II Dipartimento Fis E Pancini I-80126 Naples Italy;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

    Queens Univ Belfast Ctr Canc Res &

    Cell Biol 97 Lisburn Rd Belfast BT9 7BL Antrim North Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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