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SPOP promotes transcriptional expression of DNA repair and replication factors to prevent replication stress and genomic instability

机译:SPOP促进DNA修复和复制因子的转录表达以防止复制压力和基因组不稳定

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摘要

Mutations in SPOP, the gene most frequently point-mutated in primary prostate cancer, are associated with a high degree of genomic instability and deficiency in homologous recombination repair of DNA but the underlying mechanisms behind this defect are currently unknown. Here we demonstrate that SPOP knockdown leads to spontaneous replication stress and impaired recovery from replication fork stalling. We show that this is associated with reduced expression of several key DNA repair and replication factors including BRCA2, ATR, CHK1 and RAD51. Consequently, SPOP knockdown impairs RAD51 foci formation and activation of CHK1 in response to replication stress and compromises recovery from replication fork stalling. An SPOP interactome analysis shows that wild type (WT) SPOP but not mutant SPOP associates with multiple proteins involved in transcription, mRNA splicing and export. Consistent with the association of SPOP with transcription, splicing and RNA export complexes, the decreased expression of BRCA2, ATR, CHK1 and RAD51 occurs at the level of transcription.
机译:SPOP是原发性前列腺癌中最常发生点突变的基因,其突变与高度的基因组不稳定和DNA的同源重组修复缺陷有关,但目前尚不清楚这种缺陷的潜在机制。在这里,我们证明了SPOP敲低会导致自发的复制压力和复制叉停滞的恢复受损。我们表明,这与包括BRCA2,ATR,CHK1和RAD51在内的几个关键DNA修复和复制因子的表达降低有关。因此,SPOP敲低会损害RAD51灶的形成和CHK1的激活,以响应复制压力并损害复制叉停转的恢复。 SPOP交互基因组分析表明,野生型(WT)SPOP而非突变型SPOP与参与转录,mRNA剪接和输出的多种蛋白质相关。与SPOP与转录,剪接和RNA出口复合物的关联一致,BRCA2,ATR,CHK1和RAD51的表达降低在转录水平上发生。

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