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SLFN11 inhibits checkpoint maintenance and homologous recombination repair

机译:SLFN11抑制检查点维护和同源重组修复

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摘要

High expression levels of SLFN11 correlate with the sensitivity of human cancer cells to DNA‐damaging agents. However, little is known about the underlying mechanism. Here, we show that SLFN11 interacts directly with RPA1 and is recruited to sites of DNA damage in an RPA1‐dependent manner. Furthermore, we establish that SLFN11 inhibits checkpoint maintenance and homologous recombination repair by promoting the destabilization of the RPA–ssDNA complex, thereby sensitizing cancer cell lines expressing high endogenous levels of SLFN11 to DNA‐damaging agents. Finally, we demonstrate that the RPA1‐binding ability of SLFN11 is required for its function in the DNA damage response. Our findings not only provide novel insight into the molecular mechanisms underlying the drug sensitivity of cancer cell lines expressing SLFN11 at high levels, but also suggest that SLFN11 expression can serve as a biomarker to predict responses to style="fixed-case">DNA‐damaging therapeutic agents.
机译:SLFN11的高表达水平与人类癌细胞对DNA破坏剂的敏感性有关。但是,关于底层机制知之甚少。在这里,我们显示SLFN11与RPA1直接相互作用,并以RPA1依赖性方式被募集到DNA损伤位点。此外,我们发现SLFN11通过促进RPA-ssDNA复合物的失稳来抑制检查点的维持和同源重组的修复,从而使表达高内源性SLFN11的癌细胞系对DNA破坏剂敏感。最后,我们证明SLFN11的RPA1结合能力是其在DNA损伤反应中的功能所必需的。我们的发现不仅为高水平表达SLFN11的癌细胞系的药物敏感性基础的分子机制提供了新颖的见解,而且还表明SLFN11的表达可以作为生物标志物来预测对 style =“ fixed-case”>破坏DNA的治疗剂。

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