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Molecular basis of differential 3′ splice site sensitivity to anti-tumor drugs targeting U2 snRNP

机译:3'剪接位点对靶向U2 snRNP的抗肿瘤药物敏感性的分子基础

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Several splicing-modulating compounds, including Sudemycins and Spliceostatin A, display anti-tumor properties. Combining transcriptome, bioinformatic and mutagenesis analyses, we delineate sequence determinants of the differential sensitivity of 3′ splice sites to these drugs. Sequences 5′ from the branch point (BP) region strongly influence drug sensitivity, with additional functional BPs reducing, and BP-like sequences allowing, drug responses. Drug-induced retained introns are typically shorter, displaying higher GC content and weaker polypyrimidine-tracts and BPs. Drug-induced exon skipping preferentially affects shorter alternatively spliced regions with weaker BPs. Remarkably, structurally similar drugs display both common and differential effects on splicing regulation, SSA generally displaying stronger effects on intron retention, and Sudemycins more acute effects on exon skipping. Collectively, our results illustrate how splicing modulation is exquisitely sensitive to the sequence context of 3′ splice sites and to small structural differences between drugs.
机译:几种剪接调节化合物,包括苏德霉素和Spliceostatin A,均显示出抗肿瘤特性。结合转录组,生物信息学和诱变分析,我们描绘了3'剪接位点对这些药物的差异敏感性的序列决定因素。来自分支点(BP)区域的序列5'强烈影响药物敏感性,同时附加的功能性BP减少,并且类似BP的序列允许药物反应。药物诱导的内含子通常较短,表现出较高的GC含量和较弱的聚嘧啶片段和BP。药物诱导的外显子跳跃优先影响具有较弱BP的较短的交替剪接区域。值得注意的是,结构相似的药物在剪接调控上表现出相同和不同的作用,SSA通常对内含子保留表现出更强的作用,而Sudemycins对外显子跳跃表现出更强烈的影响。总的来说,我们的结果说明了剪接调节如何对3'剪接位点的序列上下文和药物之间的小结构差异非常敏感。

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