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首页> 外文期刊>Nature Communications >Suppression of the FOXM1 transcriptional programme via novel small molecule inhibition
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Suppression of the FOXM1 transcriptional programme via novel small molecule inhibition

机译:通过新颖的小分子抑制FOXM1转录程序的抑制

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摘要

The transcription factor FOXM1 binds to sequence-specific motifs on DNA (C/TAAACA) through its DNA-binding domain (DBD) and activates proliferation- and differentiation-associated genes. Aberrant overexpression of FOXM1 is a key feature in oncogenesis and progression of many human cancers. Here-from a high-throughput screen applied to a library of 54,211 small molecules-we identify novel small molecule inhibitors of FOXM1 that block DNA binding. One of the identified compounds, FDI-6 (NCGC00099374), is characterized in depth and is shown to bind directly to FOXM1 protein, to displace FOXM1 from genomic targets in MCF-7 breast cancer cells, and induce concomitant transcriptional downregulation. Global transcript profiling of MCF-7 cells by RNA-seq shows that FDI-6 specifically downregulates FOXM1-activated genes with FOXM1 occupancy confirmed by ChIP-PCR. This small molecule-mediated effect is selective for FOXM1-controlled genes with no effect on genes regulated by homologous forkhead family factors.
机译:转录因子FOXM1通过其DNA结合域(DBD)与DNA(C / TAAACA)上的序列特异性基序结合,并激活与增殖和分化相关的基因。 FOXM1的异常过表达是许多人类癌症的发生和发展的关键特征。在这里-从应用于54,211个小分子的文库中的高通量筛选-我们鉴定出了能够阻断DNA结合的FOXM1新型小分子抑制剂。鉴定出的化合物之一FDI-6(NCGC00099374)具有深度特征,并显示与FOXM1蛋白直接结合,可将FOXM1从MCF-7乳腺癌细胞的基因组靶标中置换出来,并诱导相应的转录下调。 RNA序列对MCF-7细胞的整体转录谱分析表明,FDI-6特异性下调了FOXM1激活的基因,而ChIP-PCR证实了FOXM1的存在。这种小分子介导的作用对FOXM1控制的基因具有选择性,而对同源叉头家族因子调控的基因没有影响。

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