靶向FOXO转录因子并调节其转录活性和生理功能的小化合物的发现

J. Hagenbuchner, V. Obsilova, P. Obexer, T. Obsil, M. Ausserlechner
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引用次数: 0

摘要

FOXO转录因子是细胞稳态的关键调节因子,控制着大量不同的靶基因,从而引导哺乳动物细胞的死亡、分化、寿命和衰老。本研究的目的是鉴定与FOXO3的dna结合域结合并调节其转录活性的新化合物。该策略是将基于药物团模型的硅化合物筛选与荧光偏振蛋白- dna结合试验和基于细胞的化合物验证相结合。通过这种方法,我们确定了与FOXO转录因子的dna结合域(DBD)物理相互作用的小分子,这些小分子与人类FOXO3的亲和力最高。这些化合物不作为化学抑制剂,但在人类细胞中调节FOXO3转录程序。通过核磁共振波谱和对接研究评估了化合物与FOXO3-DBD的相互作用模式。我们证明了化合物S9及其草酸盐S9OX干扰FOXO3靶启动子结合,调节不同基因亚群的转录,并干扰FOXO3在癌细胞中激活的生理程序。这些小分子证明了FOXO-DBD的可药物性,并通过直接影响正常和恶性细胞中的蛋白质- dna相互作用,为调节这些重要的稳态调节因子提供了结构基础。
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Discovery of Small Compounds that Target FOXO Transcription Factors and Modulate their Transcriptional Activity and Physiological Function
FOXO transcription factors are critical regulators of cell homeostasis that control a plethora of different target genes and thereby steer cell death, differentiation, longevity and senescence in mammalian cells. The objective of the present study was to identify novel chemical compounds that bind to the DNA-binding domain of FOXO3 and modulate its transcriptional activity. The strategy was to combine pharmacophore-modelling-based in silico compound screening with fluorescence polarization protein-DNA binding assays and cell-based compound validation. By this approach, we identified small molecules that physically interact with the DNA-binding domain (DBD) of FOXO transcription factors with highest affinity to human FOXO3. These compounds do not act as chemical inhibitors, but modulate the FOXO3 transcriptional program in human cells. The mode of interaction between compounds and the FOXO3-DBD was assessed by NMR spectroscopy and docking studies. We demonstrate that compound S9 and its oxalate salt S9OX interfere with FOXO3 target promoter binding, modulate the transcription of distinct gene subsets and interfere with the physiological program activated by FOXO3 in cancer cells. These small molecules prove the druggability of the FOXO-DBD and provide a structural basis for modulating these important homeostasis regulators by directly affecting protein-DNA interaction in normal and malignant cells.
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