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Screen for modulators of atonal homolog 1 gene expression using notch pathway-relevant gene transcription based cellular assays

机译:使用与缺口途径相关的基因转录为基础的细胞分析筛选非同源1基因表达调节剂

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摘要

Atonal homolog 1 (Atoh1) is a basic helix-loop-helix 9 (bHLH) transcription factor acting downstream of Notch and is required for the differentiation of sensory hair cells in the inner ear and the specification of secretory cells during the intestinal crypt cell regeneration. Motivated by the observations that the upregulation of Atoh1 gene expression, through genetic manipulation or pharmacological inhibition of Notch signaling (e.g. γ-secretase inhibitors, GSIs), induces ectopic hair cell growth in the cochlea of the inner ear and partially restores hearing after injuries in experimental models, we decided to identify small molecule modulators of the Notch-Atoh1 pathway, which could potentially regenerate hair cells. However, the lack of cellular models of the inner ear has precluded the screening and characterization of such modulators. Here we report using a colon cancer cell line LS-174T, which displays Notch inhibition-dependent Atoh1 expression as a surrogate cellular model to screen for inducers of Atoh1 expression. We designed an Atoh1 promoter-driven luciferase assay to screen a target-annotated library of ~6000 compounds. We further developed a medium throughput, real-time quantitative RT-PCR assay measuring the endogenous Atoh1 gene expression to confirm the hits and eliminate false positives from the reporter-based screen. This strategy allowed us to successfully recover GSIs of known chemotypes. This LS-174T cell-based assay directly measures Atoh1 gene expression induced through Notch-Hes1 inhibition, and therefore offers an opportunity to identify novel cellular modulators along the Notch-Atoh1 pathway.
机译:Atonal同系物1(Atoh1)是作用于Notch下游的基本螺旋-环-螺旋9(bHLH)转录因子,是内耳感觉毛细胞分化和肠隐窝细胞再生过程中分泌细胞规格所必需的。通过观察发现,通过遗传操纵或Notch信号的药理抑制(例如γ-分泌酶抑制剂,GSI),Atoh1基因表达的上调可诱导内耳耳蜗异位毛细胞生长,并在受伤后部分恢复听力。在实验模型中,我们决定确定Notch-Atoh1途径的小分子调节剂,它可能会再生毛细胞。然而,内耳细胞模型的缺乏已经排除了这种调节剂的筛选和表征。在这里,我们报告使用结肠癌细胞系LS-174T,该细胞系显示Notch抑制依赖性Atoh1表达作为替代细胞模型以筛选Atoh1表达的诱导物。我们设计了Atoh1启动子驱动的荧光素酶测定法,以筛选约6000种化合物的目标注释文库。我们进一步开发了一种中等通量,实时定量RT-PCR测定法,可测量内源性Atoh1基因表达,以确认点击并从基于报告的筛选中消除假阳性。这种策略使我们能够成功恢复已知化学型的GSI。这种基于LS-174T细胞的测定法直接测量通过Notch-Hes1抑制作用诱导的Atoh1基因表达,因此提供了沿Notch-Atoh1途径鉴定新型细胞调节剂的机会。

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