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Transcriptional responses of zebrafish embryos exposed to potential sonic hedgehog pathway interfering compounds deviate from expression profiles of cyclopamine

机译:斑马鱼胚胎暴露于潜在的声波刺猬信号通路干扰化合物的转录反应偏离了环巴胺的表达谱

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摘要

The molecular responses of two small molecules, SANT-2 and GANT-61, potentially interfering with the sonic hedgehog pathway (Shh) have been studied in zebrafish embryos by microarray analysis. For both compounds and the positive reference cyclopamine previous reporter gene assays for the transcription factor Gli1 have indicated an inhibition of the hedgehog signaling pathway. In zebrafish embryos a typical phenotype (cyclopia) associated with Shh interference was only observed for cyclopamine. Furthermore, only cyclopamine led to the repression of genes specifically associated with hedgehog signaling and confirmed published microarray data. In contrast to these data hspb11 was additionally identified as the most pronounced down-regulated genes for exposure to cyclopamine. No or different effects on gene expression patterns were provoked by SANT-2 or GANT-61, respectively. Reasons for the discrepancies between cellular reporter and the zebrafish embryo assay and potential implications for the identification of compounds interfering with specific developmental pathways are discussed.
机译:通过微阵列分析,已经在斑马鱼胚胎中研究了两个可能干扰声猬因子途径(Shh)的小分子SANT-2和GANT-61的分子响应。对于这两种化合物和阳性参考环巴胺,先前针对转录因子Gli1的报道基因检测均表明刺猬信号通路受到抑制。在斑马鱼胚胎中,仅对环巴胺观察到与Shh干扰有关的典型表型(Cyclopia)。此外,仅环巴胺导致与刺猬蛋白信号转导特别相关的基因的抑制,并证实已发表的微阵列数据。与这些数据相反,hspb11还被确定为暴露于环巴胺的最明显的下调基因。 SANT-2或GANT-61分别对基因表达模式没有影响。讨论了细胞报告基因与斑马鱼胚胎检测方法之间差异的原因,以及鉴定干扰特定发育途径的化合物的潜在意义。

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