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Transcriptome Profiling of NIH3T3 Cell Lines Expressing Opsin and the P23H Opsin Mutant Identifies Candidate Drugs for the Treatment of Retinitis Pigmentosa

机译:表达视蛋白和P23H视蛋白突变体的NIH3T3细胞系的转录组分析鉴定了治疗色素性视网膜炎的候选药物

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摘要

Mammalian cells are commonly employed in screening assays to identify active compounds that could potentially affect the progression of different human diseases including retinitis pigmentosa (RP), a class of inherited diseases causing retinal degeneration with compromised vision. Using transcriptome analysis, we compared NIH3T3 cells expressing wildtype (WT) rod opsin with a retinal disease-causing single P23H mutation. Surprisingly, heterologous expression of WT opsin in NIH3T3 cells caused more than a 2-fold change in 783 out of 16,888 protein coding transcripts. The perturbed genes encoded extracellular matrix proteins, growth factors, cytoskeleton proteins, glycoproteins and metalloproteases involved in cell adhesion, morphology and migration. A different set of 347 transcripts was either up- or down-regulated when the P23H mutant opsin was expressed suggesting an altered molecular perturbation compared to WT opsin. Transcriptome perturbations elicited by drug candidates aimed at mitigating the effects of the mutant protein revealed that different drugs targeted distinct molecular pathways that resulted in a similar phenotype selected by a cell-based high-throughput screen. Thus, transcriptome profiling can provide essential information about the therapeutic potential of a candidate drug to restore normal gene expression in pathological conditions.
机译:哺乳动物细胞通常用于筛选测定中,以鉴定可能影响不同人类疾病进展的活性化合物,包括色素性视网膜炎(RP),这是一类导致视力受损的视网膜变性的遗传性疾病。使用转录组分析,我们比较了表达野生型(WT)杆视蛋白与视网膜病引起的单个P23H突变的NIH3T3细胞。出乎意料的是,在16,888种蛋白质编码转录本中,NIH3T3细胞中WT视蛋白的异源表达导致783倍以上的两倍变化。扰动的基因编码参与细胞粘附,形态和迁移的细胞外基质蛋白,生长因子,细胞骨架蛋白,糖蛋白和金属蛋白酶。当表达P23H突变视蛋白时,一组不同的347个转录物被上调或下调,这表明与野生型视蛋白相比,分子扰动发生了变化。候选药物引发的转录组扰动旨在减轻突变蛋白的作用,揭示了不同的药物靶向不同的分子途径,这些分子途径导致了基于细胞的高通量筛选所选择的相似表型。因此,转录组谱分析可以提供有关候选药物在病理条件下恢复正常基因表达的治疗潜力的基本信息。

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