首页> 外文期刊>Nucleic Acids Research >Tissue-specific splicing factor gene expression signatures.
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Tissue-specific splicing factor gene expression signatures.

机译:组织特异性剪接因子基因表达特征。

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The alternative splicing code that controls and coordinates the transcriptome in complex multicellular organisms remains poorly understood. It has long been argued that regulation of alternative splicing relies on combinatorial interactions between multiple proteins, and that tissue-specific splicing decisions most likely result from differences in the concentration and/or activity of these proteins. However, large-scale data to systematically address this issue have just recently started to become available. Here we show that splicing factor gene expression signatures can be identified that reflect cell type and tissue-specific patterns of alternative splicing. We used a computational approach to analyze microarray-based gene expression profiles of splicing factors from mouse, chimpanzee and human tissues. Our results show that brain and testis, the two tissues with highest levels of alternative splicing events, have the largest number of splicing factor genes that are most highly differentially expressed. We further identified SR protein kinases and small nuclear ribonucleoprotein particle (snRNP) proteins among the splicing factor genes that are most highly differentially expressed in a particular tissue. These results indicate the power of generating signature-based predictions as an initial computational approach into a global view of tissue-specific alternative splicing regulation.
机译:控制和协调复杂的多细胞生物中的转录组的替代剪接代码仍然知之甚少。长期以来一直争论的是,选择性剪接的调控依赖于多种蛋白质之间的组合相互作用,而组织特异性剪接决定最有可能是由于这些蛋白质的浓度和/或活性的差异所致。但是,用于系统解决此问题的大规模数据最近才开始可用。在这里,我们表明可以鉴定剪接因子基因表达特征,以反映细胞类型和替代剪接的组织特异性模式。我们使用一种计算方法来分析来自小鼠,黑猩猩和人体组织的剪接因子的基于微阵列的基因表达谱。我们的结果表明,大脑和睾丸这两个具有最高水平的可变剪接事件的组织,其剪接因子基因的数量最多,差异表达最高。我们进一步鉴定了在特定组织中差异表达最高的剪接因子基因中的SR蛋白激酶和核小核糖核蛋白小颗粒(snRNP)蛋白。这些结果表明生成基于特征的预测的力量,将其作为组织特定替代剪接调控的整体视图的初始计算方法。

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