Department of Biological Sciences, Vanderbilt University, Nashville, TN USA.
RNA Biol. 2010 Jul-Aug;7(4):486-94. doi: 10.4161/rna.7.4.11567. Epub 2010 Jul 1.
Previous work led to the hypothesis that SRrp86, a related member of the SR protein superfamily, can interact with and modulate the activity of other SR proteins. Here, we sought to test this hypothesis by examining the effect of changing SRrp86 concentrations on overall alternative splicing patterns. SpliceArrays were used to examine 9,854 splicing events in wild-type cells, cells overexpressing SRrp86, and cells treated with siRNAs to knockdown SRrp86. From among the 500 splicing events exhibiting altered splicing under these conditions, the splicing of c-Jun and IκBβ were validated as being regulated by SRrp86 resulting in altered regulation of their downstream targets. In both cases, functionally distinct isoforms were generated that demonstrate the role SRrp86 plays in controlling alternative splicing.
先前的工作提出假设,即 SRrp86,一种 SR 蛋白超家族的相关成员,可以与其他 SR 蛋白相互作用并调节其活性。在这里,我们通过研究改变 SRrp86 浓度对整体选择性剪接模式的影响来检验这一假设。使用 SpliceArrays 检查了野生型细胞、过表达 SRrp86 的细胞和用 siRNA 敲低 SRrp86 的细胞中的 9854 个剪接事件。在这些条件下,有 500 个剪接事件的剪接发生改变,其中 c-Jun 和 IκBβ 的剪接被验证受到 SRrp86 的调节,导致其下游靶标发生改变。在这两种情况下,生成了具有不同功能的异构体,证明了 SRrp86 在控制选择性剪接中的作用。