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Identification of the RNA Cis-Elements that Interact with SRp30a to Regulate the Alternative Splicing of Caspase 9 Pre-mRNA

机译:与SRp30a相互作用以调节Caspase 9 Pre-mRNA的可变剪接的RNA顺式元件的鉴定。

摘要

Studies have shown that the alternative splicing of caspase 9 and the phospho-status of SR proteins, a conserved family of splicing factors, are regulated by chemotherapy and de novo ceramide via the action of protein phosphatase-1 (PP1). Two RNA splice variants are derived from the caspase 9 gene, pro-apoptotic caspase 9a and anti-apoptotic caspase 9b, via alternative splicing by either the inclusion or exclusion of an exon 3, 4, 5, and 6 cassette. In this study, the link between SR proteins and the alternative splicing of caspase 9 was established. Sequence analysis of the exon 3, 4, 5, and 6 cassette of the caspase 9 gene identified five possible high affinity sequences for interaction with the SR protein, SRp30a, a well-established regulator of exon inclusion/exclusion. Replacement mutagenesis identified purine-rich sequences between exons 4 and 5 and wthin exon 6 as important for binding SRp30a and required for expression of the caspase 9a splice variant. In vitro binding assays coupled with competitor studies demonstrated specific binding of RNA trans-acting proteins and SRp30a with these sequences. Furthermore, SDS-PAGE analysis of cross-linked RNA trans-acting factors with these possible RNA cis-elements revealed the specific binding of an approximate 66, 56, 45, and 38 kDa protein/protein complex to these sequences. A previous application of RNAi technology to downregulate SRp30a in A549 lung adenocarcinoma cells induced an approximately 75% decrease in SRp30a expression and induced a dramatic change in the ratio of caspase 9a/caspase 9b. Therefore, these studies have identified SRp30a as a major regulator of the alternative splicing of caspase 9 directly linking de novo ceramide generation, PP1, and SRp30a as the signal transduction pathway regulating the expression of caspase 9.
机译:研究表明,胱天蛋白酶9的选择性剪接和SR蛋白的磷酸状态(一个保守的剪接因子家族)通过蛋白磷酸酶-1(PP1)的作用由化学疗法和从头神经酰胺调节。通过包括或排除外显子3、4、5和6盒的选择性剪接,从半胱天冬酶9基因衍生出两个RNA剪接变体,促凋亡半胱天冬酶9a和抗凋亡半胱天冬酶9b。在这项研究中,SR蛋白和caspase 9的可变剪接之间建立了联系。对caspase 9基因的第3、4、5和6个外显子盒进行序列分析,确定了与SR蛋白SRp30a相互作用的5种可能的高亲和力序列,SRp30a是一个完善的外显子包含/排除调节子。替换诱变确定外显子4和5与wthin外显子6之间的富嘌呤序列对于结合SRp30a很重要,并且对于表达caspase 9a剪接变体是必需的。体外结合试验与竞争者研究相结合,证明了RNA反式作用蛋白和SRp30a与这些序列的特异性结合。此外,对具有这些可能的RNA顺式元件的交联RNA反作用因子的SDS-PAGE分析显示,大约66、56、45和38 kDa的蛋白质/蛋白质复合物与这些序列具有特异性结合。 RNAi技术先前在A549肺腺癌细胞中下调SRp30a的一项应用导致SRp30a表达降低了约75%,并引起caspase 9a / caspase 9b比例的急剧变化。因此,这些研究已确定SRp30a是直接连接新生神经酰胺生成,PP1和SRp30a的caspase 9选择性剪接的主要调节子,它是调节caspase 9表达的信号转导途径。

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    Mukerjee Prabhat;

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  • 年度 2005
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