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Identification of a Bidirectional Splicing Enhancer: Differential Involvement of SR Proteins in 5′ or 3′ Splice Site Activation

机译:双向剪接增强子的鉴定:SR蛋白在5'或3'剪接位点激活中的差异参与

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The adenovirus E1A pre-mRNA undergoes alternative splicing whose modulation occurs during infection, through the use of three different 5′ splice sites and of one major or one minor 3′ splice site. Although this pre-mRNA has been extensively used as a model to compare the transactivation properties of SR proteins, no cis-acting element has been identified in the transcript sequence. Here we describe the identification and the characterization of a purine-rich splicing enhancer, located just upstream of the 12S 5′ splice site, which is formed from two contiguous 9-nucleotide (nt) purine motifs (Pu1 and Pu2). We demonstrate that this sequence is a bidirectional splicing enhancer (BSE) in vivo and in vitro, because it activates both the downstream 12S 5′ splice site through the Pu1 motif and the upstream 216-nt intervening sequence (IVS) 3′ splice site through both motifs. UV cross-linking and immunoprecipitation experiments indicate that the BSE interacts with several SR proteins specifically, among them 9G8 and ASF/SF2, which bind preferentially to the Pu1 and Pu2 motifs, respectively. Interestingly, we show by in vitro complementation assays that SR proteins have distinct transactivatory properties. In particular, 9G8, but not ASF/SF2 or SC35, is able to strongly activate the recognition of the 12S 5′ splice site in a BSE-dependent manner in wild-type E1A or in a heterologous context, whereas ASF/SF2 or SC35, but not 9G8, activates the upstream 216-nt IVS splicing. Thus, our results identify a novel exonic BSE and the SR proteins which are involved in its differential activity.
机译:通过使用三个不同的5'剪接位点和一个主要或一个次要的3'剪接位点,腺病毒E1A前mRNA经历了选择性剪接,其调制在感染过程中发生。尽管该前mRNA已被广泛用作比较SR蛋白反式激活特性的模型,但在转录序列中未发现顺式作用元件。在这里,我们描述了位于12S 5'剪接位点上游的富含嘌呤的剪接增强子的鉴定和表征,该剪接增强子由两个连续的9个核苷酸(nt)嘌呤基序(Pu1和Pu2)形成。我们证明此序列是体内和体外的双向剪接增强子(BSE),因为它通过Pu1母体激活下游12S 5'剪接位点,并通过Pu1上游激活216-nt插入序列(IVS)3'剪接位点这两个主题。紫外线交联和免疫沉淀实验表明,BSE与几种SR蛋白发生特异性相互作用,其中9G8和ASF / SF2分别与Pu1和Pu2基序优先结合。有趣的是,我们通过体外互补测定法表明SR蛋白具有独特的反式激活特性。特别是9G8,而不是ASF / SF2或SC35,能够以BSE依赖性方式在野生型E1A或异源环境中强烈激活12S 5'剪接位点的识别,而ASF / SF2或SC35 (而不是9G8)激活上游216-nt IVS拼接。因此,我们的结果确定了一种新的外显子BSE和SR蛋白,它们参与了其差异活性。

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