首页> 外文OA文献 >hnRNP A1 controls HIV-1 mRNA splicing through cooperative binding to intron and exon splicing silencers in the context of a conserved secondary structure.
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hnRNP A1 controls HIV-1 mRNA splicing through cooperative binding to intron and exon splicing silencers in the context of a conserved secondary structure.

机译:hnRNP A1通过在保守二级结构的背景下与内含子和外显子剪接沉默子协同结合来控制HIV-1 mRNA剪接。

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摘要

The removal of the second intron in the HIV-1 rev/tat pre-mRNAs, which involves the joining of splice site SD4 to SA7, is inhibited by hnRNP A1 by a mechanism that requires the intronic splicing silencer (ISS) and the exon splicing silencer (ESS3). In this study, we have determined the RNA secondary structure and the hnRNP A1 binding sites within the 3' splice site region by phylogenetic comparison and chemical/enzymatic probing. A biochemical characterization of the RNA/protein complexes demonstrates that hnRNP A1 binds specifically to primarily three sites, the ISS, a novel UAG motif in the exon splicing enhancer (ESE) and the ESS3 element, which are all situated in experimentally supported stem loop structures. A mutational analysis of the ISS region revealed that the core hnRNP A1 binding site directly overlaps with a major branchpoint used in splicing to SA7, thereby providing a direct explanation for the inhibition of U2 snRNP association with the pre-mRNA by hnRNP A1. Binding of hnRNP A1 to the ISS core site is inhibited by RNA structure but strongly stimulated by the exonic silencer, ESS3. Moreover, the ISS also stimulate binding of hnRNP A1 to the exonic splicing regulators ESS3 and the ESE. Our results suggest a model where a network is formed between hnRNP A1 molecules situated at discrete sites in the intron and exon and that these interactions preclude the recognition of essential splicing signals including the branch point.
机译:hnRNP A1通过需要内含子剪接沉默子(ISS)和外显子剪接的机制抑制了HIV-1 rev / tat pre-mRNA中第二个内含子的去除,这涉及将剪接位点SD4连接到SA7。消音器(ESS3)。在这项研究中,我们通过系统发育比较和化学/酶促探测确定了3'剪接位点区域内的RNA二级结构和hnRNP A1结合位点。 RNA /蛋白质复合物的生化特征表明,hnRNP A1主要结合三个位点,即ISS,外显子剪接增强子(ESE)和ESS3元件中的新型UAG基序,它们均位于实验支持的茎环结构中。 ISS区的突变分析表明,核心hnRNP A1结合位点直接与剪接SA7所用的主要分支点重叠,从而为hnRNP A1抑制U2 snRNP与pre-mRNA缔合提供了直接解释。 hnRNP A1与ISS核心位点的结合受RNA结构抑制,但受外显子沉默剂ESS3​​强烈刺激。此外,ISS还刺激hnRNP A1与外显子剪接调节剂ESS3​​和ESE结合。我们的结果提出了一个模型,该模型在位于内含子和外显子离散位点的hnRNP A1分子之间形成网络,并且这些相互作用妨碍了对包括分支点在内的基本剪接信号的识别。

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