Alternative Splicing of a Novel Inducible Exon Diversifies the CASK Guanylate Kinase Domain.

IF 1.3 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Journal of Nucleic Acids Pub Date : 2012-01-01 Epub Date: 2012-09-12 DOI:10.1155/2012/816237
Jill A Dembowski, Ping An, Maritsa Scoulos-Hanson, Gene Yeo, Joonhee Han, Xiang-Dong Fu, Paula J Grabowski
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引用次数: 0

Abstract

Alternative pre-mRNA splicing has a major impact on cellular functions and development with the potential to fine-tune cellular localization, posttranslational modification, interaction properties, and expression levels of cognate proteins. The plasticity of regulation sets the stage for cells to adjust the relative levels of spliced mRNA isoforms in response to stress or stimulation. As part of an exon profiling analysis of mouse cortical neurons stimulated with high KCl to induce membrane depolarization, we detected a previously unrecognized exon (E24a) of the CASK gene, which encodes for a conserved peptide insertion in the guanylate kinase interaction domain. Comparative sequence analysis shows that E24a appeared selectively in mammalian CASK genes as part of a >3,000 base pair intron insertion. We demonstrate that a combination of a naturally defective 5' splice site and negative regulation by several splicing factors, including SC35 (SRSF2) and ASF/SF2 (SRSF1), drives E24a skipping in most cell types. However, this negative regulation is countered with an observed increase in E24a inclusion after neuronal stimulation and NMDA receptor signaling. Taken together, E24a is typically a skipped exon, which awakens during neuronal stimulation with the potential to diversify the protein interaction properties of the CASK polypeptide.

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新型诱导外显子的交替剪接使 CASK 鸟苷酸激酶结构域多样化
前 mRNA 的替代剪接对细胞功能和发育有重大影响,有可能对细胞定位、翻译后修饰、相互作用特性和同源蛋白的表达水平进行微调。调控的可塑性为细胞调整剪接 mRNA 异构体的相对水平以应对压力或刺激创造了条件。作为用高氯化钾刺激小鼠大脑皮层神经元以诱导膜去极化的外显子剖析分析的一部分,我们检测到 CASK 基因的一个以前未被发现的外显子(E24a),该外显子编码鸟苷酸激酶相互作用结构域中的保守肽插入。序列比较分析表明,E24a作为大于3000碱基对内含子插入的一部分,有选择性地出现在哺乳动物的CASK基因中。我们证明,天然缺陷的 5'剪接位点和几种剪接因子(包括 SC35 (SRSF2) 和 ASF/SF2 (SRSF1))的负调控共同驱动了大多数细胞类型中的 E24a 跳接。然而,在神经元受刺激和 NMDA 受体信号传导后,E24a 含量会增加,从而抵消了这种负调控。综上所述,E24a 是一个典型的跳过外显子,它在神经元刺激时被唤醒,有可能使 CASK 多肽的蛋白质相互作用特性多样化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Nucleic Acids
Journal of Nucleic Acids BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
3.10
自引率
21.70%
发文量
5
审稿时长
12 weeks
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