首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Widespread JNK-dependent alternative splicing induces a positive feedback loop through CELF2-mediated regulation of MKK7 during T-cell activation
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Widespread JNK-dependent alternative splicing induces a positive feedback loop through CELF2-mediated regulation of MKK7 during T-cell activation

机译:广泛的JNK依赖性替代剪接在T细胞活化过程中通过CELF2介导的MKK7调控诱导正反馈回路

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摘要

Alternative splicing is prevalent among genes encoding signaling molecules; however, the functional consequence of differential isoform expression remains largely unknown. Here we demonstrate that, in response to T-cell activation, the Jun kinase (JNK) kinase MAP kinase kinase 7 (MKK7) is alternatively spliced to favor an isoform that lacks exon 2. This isoform restores a JNK-docking site within MKK7 that is disrupted in the larger isoform. Consistently, we show that skipping of MKK7 exon 2 enhances JNK pathway activity, as indicated by c-Jun phosphorylation and up-regulation of TNF-alpha. Moreover, this splicing event is itself dependent on JNK signaling. Thus, MKK7 alternative splicing represents a positive feedback loop through which JNK promotes its own signaling. We further show that repression of MKK7 exon 2 is dependent on the presence of flanking sequences and the JNK-induced expression of the RNA-binding protein CELF2, which binds to these regulatory elements. Finally, we found that similar to 25% of T-cell receptor-mediated alternative splicing events are dependent on JNK signaling. Strikingly, these JNK-dependent events are also significantly enriched for responsiveness to CELF2. Together, our data demonstrate a widespread role for the JNK CELF2 axis in controlling splicing during T-cell activation, including a specific role in propagating JNK signaling.
机译:选择性剪接在编码信号分子的基因中很普遍。但是,差异同工型表达的功能后果仍然很大程度上未知。在这里,我们证明,响应T细胞活化,Jun激酶(JNK)激酶MAP激酶激酶7(MKK7)被剪接成一个缺少外显子2的同工型。该同工型恢复了MKK7中在较大的同工型中被破坏。一致地,我们显示MKK7外显子2的跳跃增强了JNK途径的活性,如c-Jun磷酸化和TNF-α的上调所表明的。此外,该剪接事件本身取决于JNK信号。因此,MKK7选择性剪接代表一个正反馈回路,JNK通过该回路促进其自身的信号传导。我们进一步表明,抑制MKK7外显子2取决于侧翼序列的存在和JNK诱导的RNA结合蛋白CELF2的表达,该蛋白与这些调控元件结合。最后,我们发现类似25%的T细胞受体介导的替代剪接事件均依赖于JNK信号传导。令人惊讶的是,这些依赖于JNK的事件还显着丰富了对CELF2的响应能力。在一起,我们的数据表明JNK CELF2轴在T细胞活化过程中控制剪接方面具有广泛的作用,包括在传播JNK信号传导中的特定作用。

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