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Muscleblind-like 1 activates insulin receptor exon 11 inclusion by enhancing U2AF65 binding and splicing of the upstream intron

机译:通过增强U2AF65结合和上游内含子的剪接类Muscleblind-like 1激活胰岛素受体外显子11的包涵

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摘要

Alternative splicing regulates developmentally and tissue-specific gene expression programs, disruption of which have been implicated in numerous diseases. Muscleblind-like 1 (MBNL1) regulates splicing transitions, which are disrupted on loss of MBNL1 function in myotonic dystrophy type 1 (DM1). One such event is MBNL1-mediated activation of insulin receptor exon 11 inclusion, which requires an intronic enhancer element downstream of exon 11. The mechanism of MBNL1-mediated activation of exon inclusion is unknown. We developed an in vitro splicing assay, which robustly recapitulates MBNL1-mediated splicing activation of insulin receptor exon 11 and found that MBNL1 activates removal of the intron upstream of exon 11 upon binding its functional response element in the downstream intron. MBNL1 enhances early spliceosome assembly as evidenced by enhanced complex A formation and binding of U2 small nuclear ribonucleoprotein auxiliary factor 65 kDa subunit (U2AF65) on the upstream intron. We demonstrated that neither the 5′ splice site nor exon 11 sequences are required for MBNL1-activated U2AF65 binding. Interestingly, the 5′ splice site is required for MBNL1-mediated activation of upstream intron removal, although MBNL1 has no effect on U1 snRNA recruitment. These results suggest that MBNL1 directly activates binding of U2AF65 to enhance upstream intron removal to ultimately activate alternative exon inclusion.
机译:选择性剪接调节发育和组织特异性基因表达程序,其破坏涉及许多疾病。类肌盲1(MBNL1)调节剪接过渡,后者在1型强直性营养不良(DM1)中由于MBNL1功能的丧失而中断。一种此类事件是MBNL1介导的胰岛素受体外显子11包涵体的激活,这需要外显子11下游的内含子增强子元件。MBNL1介导的外显子包涵体的激活机制尚不清楚。我们开发了一种体外剪接测定法,该测定法牢固地概括了胰岛素受体外显子11的MBNL1介导的剪接激活,并发现MBNL1通过结合下游内含子中的功能响应元件来激活外显子11上游内含子的去除。 MBNL1增强了早期剪接体组装,如上游内含子上复合物A的形成和U2小核糖核蛋白辅助因子65 kDa亚基(U2AF65)的结合增强所证明。我们证明,MBNL1激活的U2AF65结合不需要5'剪接位点或外显子11序列。有趣的是,尽管MBNL1对U1 snRNA募集没有影响,但MBNL1介导的上游内含子去除激活需要5'剪接位点。这些结果表明MBNL1直接激活U2AF65的结合,以增强上游内含子的去除,从而最终激活其他外显子的包涵。

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