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Position-dependent FUS-RNA interactions regulate alternative splicing events and transcriptions

机译:位置依赖的FUS-RNA相互作用调节可变的剪接事件和转录

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摘要

FUS is an RNA-binding protein that regulates transcription, alternative splicing, and mRNA transport. Aberrations of FUS are causally associated with familial and sporadic ALS/FTLD. We analyzed FUS-mediated transcriptions and alternative splicing events in mouse primary cortical neurons using exon arrays. We also characterized FUS-binding RNA sites in the mouse cerebrum with HITS-CLIP. We found that FUS-binding sites tend to form stable secondary structures. Analysis of position-dependence of FUS-binding sites disclosed scattered binding of FUS to and around the alternatively spliced exons including those associated with neurodegeneration such as Mapt, Camk2a, and Fmr1. We also found that FUS is often bound to the antisense RNA strand at the promoter regions. Global analysis of these FUS-tags and the expression profiles disclosed that binding of FUS to the promoter antisense strand downregulates transcriptions of the coding strand. Our analysis revealed that FUS regulates alternative splicing events and transcriptions in a position-dependent manner.
机译:FUS是一种RNA结合蛋白,可调节转录,选择性剪接和mRNA转运。 FUS畸变与家族性和散发性ALS / FTLD因果相关。我们使用外显子阵列分析了小鼠原代皮质神经元中FUS介导的转录和选择性剪接事件。我们还用HITS-CLIP表征了小鼠大脑中FUS结合RNA的位点。我们发现FUS结合位点往往会形成稳定的二级结构。 FUS结合位点的位置依赖性分析表明,FUS与选择性剪接的外显子及其周围存在分散的结合,这些外显子包括与神经变性相关的外显子,例如Mapt,Camk2a和Fmr1。我们还发现FUS通常在启动子区域与反义RNA链结合。对这些FUS标签和表达谱的整体分析表明,FUS与启动子反义链的结合下调了编码链的转录。我们的分析表明,FUS以位置依赖的方式调节替代性剪接事件和转录。

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