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Alternative splicing within the elk-1 5' untranslated region serves to modulate initiation events downstream of the highly conserved upstream open reading frame 2

机译:麋鹿1 5'非翻译区域内的选择性剪接用于调节高度保守的上游开放阅读框2下游的启动事件。

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摘要

The 5' untranslated region (UTR) plays a central role in the regulation of mammalian translation initiation. Key components include RNA structure, upstream AUGs (uAUGs), upstream open reading frames (uORFs), and internal ribosome entry site elements that can interact to modulate the readout. We previously reported the characterization of two alternatively spliced 5' UTR isoforms of the human elk-1 gene. Both contain two uAUGs and a stable RNA stem-loop, but the long form (5' UTR(L)) was more repressive than the short form (5' UTR(S)) for initiation at the ELK-1 AUG. We now demonstrate that ELK-1 expression arises by a combination of leaky scanning and reinitiation, with the latter mediated by the small uORF2 conserved in both spliced isoforms. In HEK293T cells, a considerable fraction of ribosomes scans beyond the ELK-1 AUG in a reinitiation mode. These are sequestered by a series of out-of-frame AUG codons that serve to prevent access to a second in-frame AUG start site used to express short ELK-1 (sELK-1), an N-terminally truncated form of ELK-1 that has been observed only in neuronal cells. We present evidence that all these events are fine-tuned by the nature of the 5' UTR and the activity of the α subunit of eukaryotic initiation factor 2 and provide insights into the neuronal specificity of sELK-1 expression.
机译:5'非翻译区(UTR)在调节哺乳动物翻译起始中起着核心作用。关键组件包括RNA结构,上游AUG(uAUG),上游开放阅读框(uORF)和内部核糖体进入位点元件,它们可以相互作用来调节读数。我们先前报道了人类麋鹿1基因的两个交替剪接的5'UTR亚型的表征。两者都包含两个uAUG和一个稳定的RNA茎环,但长型(5'UTR(L))比短型(5'UTR(S))在ELK-1 AUG上的抑制性更高。现在,我们证明ELK-1表达是由泄漏扫描和重新初始化的组合引起的,后者由两个剪接同工型中保守的小uORF2介导。在HEK293T细胞中,相当一部分核糖体以重新初始化模式扫描超过ELK-1 AUG。这些被一系列框架外AUG密码子隔离,这些密码子可防止访问第二个框架内AUG起始位点,该起始位点用于表达短ELK-1(sELK-1),即ELK-的N端截短形式。 1仅在神经元细胞中观察到。我们提供的证据表明,所有这些事件均通过5'UTR的性质和真核生物起始因子2的α亚基的活性进行了微调,并提供了对sELK-1表达的神经元特异性的见解。

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