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首页> 外文期刊>Nucleic Acids Research >hnRNPs and ELAVL1 cooperate with uORFs to inhibit protein translation
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hnRNPs and ELAVL1 cooperate with uORFs to inhibit protein translation

机译:HNRNP和ELAVL1与UORF合作以抑制蛋白翻译

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摘要

Most of our knowledge about translation regulatory mechanisms comes from studies on lower organisms. However, the translation control system of higher organisms is less understood. Here we find that in 5 ' untranslated region (5 ' UTR) of human Annexin II receptor (AXIIR) mRNA, there are two upstream open reading frames (uORFs) acting in a fail-safe manner to inhibit the translation from the main AUG. These uORFs are unfavorable for re-initiation after termination of uORF translation. Heterogeneous nuclear ribonucleoprotein A2B1 (hnRNPA2B1), hnRNPA0 and ELAV like RNA binding protein 1 (ELAVL1) bind to the 5 ' UTR of AXIIR mRNA. They focus the translation of uORFs on uORF1 and attenuate leaky scanning that bypasses uORFs. The cooperation between the two uORFs and the three proteins formed a multiple fail-safe system that tightly inhibits the translation of downstream AXIIR. Such cooperation between multiple molecules and elements reflects that higher organism develops a complex translation regulatory system to achieve accurate and flexible gene expression control.
机译:我们对翻译监管机制的大多数知识来自于较低生物的研究。然而,更高生物的翻译控制系统不太了解。在这里,我们发现,在5'未转换的区域(5'UTR)的人膜蛋白II受体(AXIIR)mRNA中,有两个上游开放阅读框架(UORF)以故障安全的方式作用,以抑制来自八个八个主要的翻译。这些UORF在UORF翻译终止后重新启动是不利的。异构核核糖核糖蛋白A2B1(HNRNPA2B1),HNRNPA0和ELAV,如RNA结合蛋白1(ELAVL1)结合AXIIR mRNA的5'UTR。他们专注于UORF1对UORF1的翻译并衰减绕过UORF的泄漏扫描。两种UORF和三种蛋白质之间的合作形成了多个故障安全系统,严重抑制下游AXIIR的翻译。多种分子和元素之间的这种合作反映了更高的生物体发展复杂的翻译调节系统,以实现准确和灵活的基因表达控制。

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