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首页> 外文期刊>Molecular and Cellular Biology >Expression of Human Hemojuvelin (HJV) Is Tightly Regulated by Two Upstream Open Reading Frames in HJV mRNA That Respond to Iron Overload in Hepatic Cells
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Expression of Human Hemojuvelin (HJV) Is Tightly Regulated by Two Upstream Open Reading Frames in HJV mRNA That Respond to Iron Overload in Hepatic Cells

机译:人类Hemojuvelin(HJV)的表达受两个上游开放阅读框架中对肝细胞铁超负荷反应的HJV mRNA的调控。

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摘要

The gene encoding human hemojuvelin (HJV) is one of the genes that, when mutated, can cause juvenile hemochromatosis, an early-onset inherited disorder associated with iron overload. The 5′ untranslated region of the human HJV mRNA has two upstream open reading frames (uORFs), with 28 and 19 codons formed by two upstream AUGs (uAUGs) sharing the same in-frame stop codon. Here we show that these uORFs decrease the translational efficiency of the downstream main ORF in HeLa and HepG2 cells. Indeed, ribosomal access to the main AUG is conditioned by the strong uAUG context, which results in the first uORF being translated most frequently. The reach of the main ORF is then achieved by ribosomes that resume scanning after uORF translation. Furthermore, the amino acid sequences of the uORF-encoded peptides also reinforce the translational repression of the main ORF. Interestingly, when iron levels increase, translational repression is relieved specifically in hepatic cells. The upregulation of protein levels occurs along with phosphorylation of the eukaryotic initiation factor 2α. Nevertheless, our results support a model in which the increasing recognition of the main AUG is mediated by a tissue-specific factor that promotes uORF bypass. These results support a tight HJV translational regulation involved in iron homeostasis.
机译:编码人血juvelin(HJV)的基因是一种基因,突变后会导致青少年血色病,这是一种与铁超负荷有关的早发遗传病。人类HJV mRNA的5'非翻译区具有两个上游开放阅读框(uORF),由两个上游AUG(uAUG)共享相同的读框终止密码子形成28和19个密码子。在这里,我们显示这些uORF会降低HeLa和HepG2细胞中下游主要ORF的翻译效率。实际上,核糖体进入主AUG的条件是强大的uAUG上下文,这导致第一个uORF的翻译频率最高。然后,通过uORF翻译后恢复扫描的核糖体实现主要ORF的到达。此外,uORF编码的肽的氨基酸序列也增强了主要ORF的翻译抑制。有趣的是,当铁水平增加时,肝细胞中的翻译阻抑作用特别明显。蛋白质水平的上调与真核起始因子2α的磷酸化一起发生。然而,我们的结果支持了一种模型,其中主要AUG的识别性增强是由促进uORF旁路的组织特异性因子介导的。这些结果支持了涉及铁稳态的严格的HJV翻译调控。

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