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Gene Expression Regulation by Upstream Open Reading Frames and Human Disease

机译:上游开放阅读框与人类疾病的基因表达调控

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摘要

Upstream open reading frames (uORFs) are major gene expression regulatory elements. In many eukaryotic mRNAs, one or more uORFs precede the initiation codon of the main coding region. Indeed, several studies have revealed that almost half of human transcripts present uORFs. Very interesting examples have shown that these uORFs can impact gene expression of the downstream main ORF by triggering mRNA decay or by regulating translation. Also, evidence from recent genetic and bioinformatic studies implicates disturbed uORF-mediated translational control in the etiology of many human diseases, including malignancies, metabolic or neurologic disorders, and inherited syndromes. In this review, we will briefly present the mechanisms through which uORFs regulate gene expression and how they can impact on the organism's response to different cell stress conditions. Then, we will emphasize the importance of these structures by illustrating, with specific examples, how disturbed uORF-mediated translational control can be involved in the etiology of human diseases, giving special importance to genotype-phenotype correlations. Identifying and studying more cases of uORF-altering mutations will help us to understand and establish genotype-phenotype associations, leading to advancements in diagnosis, prognosis, and treatment of many human disorders.
机译:上游开放阅读框(uORF)是主要的基因表达调控元件。在许多真核mRNA中,一个或多个uORF位于主要编码区的起始密码子之前。确实,一些研究表明,几乎一半的人类转录本均呈现uORF。非常有趣的例子表明,这些uORF可以通过触发mRNA衰变或调节翻译来影响下游主ORF的基因表达。同样,最近的遗传和生物信息学研究的证据表明,uORF介导的翻译控制受到干扰,涉及许多人类疾病的病因,包括恶性肿瘤,代谢或神经系统疾病以及遗传综合征。在这篇综述中,我们将简要介绍uORF调控基因表达的机制,以及它们如何影响生物体对不同细胞应激条件的反应。然后,我们将通过举例说明特殊的例子,说明uORF介导的翻译控制受干扰如何参与人类疾病的病因,从而特别强调基因型与表型的相关性,从而强调这些结构的重要性。鉴定和研究更多改变uORF的突变病例将有助于我们理解和建立基因型与表型的关联,从而在许多人类疾病的诊断,预后和治疗方面取得进步。

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