首页> 外文期刊>Human Molecular Genetics >Antisense targeting of 3 ' end elements involved in DUX4 mRNA processing is an efficient therapeutic strategy for facioscapulohumeral dystrophy: a new gene-silencing approach
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Antisense targeting of 3 ' end elements involved in DUX4 mRNA processing is an efficient therapeutic strategy for facioscapulohumeral dystrophy: a new gene-silencing approach

机译:反义靶向DUX4 mRNA加工中涉及的3'末端元件是一种有效的治疗面肩肱型营养不良的策略:一种新的基因沉默方法

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摘要

Defects in mRNA 3'end formation have been described to alter transcription termination, transport of the mRNA from the nucleus to the cytoplasm, stability of the mRNA and translation efficiency. Therefore, inhibition of polyadenylation may lead to gene silencing. Here, we choose facioscapulohumeral dystrophy (FSHD) as a model to determine whether or not targeting key 3' end elements involved in mRNA processing using antisense oligonucleotide drugs can be used as a strategy for gene silencing within a potentially therapeutic context. FSHD is a gain-of-function disease characterized by the aberrant expression of the Double homeobox 4 (DUX4) transcription factor leading to altered pathogenic deregulation of multiple genes in muscles. Here, we demonstrate that targeting either the mRNA polyadenylation signal and/or cleavage site is an efficient strategy to down-regulate DUX4 expression and to decrease the abnormally high-pathological expression of genes downstream of DUX4. We conclude that targeting key functional 3' end elements involved in pre-mRNA to mRNA maturation with antisense drugs can lead to efficient gene silencing and is thus a potentially effective therapeutic strategy for at least FSHD. Moreover, polyadenylation is a crucial step in the maturation of almost all eukaryotic mRNAs, and thus all mRNAs are virtually eligible for this antisense-mediated knockdown strategy.
机译:已经描述了mRNA 3'末端形成中的缺陷,以改变转录终止,mRNA从细胞核到细胞质的转运,mRNA的稳定性和翻译效率。因此,抑制聚腺苷酸化可能导致基因沉默。在这里,我们选择面肩肱型营养不良(FSHD)作为模型,以确定是否可以将靶向使用反义寡核苷酸药物进行mRNA加工的关键3'末端元件作为潜在治疗环境中基因沉默的策略。 FSHD是一种功能获得性疾病,其特征在于Double homeobox 4(DUX4)转录因子的异常表达,导致肌肉中多个基因的致病性失调改变。在这里,我们证明了靶向mRNA的多聚腺苷酸信号和/或切割位点是一种有效的策略,可以下调DUX4的表达并减少DUX4下游基因的异常高病理表达。我们得出结论,用反义药物将参与pre-mRNA的关键功能性3'末端元件靶向于mRNA成熟可以导致有效的基因沉默,因此至少对于FSHD是一种潜在的有效治疗策略。此外,聚腺苷酸化是几乎所有真核mRNA成熟的关键步骤,因此,所有mRNA实际上都适用于这种反义介导的敲低策略。

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