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遗传性眼部疾病无义抑制疗法的机制与证据

Mechanism and evidence of nonsense suppression therapy for genetic eye disorders.

作者信息

Richardson Rose, Smart Matthew, Tracey-White Dhani, Webster Andrew R, Moosajee Mariya

机构信息

Department of Ocular Biology and Therapeutics, UCL Institute of Ophthalmology, London, UK.

Department of Ocular Biology and Therapeutics, UCL Institute of Ophthalmology, London, UK; Moorfields Eye Hospital NHS Foundation Trust, London, UK.

出版信息

Exp Eye Res. 2017 Feb;155:24-37. doi: 10.1016/j.exer.2017.01.001. Epub 2017 Jan 6.

Abstract

Between 5 and 70% of genetic disease is caused by in-frame nonsense mutations, which introduce a premature termination codon (PTC) within the disease-causing gene. Consequently, during translation, non-functional or gain-of-function truncated proteins of pathological significance, are formed. Approximately 50% of all inherited retinal disorders have been associated with PTCs, highlighting the importance of novel pharmacological or gene correction therapies in ocular disease. Pharmacological nonsense suppression of PTCs could delineate a therapeutic strategy that treats the mutation in a gene- and disease-independent manner. This approach aims to suppress the fidelity of the ribosome during protein synthesis so that a near-cognate aminoacyl-tRNA, which shares two of the three nucleotides of the PTC, can be inserted into the peptide chain, allowing translation to continue, and a full-length functional protein to be produced. Here we discuss the mechanisms and evidence of nonsense suppression agents, including the small molecule drug ataluren (or PTC124) and next generation 'designer' aminoglycosides, for the treatment of genetic eye disease.

摘要

5%至70%的遗传疾病是由框内无义突变引起的,这些突变在致病基因内引入了提前终止密码子(PTC)。因此,在翻译过程中,会形成具有病理意义的无功能或功能获得性截短蛋白。所有遗传性视网膜疾病中约50%与PTC有关,这凸显了新型药物或基因校正疗法在眼部疾病中的重要性。对PTC进行药理学无义抑制可以勾勒出一种以与基因和疾病无关的方式治疗突变的治疗策略。这种方法旨在在蛋白质合成过程中抑制核糖体的保真度,以便一种近同源氨酰tRNA(它与PTC的三个核苷酸中的两个相同)能够插入肽链,使翻译得以继续,并产生全长功能蛋白。在此,我们讨论无义抑制剂的作用机制和证据,包括小分子药物阿他芦伦(或PTC124)和下一代“设计型”氨基糖苷类药物,用于治疗遗传性眼病。

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