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首页> 外文期刊>Journal of Medicinal Chemistry >Development of Novel Aminoglycoside (NB54) with Reduced Toxicity and Enhanced Suppression of Disease-Causing Premature Stop Mutations
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Development of Novel Aminoglycoside (NB54) with Reduced Toxicity and Enhanced Suppression of Disease-Causing Premature Stop Mutations

机译:新型氨基糖苷(NB54)具有降低的毒性和增强的疾病致早终止突变抑制作用的开发

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摘要

Nonsense mutations promote premature translational termination and represent the underlying cause of a large number of human genetic diseases. The aminoglycoside antibiotic gentamicin has the ability to allow the mammalian ribosome to read past a false-stop signal and generate full-length functional proteins. However; severe toxic side effects along with the reduced suppression efficiency at subtoxic doses limit the use of gentamicin for suppression therapy. We describe here the first systematic development of the novel aminoglycoside 2 (NB54) exhibiting superior in vitro readthrough efficiency to that of gentamicin in seven different DNA fragments derived from mutant genes carrying nonsense mutations representing the genetic diseases Usher syndrome, cystic fibrosis, Duchenne muscular dystrophy, and Hurler syndrome. Comparative acute lethal toxicity in mice, cell toxicity, and the assessment of hair cell toxicity in cochlear explants further indicated that 2 exhibits far lower toxicity than that of gentamicin.
机译:无意义的突变促进过早的翻译终止,并代表了许多人类遗传疾病的根本原因。氨基糖苷类抗生素庆大霉素具有使哺乳动物核糖体读取错误终止信号并产生全长功能蛋白的能力。然而;严重的毒副作用以及在亚毒性剂量下抑制效率的降低限制了庆大霉素在抑制治疗中的应用。我们在这里描述了新型氨基糖苷2(NB54)的首次系统开发,它在庆大霉素的7种不同DNA片段中表现出比庆大霉素更高的体外通读效率,这些片段来自携带无义突变的突变基因,这些突变代表遗传疾病Usher综合征,囊性纤维化,杜兴肌营养不良和Hurler综合征。比较的小鼠急性致死毒性,细胞毒性和耳蜗外植体毛细胞毒性的评估进一步表明2的毒性远低于庆大霉素。

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