Mechanism of nonsense mutation suppression therapy
Mechanism of nonsense mutation suppression therapy
批准号:
6955226
负责人:
Allan S Jacobson
金额:
$36.42万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-23 至 2008-05-19
关键词:
combinatorial chemistrydrug design /synthesis /productiondrug screening /evaluationgene expressiongene mutationgenetic disordergenetic translationgenetically modified animalsgentamicinshigh throughput technologyimmunofluorescence techniquelaboratory mousemicroarray technologypathologic processposttranslational modificationstissue /cell culturetranscription termination
中文摘要
描述(申请人提供):无义突变通过促进截短多肽的合成和加速信使核糖核酸的衰变来使基因功能失活。这些突变是遗传疾病的一个重要原因,导致了所有致病等位基因的15%-30%。最近的研究表明,在囊性纤维化和肌营养不良的小鼠模型中,抗生素庆大霉素可以抑制过早的无意义密码子的翻译终止,并产生有限但功能显著的必需蛋白质。虽然这导致了庆大霉素治疗人类遗传性疾病的初步临床评估,但这种方法的长期应用受到这种药物相当大的副作用的影响。PTC治疗公司(PTC)一直在追求一种治疗无义突变引起的疾病的药物方法的概念,并发现了一种新的低分子化合物(PTC124),该化合物在细胞和动物模型中都比庆大霉素有效得多。PTC124有可能在短期内广泛应用于多种遗传疾病,但这种广泛的应用需要进行作用机制分析,证明它:i)促进在过早终止密码子上插入近同源tRNA;ii)主要针对提前翻译终止,而不是正常的翻译终止;iii)对非靶向mRNAs的宿主转录影响有限;iv)不会在整个动物中引起毒副作用;tnd v)在其他疾病状态的动物模型中促进无意义抑制。这一快速通道STTR提案描述了解决所有这些问题的分子生物学方法。在第一阶段,我们将使用culated=Ells来解决项目I-III,并在第二阶段建立解决动物模型中剩余问题所需的技术方法。更具体地说,我们将使用PTC124处理HeLa细胞,并:i)定义促进无义抑制的事件;ii)确定PTC124介导的无义抑制是否对细胞mRNA的衰退和翻译产生全球影响。
英文摘要
DESCRIPTION (provided by applicant): Nonsense mutations inactivate gene function by promoting synthesis of truncated polypeptides and accelerating mRNA decay. These mutations are a significant cause of genetic disorders, giving rise to 15- 30% of all disease-causing alleles. Recent studies have shown that the antibiotic, gentamicin, can suppress translation termination at premature nonsense codons and produce limited but functionally significant quantities of essential proteins in mouse models of cystic fibrosis and muscular dystrophy. While this has led to initial clinical evaluations of gentamicin therapy in human inherited disorders, long-term application of this approach is compromised by the considerable adverse effects of this drug. PTC Therapeutics, Inc. (PTC) has pursued the concept of a pharmaceutical approach to treating diseases caused by nonsense mutations and has identified a novel, low molecular weight compound (PTC124) that is considerably more potent than gentamicin in both cell and animal models. PTC124 has the potential for near-term broad application in numerous genetic disorders, but such widespread utility requires mechanism of action analyses which demonstrate that it: i) promotes insertion of near-cognate tRNAs at premature termination codons; ii) principally targets premature translational termination, not normal translational termination; iii) has limited host-transcriptional effects on non-targeted mRNAs; iv) does not elicit toxic side effects in whole animals; tnd v) promotes nonsense suppression in additional animal models of disease states. This fast-track STTR proposal describes molecular biological approaches to all of these issues. In Phase I, we will use cultured =ells to address items i-iii and to establish the technological approaches required for addressing the remaining issues in animal models in Phase II. More specifically, we will treat HeLa cells with PTC124 and: I) define the events promoting nonsense suppression and II) determine whether PTC124-mediated nonsense suppression has global consequences for cellular mRNA decay and translation.
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会议论文
Translation, targeting, and decay of yeast nonsense-containing mRNAs
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依托单位:
NUCLEAR ROLE OF YEAST POLY(A)-BINDING PROTEIN
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NUCLEAR ROLE OF YEAST POLY(A)-BINDING PROTEIN
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NUCLEAR ROLE OF YEAST POLY(A)-BINDING PROTEIN
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资助金额:$24.03万
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NUCLEAR ROLE OF YEAST POLY(A)-BINDING PROTEIN
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批准号:6636425
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资助金额:$24.78万
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POST-TRANSCRIPTIONAL REGULATION OF R-PROTEIN SYNTHESIS
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依托单位:
POST-TRANSCRIPTIONAL REGULATION OF R-PROTEIN SYNTHESIS
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依托单位:
POST-TRANSCRIPTIONAL REGULATION OF R-PROTEIN SYNTHESIS
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POST-TRANSCRIPTIONAL REGULATION OF R-PROTEIN SYNTHESIS
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资助金额:$14.2万
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财政年份:1987
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依托单位:
POST-TRANSCRIPTIONAL REGULATION OF R-PROTEIN SYNTHESIS
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批准号:3295213
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项目类别:
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资助金额:$13.92万
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财政年份:1987
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依托单位:
MESSENGER RNA METABOLISM IN YEAST
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MESSENGER RNA METABOLISM IN DICTYOSTELIUM AND YEAST
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MESSENGER RNA METABOLISM IN DICTYOSTELIUM DISCOIDEUM
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批准号:3275017
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MESSENGER RNA METABOLISM IN DICTYOSTELIUM AND YEAST
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Messenger RNA Metabolism in Yeast
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资助金额:$67.16万
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Messenger RNA metabolism in yeast
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