A mouse model for nonsense mutation bypass therapy shows a dramatic multiday response to geneticin
- 25 September 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (39), 15394-15399
- https://doi.org/10.1073/pnas.0610878104
Abstract
Aminoglycosides can bypass nonsense mutations and are the prototypic agents for translational bypass therapy (TBT). Initial results demonstrate the need for more potent drugs and an in vivo model system for quantitative assessment of TBT. Herein, we present an in vivo system for evaluating the efficacy of premature stop codon management therapies: in vivo quantitative stop codon management repli-sampling TBT efficacy assay (IQSCMaRTEA). Application of IQSCMaRTEA reveals that geneticin is much more efficacious in vivo than gentamicin. Treatment with geneticin elicits a multiday response, and residual F9 antigen can be detected after 3 weeks. These data demonstrate the utility of IQSCMaRTEA for evaluating drugs that bypass nonsense mutations. In addition, IQSCMaRTEA may be helpful for testing inhibitors of nonsense-mediated decay, as stop codon management therapy will sometimes require inhibition of nonsense-mediated decay and translational bypass of the nonsense mutation. Furthermore, geneticin, its metabolites, or better tolerated analogues should be evaluated as a general treatment with multiday response for severe genetic disease caused by nonsense mutation.Keywords
This publication has 92 references indexed in Scilit:
- The diploid genome sequence of an Asian individualNature, 2008
- Systematic assessment of copy number variant detection via genome-wide SNP genotypingNature Genetics, 2008
- The current excitement about copy-number variation: how it relates to gene duplications and protein familiesCurrent Opinion in Structural Biology, 2008
- Mouse segmental duplication and copy number variationNature Genetics, 2008
- The Fine-Scale and Complex Architecture of Human Copy-Number VariationAmerican Journal of Human Genetics, 2008
- Germline rates of de novo meiotic deletions and duplications causing several genomic disordersNature Genetics, 2007
- Diet and the evolution of human amylase gene copy number variationNature Genetics, 2007
- Global variation in copy number in the human genomeNature, 2006
- Shotgun sequence assembly and recent segmental duplications within the human genomeNature, 2004
- A strategy for disease gene identification through nonsense-mediated mRNA decay inhibitionNature Biotechnology, 2001