Model‐guided design of ligand‐regulated RNAi for programmable control of gene expression
Open Access
- 1 January 2008
- journal article
- Published by Springer Nature in Molecular Systems Biology
- Vol. 4 (1) , 224
- https://doi.org/10.1038/msb.2008.62
Abstract
Progress in constructing biological networks will rely on the development of more advanced components that can be predictably modified to yield optimal system performance. We have engineered an RNA‐based platform, which we call an shRNA switch, that provides for integrated ligand control of RNA interference (RNAi) by modular coupling of an aptamer, competing strand, and small hairpin (sh)RNA stem into a single component that links ligand concentration and target gene expression levels. A combined experimental and mathematical modelling approach identified multiple tuning strategies and moves towards a predictable framework for the forward design of shRNA switches. The utility of our platform is highlighted by the demonstration of fine‐tuning, multi‐input control, and model‐guided design of shRNA switches with an optimized dynamic range. Thus, shRNA switches can serve as an advanced component for the construction of complex biological systems and offer a controlled means of activating RNAi in disease therapeutics.Keywords
This publication has 58 references indexed in Scilit:
- An Artificial Aptazyme‐Based Riboswitch and its Cascading System in E. coliChemBioChem, 2008
- Defossiling Fuel: How Synthetic Biology Can Transform Biofuel ProductionACS Chemical Biology, 2008
- A modular and extensible RNA-based gene-regulatory platform for engineering cellular functionProceedings of the National Academy of Sciences, 2007
- Global and Local Architecture of the Mammalian microRNA–Transcription Factor Regulatory NetworkPLoS Computational Biology, 2007
- Tetracycline aptamer-controlled regulation of pre-mRNA splicing in yeastNucleic Acids Research, 2007
- A High-Throughput Screen for Synthetic Riboswitches Reveals Mechanistic Insights into Their FunctionChemistry & Biology, 2007
- Artificial control of gene expression in mammalian cells by modulating RNA interference through aptamer–small molecule interactionRNA, 2006
- Packaging Capacity of Adeno-Associated Virus Serotypes: Impact of Larger Genomes on Infectivity and Postentry StepsJournal of Virology, 2005
- Sequence-Specific Inhibition of Small RNA FunctionPLoS Biology, 2004
- Lentiviral-Mediated RNA InterferenceHuman Gene Therapy, 2002