Design and construction of functional AAV vectors

JT Gray, S Zolotukhin - Adeno-Associated Virus: Methods and Protocols, 2011 - Springer
JT Gray, S Zolotukhin
Adeno-Associated Virus: Methods and Protocols, 2011Springer
Using the basic principles of molecular biology and laboratory techniques presented in this
chapter, researchers should be able to create a wide variety of AAV vectors for both clinical
and basic research applications. Basic vector design concepts are covered for both protein
coding gene expression and small non-coding RNA gene expression cassettes. AAV
plasmid vector backbones (available via AddGene) are described, along with critical
sequence details for a variety of modular expression components that can be inserted as …
Abstract
Using the basic principles of molecular biology and laboratory techniques presented in this chapter, researchers should be able to create a wide variety of AAV vectors for both clinical and basic research applications. Basic vector design concepts are covered for both protein coding gene expression and small non-coding RNA gene expression cassettes. AAV plasmid vector backbones (available via AddGene) are described, along with critical sequence details for a variety of modular expression components that can be inserted as needed for specific applications. Protocols are provided for assembling the various DNA components into AAV vector plasmids in Escherichia coli, as well as for transferring these vector sequences into baculovirus genomes for large-scale production of AAV in the insect cell production system.
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