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Drawing a high-resolution functional map of adeno-associated virus capsid by massively parallel sequencing.


ABSTRACT: Adeno-associated virus (AAV) capsid engineering is an emerging approach to advance gene therapy. However, a systematic analysis on how each capsid amino acid contributes to multiple functions remains challenging. Here we show proof-of-principle and successful application of a novel approach, termed AAV Barcode-Seq, that allows us to characterize phenotypes of hundreds of different AAV strains in a high-throughput manner and therefore overcomes technical difficulties in the systematic analysis. In this approach, we generate DNA barcode-tagged AAV libraries and determine a spectrum of phenotypes of each AAV strain by Illumina barcode sequencing. By applying this method to AAV capsid mutant libraries tagged with DNA barcodes, we can draw a high-resolution map of AAV capsid amino acids important for the structural integrity and functions including receptor binding, tropism, neutralization and blood clearance. Thus, Barcode-Seq provides a new tool to generate a valuable resource for virus and gene therapy research.

SUBMITTER: Adachi K 

PROVIDER: S-EPMC3941020 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Drawing a high-resolution functional map of adeno-associated virus capsid by massively parallel sequencing.

Adachi Kei K   Enoki Tatsuji T   Kawano Yasuhiro Y   Veraz Michael M   Nakai Hiroyuki H  

Nature communications 20140101


Adeno-associated virus (AAV) capsid engineering is an emerging approach to advance gene therapy. However, a systematic analysis on how each capsid amino acid contributes to multiple functions remains challenging. Here we show proof-of-principle and successful application of a novel approach, termed AAV Barcode-Seq, that allows us to characterize phenotypes of hundreds of different AAV strains in a high-throughput manner and therefore overcomes technical difficulties in the systematic analysis. I  ...[more]

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