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November 29, 2019Science385 citationsOpen Access

Comprehensive AAV capsid fitness landscape reveals a viral gene and enables machine-guided design

POPierce J. OgdenEKEric D. KelsicSSSam Sinai

Structured PICO

P
Population
Adeno-associated virus (AAV) capsids (AAV2)
I
Intervention
Systematic mutagenesis (single-codon substitutions, insertions, and deletions) and machine-guided design
C
Comparator
Random mutagenesis approaches
O
Outcome
AAV2 capsid fitness landscape across multiple functions relevant for in vivo deliverysurrogate

Systematic mutagenesis and machine-guided protein engineering can decipher complex viral genomes and design highly viable AAV capsids for gene therapy.

Abstract

Adeno-associated virus (AAV) capsids can deliver transformative gene therapies, but our understanding of AAV biology remains incomplete. We generated the complete first-order AAV2 capsid fitness landscape, characterizing all single-codon substitutions, insertions, and deletions across multiple functions relevant for in vivo delivery. We discovered a frameshifted gene in the VP1 region that expresses a membrane-associated accessory protein that limits AAV production through competitive exclusion. Mutant biodistribution revealed the importance of both surface-exposed and buried residues, with a few phenotypic profiles characterizing most variants. Finally, we algorithmically designed and experimentally verified a diverse in vivo targeted capsid library with viability far exceeding random mutagenesis approaches. These results demonstrate the power of systematic mutagenesis for deciphering complex genomes and the potential of empirical machine-guided protein engineering.

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Cite This Study

Ogden et al. (2019) studied this question.

synapsesocial.com/papers/6a7d5362f1daba58ecd5b582https://doi.org/10.1126/science.aaw2900
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