4.4 Article

Atomic structure of a rationally engineered gene delivery vector, AAV2.5

Journal

JOURNAL OF STRUCTURAL BIOLOGY
Volume 203, Issue 3, Pages 236-241

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jsb.2018.05.004

Keywords

Adeno-associated virus; cryo-EM; Vector engineering; Structure-guided design; Parvovirus

Funding

  1. UF Division of Sponsored Programs
  2. NIH [S10 OD018142-01, R01 AI072176, R01 GM082946]

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AAV2.5 represents the first structure-guided in-silica designed Adeno-associated virus (AAV) gene delivery vector. This engineered vector combined the receptor attachment properties of AAV serotype 2 (AAV2) with the muscle tropic properties of AAV1, and exhibited an antibody escape phenotype because of a modified antigenic epitope. To confirm the design, the structure of the vector was determined to a resolution of 2.78 angstrom using cryo-electron microscopy and image reconstruction. The structure of the major viral protein (VP), VP3, was ordered from residue 219 to 736, as reported for other AAV structures, and the five AAV2.5 residues exchanged from AAV2 to AAV1, Q263A, T265 (insertion), N706A, V709A, and T717N, were readily interpretable. Significantly, the surface loops containing these residues adopt the AAV1 conformation indicating the importance of amino acid residues in dictating VP structure.

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