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Sub-2?A Ewald curvature corrected structure of an AAV2 capsid variant.


ABSTRACT: Single-particle cryogenic electron microscopy (cryo-EM) provides a powerful methodology for structural biologists, but the resolutions typically attained with experimentally determined structures have lagged behind microscope capabilities. Here, we exploit several technical advances to improve resolution, including per-particle contrast transfer function (CTF) refinement and correction for Ewald sphere curvature. The latter is demonstrated with several experimental samples and should become more standard as resolutions increase or at lower microscope accelerating voltages. The combined application of the described methods to micrographs recorded on a Titan Krios enables structure determination at ~1.86-Å resolution of an adeno-associated virus serotype 2 variant (AAV2), an important gene-delivery vehicle. The resulting structural details provide an improved model for understanding the biology of AAV that will guide future vector development for gene therapy.

SUBMITTER: Tan YZ 

PROVIDER: S-EPMC6128836 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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Sub-2 Å Ewald curvature corrected structure of an AAV2 capsid variant.

Tan Yong Zi YZ   Aiyer Sriram S   Mietzsch Mario M   Hull Joshua A JA   McKenna Robert R   Grieger Joshua J   Samulski R Jude RJ   Baker Timothy S TS   Agbandje-McKenna Mavis M   Lyumkis Dmitry D  

Nature communications 20180907 1


Single-particle cryogenic electron microscopy (cryo-EM) provides a powerful methodology for structural biologists, but the resolutions typically attained with experimentally determined structures have lagged behind microscope capabilities. Here, we exploit several technical advances to improve resolution, including per-particle contrast transfer function (CTF) refinement and correction for Ewald sphere curvature. The latter is demonstrated with several experimental samples and should become more  ...[more]

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