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Lyumkis, D.

Publications and source records attributed to Lyumkis, D..

2 recordsLinked to original sources

Analysis of Local Variability and Allostery in Macromolecular Assemblies using Cryo-EM and Focused Classification

Single-particle electron cryo-microscopy and computational image classification can be used to analyze structural variability in macromolecules and their assemblies. In some cases, a particle may contain different regions that each display a range of distinct conformations. We have developed strategies, implemented within the Frealign and cisTEM image processing packages, to focus classify on specific regions of a particle and detect potential covariance. The strategies are based on masking the region of interest using either a 2-D mask applied to reference projections and particle images, or a 3-D mask applied to the 3-D volume. We show that focused classification approaches can be used to study structural allostery, a concept that is likely to gain more importance as datasets grow in size, allowing the distinction of more structural states and smaller differences between states. Finally, we apply the approaches to an experimental dataset containing the HIV-1 Transactivation Response (TAR) element RNA fused into the large bacterial ribosomal subunit, to deconvolve structural mobility within localized regions of interest.\n\nHighlightsO_LIDescription of different image classification strategies in single-particle cryo-EM\nC_LIO_LIQuantitative evaluation of two classification methods using simulated data\nC_LIO_LIApplication of the two classification methods to an experimental dataset\nC_LI

biophysics

Sub-2 A Ewald Curvature Corrected Single-Particle Cryo-EM

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 have exploited several technical solutions to improve resolution, including sub-Angstrom pixelation, per-particle CTF refinement, and most notably a correction for Ewald sphere curvature. The application of these methods on micrographs recorded on a base model Titan Krios enabled structure determination at [~]1.86-[A] resolution of an adeno-associated virus serotype 2 variant (AAV2), an important gene-delivery vehicle.

biophysics