EMD-11611

Single-particle
2.3 Å
EMD-11611 Deposition: 13/08/2020
Map released: 09/12/2020
Last modified: 24/02/2021
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-11611

Human heavy-chain apoferritin refined from frame series data using M

EMD-11611

Single-particle
2.3 Å
EMD-11611 Deposition: 13/08/2020
Map released: 09/12/2020
Last modified: 24/02/2021
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Homo sapiens
Sample: Heavy-chain apoferritin

Deposition Authors: Tegunov D, Xue L, Dienemann C, Cramer P, Mahamid J
Multi-particle cryo-EM refinement with M visualizes ribosome-antibiotic complex at 3.5 angstrom in cells.
Tegunov D , Xue L , Dienemann C , Cramer P , Mahamid J
(2021) Nat. Methods , 18 , 186 - 193
PUBMED: 33542511
DOI: doi:10.1038/s41592-020-01054-7
ISSN: 1548-7105
Abstract:
Cryo-electron microscopy (cryo-EM) enables macromolecular structure determination in vitro and inside cells. In addition to aligning individual particles, accurate registration of sample motion and three-dimensional deformation during exposures are crucial for achieving high-resolution reconstructions. Here we describe M, a software tool that establishes a reference-based, multi-particle refinement framework for cryo-EM data and couples a comprehensive spatial deformation model to in silico correction of electron-optical aberrations. M provides a unified optimization framework for both frame-series and tomographic tilt-series data. We show that tilt-series data can provide the same resolution as frame-series data on a purified protein specimen, indicating that the alignment step no longer limits the resolution obtainable from tomographic data. In combination with Warp and RELION, M resolves to residue level a 70S ribosome bound to an antibiotic inside intact bacterial cells. Our work provides a computational tool that facilitates structural biology in cells.