Atomic-accuracy models from 4.5-Å cryo-electron microscopy data with density-guided iterative local refinement

  • Frank DiMaio
  • Yifan Song
  • Xueming Li
  • Matthias J Brunner
  • Chunfu Xu
  • Vincent Conticello
  • Edward Egelman
  • Thomas C Marlovits
  • Yifan Cheng
  • David Baker

Abstract

We describe a general approach for refining protein structure models on the basis of cryo-electron microscopy maps with near-atomic resolution. The method integrates Monte Carlo sampling with local density-guided optimization, Rosetta all-atom refinement and real-space B-factor fitting. In tests on experimental maps of three different systems with 4.5-Å resolution or better, the method consistently produced models with atomic-level accuracy largely independently of starting-model quality, and it outperformed the molecular dynamics-based MDFF method. Cross-validated model quality statistics correlated with model accuracy over the three test systems.

Bibliographical data

Original languageEnglish
ISSN1548-7091
DOIs
Publication statusPublished - 04.2015
PubMed 25707030