⭐ High Impact

Current approaches for the fitting and refinement of atomic models into cryo-EM maps using CCP-EM.

Nicholls Robert A, Tykac Michal, Kovalevskiy Oleg, Murshudov Garib N

📰 Acta crystallographica. Section D, Structural biology 📅 2018 📊 79 citations

Abstract

Recent advances in instrumentation and software have resulted in cryo-EM rapidly becoming the method of choice for structural biologists, especially for those studying the three-dimensional structures of very large macromolecular complexes. In this contribution, the tools available for macromolecular structure refinement into cryo-EM reconstructions that are available via CCP-EM are reviewed, specifically focusing on REFMAC5 and related tools. Whilst originally designed with a view to refinement against X-ray diffraction data, some of these tools have been able to be repurposed for cryo-EM owing to the same principles being applicable to refinement against cryo-EM maps. Since both techniques are used to elucidate macromolecular structures, tools encapsulating prior knowledge about macromolecules can easily be transferred. However, there are some significant qualitative differences that must be acknowledged and accounted for; relevant differences between these techniques are highlighted. The importance of phases is considered and the potential utility of replacing inaccurate amplitudes with their expectations is justified. More pragmatically, an upper bound on the correlation between observed and calculated Fourier coefficients, expressed in terms of the Fourier shell correlation between half-maps, is demonstrated. The importance of selecting appropriate levels of map blurring/sharpening is emphasized, which may be facilitated by considering the behaviour of the average map amplitude at different resolutions, as well as the utility of simultaneously viewing multiple blurred/sharpened maps. Features that are important for the purposes of computational efficiency are discussed, notably the Divide and Conquer pipeline for the parallel refinement of large macromolecular complexes. Techniques that have recently been developed or improved in Coot to facilitate and expedite the building, fitting and refinement of atomic models into cryo-EM maps are summarized. Finally, a tool for symmetry identification from a given map or coordinate set, ProSHADE, which can identify the point group of a map and thus may be used during deposition as well as during molecular visualization, is introduced.

🔬 Techniques

🧪 Sample Preparation

🏭 Microscope Brands

Evident (Olympus)

🧪 Reagent Suppliers

💻 Software Details

Image Analysis:
UCSF Chimera PyMOL RELION

💾 Data Repositories

🏛️ Research Organizations (ROR)

Affiliated research institutions:

📊 Figures

Figure 1

The effect of map blurring on cryo-EM reconstructions. Electrostatic potential maps and atomic models corresponding to the structure of u03b2-u00adgalactosidase (PDB entry 5a1a , EMDB entry EMD-2084; ...

Figure 2

Plot of average structure-factor amplitude against resolution to aid the selection of the optimal blurring/sharpening B value, as shown in the CCP-EM GUI (Burnley et al. , 2017 u25b8 ). The data corre...

Figure 3

The utility of simultaneously viewing multiple maps using various levels of map blurring/sharpening. Electrostatic potential maps and atomic models corresponding to u03b2-galactosidase (PDB entry 5a1a...

Figure 4

External restraint visualization and usage during parallelized full-chain real-space atomic model refinement in Coot . In order to mimic a u2018typicalu2019 stage of the model-building and refinement ...

Figure 5

Robustness to outliers when performing atomic model refinement using external restraints. The re-refined atomic model corresponding to the RAD51 filament (PDB entry 5jzc , EMDB entry EMD-8183; Short e...

Figure 6

The Divide and Conquer procedure illustrated using a model of a rotavirus particle (PDB entry 4v7q , EMDB entry EMD-5199; Settembre et al. , 2011 u25b8 ) visualized using PyMOL (Schru00f6dinger). ( a ...

Figure 7

Symmetry detection using ProSHADE . The map corresponding to a bacteriophage T4 portal protein (PDB entry 3ja7 , EMDB entry EMD-6324; Sun et al. , 2015 u25b8 ) visualized using UCSF Chimera (Pettersen...

Figure images are served from the NIH/NLM PubMed Central Open Access Subset or Europe PMC; copyright remains with the publishers and authors.

🏛️ Imaging Facility

🏛️ MRC Laboratory of Molecular Biology

💬 Discussion

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