Single-particle Cryo-EM At Atomic Resolution - PubMed
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Abstract
The three-dimensional positions of atoms in protein molecules define their structure and their roles in biological processes. The more precisely atomic coordinates are determined, the more chemical information can be derived and the more mechanistic insights into protein function may be inferred. Electron cryo-microscopy (cryo-EM) single-particle analysis has yielded protein structures with increasing levels of detail in recent years1,2. However, it has proved difficult to obtain cryo-EM reconstructions with sufficient resolution to visualize individual atoms in proteins. Here we use a new electron source, energy filter and camera to obtain a 1.7 Å resolution cryo-EM reconstruction for a human membrane protein, the β3 GABAA receptor homopentamer3. Such maps allow a detailed understanding of small-molecule coordination, visualization of solvent molecules and alternative conformations for multiple amino acids, and unambiguous building of ordered acidic side chains and glycans. Applied to mouse apoferritin, our strategy led to a 1.22 Å resolution reconstruction that offers a genuine atomic-resolution view of a protein molecule using single-particle cryo-EM. Moreover, the scattering potential from many hydrogen atoms can be visualized in difference maps, allowing a direct analysis of hydrogen-bonding networks. Our technological advances, combined with further approaches to accelerate data acquisition and improve sample quality, provide a route towards routine application of cryo-EM in high-throughput screening of small molecule modulators and structure-based drug discovery.
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Conflict of interest statement
Competing interest statement
A.K., S.M., L.Y., D.K., E.V.P., E.d.J., J.K., M.B., J.M., and P.T are employees of Thermo Fisher Scientific.
Figures
Extended Data Figure 1. Characteristics of the…
Extended Data Figure 1. Characteristics of the new cryo-EM technology.
(a) Four consecutive measurements of…
Extended Data Figure 2. Cryo-EM for GABA …
Extended Data Figure 2. Cryo-EM for GABA A R.
( a ) B-factor plots for three data…
Extended Data Figure 3. GABA A R…
Extended Data Figure 3. GABA A R reconstruction details.
( a ) The GABA A R cryo-EM…
Extended Data Figure 4. Cryo-EM for apoferritin.
Extended Data Figure 4. Cryo-EM for apoferritin.
(a) Representative electron micrograph. Scale bar is 20…
Extended Data Figure 5. Electrostatic potential of…
Extended Data Figure 5. Electrostatic potential of hydrogen atoms.
(a) Calculated profile (see Methods) of…
Figure 1. New imaging technologies for cryo-EM.
Figure 1. New imaging technologies for cryo-EM.
(a) Schematic overview of an electron cryo-microscope. The…
Figure 2. GABA A R reconstructions.
(a) B-factor plots…Figure 2. GABA A R reconstructions.
(a) B-factor plots for four data sets using: the new CFEG,…
Figure 3. Apo-ferritin reconstruction.
(a) B-factor plots…Figure 3. Apo-ferritin reconstruction.
(a) B-factor plots for reconstructions using: high-order aberration and Ewald sphere…Comment in
- Cryo-electron microscopy reaches atomic resolution. Herzik MA Jr. Herzik MA Jr. Nature. 2020 Nov;587(7832):39-40. doi: 10.1038/d41586-020-02924-y. Nature. 2020. PMID: 33087866 No abstract available.
- Cryo-EM goes atomic. Strack R. Strack R. Nat Methods. 2020 Dec;17(12):1175. doi: 10.1038/s41592-020-01014-1. Nat Methods. 2020. PMID: 33257827 No abstract available.
- Seeing Atoms by Single-Particle Cryo-EM. Bai XC. Bai XC. Trends Biochem Sci. 2021 Apr;46(4):253-254. doi: 10.1016/j.tibs.2021.01.001. Epub 2021 Jan 21. Trends Biochem Sci. 2021. PMID: 33487509
References
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- Cheng Y. Single-particle cryo-EM at crystallographic resolution. Cell. 2015;161:450–457. - PMC - PubMed
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- Lyumkis D. Challenges and opportunities in cryo-EM single-particle analysis. J Biol Chem. 2019;294:5181–5197. - PMC - PubMed
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- Miller PS, Aricescu AR. Crystal structure of a human GABAA receptor. Nature. 2014;512:270–275. - PMC - PubMed
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- Glaeser RM. Specimen Behavior in the Electron Beam. Methods Enzymol. 2016;579:19–50. - PubMed
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- Suloway C, et al. Automated molecular microscopy: the new Leginon system. J Struct Biol. 2005;151:41–60. - PubMed
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- MR/L009609/1/MRC_/Medical Research Council/United Kingdom
- MC_UP_A025_1012/MRC_/Medical Research Council/United Kingdom
- MC_UP_1201/15/MRC_/Medical Research Council/United Kingdom
- 206171/Z/17/Z/WT_/Wellcome Trust/United Kingdom
- 26752/CRUK_/Cancer Research UK/United Kingdom
- MC_EX_MR/L009609/2/MRC_/Medical Research Council/United Kingdom
- 206171/WT_/Wellcome Trust/United Kingdom
- 202905/Z/16/Z/WT_/Wellcome Trust/United Kingdom
- 202905/WT_/Wellcome Trust/United Kingdom
- MC_UP_A025_1013/MRC_/Medical Research Council/United Kingdom
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