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Outcomes of the EMDataResource cryo-EM Ligand Modeling Challenge.

Authors :
Lawson CL
Kryshtafovych A
Pintilie GD
Burley SK
Černý J
Chen VB
Emsley P
Gobbi A
Joachimiak A
Noreng S
Prisant MG
Read RJ
Richardson JS
Rohou AL
Schneider B
Sellers BD
Shao C
Sourial E
Williams CI
Williams CJ
Yang Y
Abbaraju V
Afonine PV
Baker ML
Bond PS
Blundell TL
Burnley T
Campbell A
Cao R
Cheng J
Chojnowski G
Cowtan KD
DiMaio F
Esmaeeli R
Giri N
Grubmüller H
Hoh SW
Hou J
Hryc CF
Hunte C
Igaev M
Joseph AP
Kao WC
Kihara D
Kumar D
Lang L
Lin S
Maddhuri Venkata Subramaniya SR
Mittal S
Mondal A
Moriarty NW
Muenks A
Murshudov GN
Nicholls RA
Olek M
Palmer CM
Perez A
Pohjolainen E
Pothula KR
Rowley CN
Sarkar D
Schäfer LU
Schlicksup CJ
Schröder GF
Shekhar M
Si D
Singharoy A
Sobolev OV
Terashi G
Vaiana AC
Vedithi SC
Verburgt J
Wang X
Warshamanage R
Winn MD
Weyand S
Yamashita K
Zhao M
Schmid MF
Berman HM
Chiu W
Source :
Nature methods [Nat Methods] 2024 Jul; Vol. 21 (7), pp. 1340-1348. Date of Electronic Publication: 2024 Jun 25.
Publication Year :
2024

Abstract

The EMDataResource Ligand Model Challenge aimed to assess the reliability and reproducibility of modeling ligands bound to protein and protein-nucleic acid complexes in cryogenic electron microscopy (cryo-EM) maps determined at near-atomic (1.9-2.5 Å) resolution. Three published maps were selected as targets: Escherichia coli beta-galactosidase with inhibitor, SARS-CoV-2 virus RNA-dependent RNA polymerase with covalently bound nucleotide analog and SARS-CoV-2 virus ion channel ORF3a with bound lipid. Sixty-one models were submitted from 17 independent research groups, each with supporting workflow details. The quality of submitted ligand models and surrounding atoms were analyzed by visual inspection and quantification of local map quality, model-to-map fit, geometry, energetics and contact scores. A composite rather than a single score was needed to assess macromolecule+ligand model quality. These observations lead us to recommend best practices for assessing cryo-EM structures of liganded macromolecules reported at near-atomic resolution.<br /> (© 2024. The Author(s), under exclusive licence to Springer Nature America, Inc.)

Details

Language :
English
ISSN :
1548-7105
Volume :
21
Issue :
7
Database :
MEDLINE
Journal :
Nature methods
Publication Type :
Academic Journal
Accession number :
38918604
Full Text :
https://doi.org/10.1038/s41592-024-02321-7