SSGCID
Seattle Structural Genomics Center for Infectious Disease

Cited Structures: list of articles citing SSGCID structures

We are actively tracking the number of publications by the scientific community which reference our structures, whether in the main text, figure captions or supplementary material. Selected articles are manually reviewed. Publications by SSGCID authors are excluded from the manually reviewed list. From our manual curation results, we estimate that the false positive rate might be as high as 50% for some structures.

This list was obtained from Google Scholar searches using an API provided by Christian Kreibich.

Cited structures

Manually reviewed citations

# PDB Additional SSGCID structures cited Link Title Year Citation Highlighted abstract
1 7ly0 - https://www.nature.com/articles/s41564-022-01092-1 Differential neutralizing antibody responses elicited by CoronaVac and BNT162b2 against SARS-CoV-2 Lambda in Chile 2022 ML Acevedo, A Gaete-Argel, L Alonso-Palomares- Nature, 2022 - nature.com determined crystal structures ( PDB : 7BNN, PDB : 7BWJ, PDB : 7LY0 ). Structural alignments c) Same as a) for antibody S2M28 solved by CryoEM (PDBid: 7LY0 ), which recognizes the
2 5uxx - https://www.nature.com/articles/s41579-020-00450-2 Diverse and unified mechanisms of transcription initiation in bacteria 2020 J Chen, H Boyaci, EA Campbell- Nature Reviews Microbiology, 2020 - nature.com Transcription of DNA is a fundamental process in all cellular organisms. The enzyme responsible for transcription, RNA polymerase, is conserved in general architecture and catalytic function across the three domains of life. ... Fig 5 Mycobacterium tuberculosis σK–RskA (PDB ID 4NQW; panel Ae) 85, Bartonella quintana σE–NepR (PDB ID 5UXX: panel Af),
3 3nf4 - https://www.nature.com/articles/s41580-024-00718-y Opportunities and challenges in design and optimization of protein function 2024 D Listov, CA Goverde, BE Correia- Reviews Molecular Cell, 2024 - nature.com Each design is also labelled according to the class of design generation method ( PDB entries: 1AL1, 1QYS, 3QA9, 3NF4 ). d, Secondary structure element content of natural and de ... Structures of a de novo α-helix bundle (Protein Data Bank (PDB) entry: 7CBC) are highlighted versus two natural proteins (PDB entries: 3NF4 and 3ZQJ).
4 7jx3 7k3q, 7r7n https://www.nature.com/articles/s41586-021-03807-6 SARS-CoV-2 RBD antibodies that maximize breadth and resistance to escape 2021 TN Starr, N Czudnochowski, Z Liu, F Zatta, YJ Park- Nature, 2021 - nature.com An ideal therapeutic anti-SARS-CoV-2 antibody would resist viral escape13, have activity against diverse sarbecoviruses47, and be highly protective through viral neutralization... Structures used were those described in this paper, or previously published structures: ACE2-bound RBD (6M0J)60, CR3022-bound RBD (6W41)61, REGN10987- and REGN10933-bound RBD (6XDG)62, CB6- (LY-CoV016) bound RBD (7C01)63, and S304, S309 and S2H14-bound RBD (7JX3)15.
5 7jw0 - https://www.nature.com/articles/s41586-022-04980-y BA. 2.12. 1, BA. 4 and BA. 5 escape antibodies elicited by Omicron infection 2022 Y Cao, A Yisimayi, F Jian, W Song, T Xiao, L Wang- Nature, 2022 - nature.com Here, coupled with structural comparisons of the spike proteins, we show that BA.2.12.1, BA.4 and BA.5 (BA.4 and BA.5 are hereafter referred collectively to as BA.4/BA.5) exhibit similar ... b, Epitope of representative antibodies in group E3 (S2H97, PDB: 7M7W) and F1 (S304, PDB: 7JW0). Residues highlighted in red indicate mutated sites in Omicron variants.
6 5woq - https://www.nature.com/articles/s41586-023-06376-y Small protein modules dictate prophage fates during polylysogeny 2023 JE Silpe, OP Duddy, GE Johnson, GA Beggs- Nature, 2023 - nature.com Structural predictions and homologues predicted by the DALI server were aligned and... (b) Structural alignment of TF72 (brown) and TF63 (blue) as monomers with the highest scoring homologs: C.AhdI (green), C.BcII (orange), C.Esp1396I (pink), and ClgR (gray) (PDB ID: 1Y7Y, 2B5A, 3G5G, and 5WOQ, respectively).
7 6mtz - https://www.nature.com/articles/s41586-024-08417-6 Structures and mechanism of condensation in non-ribosomal peptide synthesis 2025 A Pistofidis, P Ma, Z Li, K Munro, KN Houk- Nature, 2025 - nature.com the two parts with protein ligation 15, and solved the structures of the substrate-and product-bound states. The structures show the precise orientation of the megaenzyme preparing ... Initial phases were calculated by molecular replacement in Phaser v.2.9.0 using the full chain A (with domains F1A1T1C2A2T2) of Protein Data Bank (PDB) 6MTZ (ref. 14), followed by iterative refinement in the programs Phenix
8 5eks - https://www.nature.com/articles/s41589-020-0587-9 Architecture and functional dynamics of the pentafunctional AROM complex 2020 HA Veraszt, M Logotheti, R Albrecht, A Leitner- Nature Chemical, 2020 - nature.com 2: The architecture and structural characteristics of the AROM complex. figure2. a, Definition of color scheme and order of domains in the CtAROM sequence, with gray numbers according to the succession of reactions in the pathway. b, CtAROM crystal structure with active sites ... The resulting representative PDB structures are 1NVA, 1XAL, 3QBD and 5EKS, for the DHQS
9 4iuj - https://www.nature.com/articles/s41589-024-01813-z PROTAR Vaccine 2.0 generates influenza vaccines by degrading multiple viral proteins 2025 C Zhang, J Hou, Z Li, Q Shen, H Bai, L Chen- Nature Chemical, 2025 - nature.com Data Bank ( PDB ) under accession numbers 4WSB, 4WSB, 4IUJ , 2IQH, 7JM3 and 4OPH, respectively. The 3D structure of influenza B viral PA protein was deposited to the PDB under
10 6cja - https://www.nature.com/articles/s41589-025-01954-9 Terminal alkyne formation by a pyridoxal phosphate-dependent enzyme 2025 JB Hedges, JA Marchand, C Calv-Tusell- Nature Chemical, 2025 - nature.com PDB 6CJA , we then superposed the structure of the second adjacent monomer from the PDB 6CJA catalytic dimer onto the structure residues present in the structure of the N terminus of