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 7jzl 7jzm, 7jzn, 7jzu https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/adhm.202503487 Multivalent Protein Nanorings for Broad and Potent SARSCoV2 Neutralization 2025 M Behbahanipour, C Goldin, CA Prato- Advanced, 2025 - Wiley Online Library ), their structural orientation within each differs. Both LCB1 and LCB3 are small 3-helix bundles, but whereas LCB1 ( PDB ID 7JZL ) binds in an up-down-up orientation, LCB3 ( PDB ID
2 7jw0 7k45, 7lxy, 7so9, 7sob https://academic.oup.com/ve/article-abstract/11/1/veaf027/8159764 Comprehensive analysis of SARS-CoV-2 Spike evolution: epitope classification and immune escape prediction 2025 NFB Teruel, M Crown, R Rajsbaum, M Bashton- Virus, 2025 - academic.oup.com to epitope 3 from structures 7A5R, 6W41, 7LM8, 7S5Q, 7JW0 , 7X1M, and 7R6X. Comparing all the vectors of interaction for S309, we see that one Kappa structure ( PDB 7SOB), from
3 4f40 4gie https://www.mdpi.com/1424-8247/18/10/1489 Computational Investigation of the Potential Antileishmanial Mechanism of the Nitroindazole Derivative VATR131 2025 O Casanova-Alvarez, N Mollineda-Diogo- Pharmaceuticals, 2025 - mdpi.com structural damage to the parasite, further supporting their therapeutic potential [17]. VATR131s leishmanicidal activity, causing both structural and ultrastructural damage to the parasite [
4 6tz8 - https://www.pnas.org/doi/abs/10.1073/pnas.2419883121 Structure-guided design and synthesis of C22-and C32-modified FK520 analogs with enhanced activity against human pathogenic fungi 2025 PA Dome, P Jeong, G Nam, H Jang, A Rivera- Proceedings of the, 2025 - pnas.org neoformans complexes based on available crystal structures ( PDB ID: 7U0T and 6TZ8 , respectively). Analysis of docking models for C22 derivatives in the human and fungal binding
5 3i3r 3nrr https://www.cell.com/molecular-plant/abstract/S1674-2052(25)00209-6 Structural insights into a plant-conserved DHFR-TS reveal a selective herbicide target 2025 J Haywood, KJ Breese, DP McDougal, C Verdonk- Molecular Plant, 2025 - cell.com A molecular replacement model was generated based on the last common atom of PDB 3I3R and the structure solved with PHASER from CCP4100. Manual building and refinement
6 7luy 6wct https://www.nature.com/articles/s41467-025-61732-y Comprehensive profiling of the catalytic conformations of human Guanylate kinase 2025 L Wang, Z Li, Y Xuan, J Qin, S Li, F Zhong- Nature, 2025 - nature.com The atomic coordinates and structure factors for GMPK in its free form and substrate-bound forms generated in this study were deposited to the Protein Data Bank ( PDB ) ... The source data underlying Figs. 1i, 2c, 3i and Supplementary Fig. 6c–i, 9a–d, 11e are provided as a Source Data file. Previously published data for crystal structures of GMPK are available with PDB accession codes: 1EX6, 1EX7, 1LVG, 1S4Q, 1S96, 1ZNX, 1ZNW, 1GKY, 2ANB, 2ANC, 2QOR, 3TR0, 6WCT, 7LUY, 8PTS.
7 7jzl 7jzn https://pmc.ncbi.nlm.nih.gov/articles/PMC12308813/ Exploring the Intrinsic Structural Plasticity and Conformational Dynamics of Human Beta Coronavirus Spike Glycoproteins 2025 YF e Silva, HH Fokoue- Journal of Chemical, 2025 - pmc.ncbi.nlm.nih.gov Such information was related to each PDB -ID, but within the trimeric bound structures , we evaluate whether each protomer has interactions with the ligands by calculating the number of
8 6uj5 - https://www.cell.com/cell-chemical-biology/abstract/S2451-9456(25)00130-8 Pantothenate kinase is an effective target for antifungal therapy 2025 J Regan, C DeJarnette, P Reitler, S Gihaz- Cell Chemical, 2025 - cell.com cerevisiae experimental structure ( PDB : 6UJ5 ), we performed molecular docking analysis with MNS. These studies suggest that the MNS binding site overlaps with that of pantothenate
9 6uhw - https://arxiv.org/abs/2507.14156 All-atom inverse protein folding through discrete flow matching 2025 K Yi, K Jamali, SHW Scheres- arXiv preprint arXiv:2507.14156, 2025 - arxiv.org structures for the sequences generated by both ADFLIP and LigandMPNN. We assessed structural similarity to the reference structure from the PDB scores from the structure prediction (
10 6tys - https://www.nature.com/articles/s41594-025-01598-2 A nanobody-based therapeutic targeting Nipah virus limits viral escape 2025 A Isaacs, GV Nieto, X Zhang, N Modhiran- Nature Structural &, 2025 - nature.com Data Bank ( PDB ) 5EVM) and other antibody-bound NiV F structures ( PDB 6TYS and 7UPD) to a previously determined cryo-EM structure of apo F ( PDB 8DNG), which faces inward