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.
| Structure | Year released | #citations |
|---|---|---|
| 6CV6 | 2018 | 1 |
| 6UHW | 2019 | 1 |
| 5JRY | 2016 | 1 |
| 6CU5 | 2018 | 1 |
| 6NE6 | 2019 | 1 |
| 6PTR | 2019 | 1 |
| 6N56 | 2018 | 1 |
| 4O6V | 2014 | 1 |
| 5JTK | 2016 | 1 |
| 6NS0 | 2019 | 1 |
| # | PDB | Additional SSGCID structures cited | Link | Title | Year | Citation | Highlighted abstract |
|---|---|---|---|---|---|---|---|
| 1 | 5i7w | - | https://onlinelibrary.wiley.com/doi/abs/10.1111/jeu.12834 | Characterization of Cystathionine Synthase TtCbs1 and Cysteine Synthase TtCsa1 Involved in Cysteine Biosynthesis in Tetrahymena thermophila | 2020 | H Lv, J Xu, T Bo, W Wang- Journal of Eukaryotic Microbiology, 2020 - Wiley Online Library | TtCsa1 has more than 30% sequence identities with B. abortus CS ( PDB ID: 5JIS) (Dharavath et al. 2017), B. suis CS ( PDB ID: 5I7W ), and L. major CS ( PDB ID: 4AIR) (Fyfe et al. 2012), and we modeled the overall structure of TtCsa1 with these crystal structures |
| 2 | 4zju | - | https://onlinelibrary.wiley.com/doi/abs/10.1111/mmi.13950 | Structure and substrate specificity of ketoacylacyl carrier protein synthase III from Acinetobacter baumannii | 2018 | WC Lee, MC Jeong, Y Lee, C Kwak- Molecular, 2018 - Wiley Online Library | detailed structures of FAS-related proteins from A. baumannii are still lacking except for the unpublished structure of FabI ( PDB ID: 4ZJU ). To our knowledge, the AbKAS III structures KAS III orthologs, whereas only one is found in the A. baumannii genome. Our structure and |
| 3 | 4x54 | - | https://onlinelibrary.wiley.com/doi/abs/10.1111/mmi.14437 | The mycolic acid reductase Rv2509 has distinct structural motifs and is essential for growth in slowgrowing mycobacteria | 2020 | A Javid, C Cooper, A Singh, S Schindler- Molecular, 2020 - Wiley Online Library | structures of the four highest-scoring experimental SDRs (3ASU/3ASV, 1XG5, 4X54 and 4BMV based on the SDR from Sphingobium yanoikuyae (4BMV. pdb ; GenBank ID ACB78183.1 structure elements of Rv2509 aligned to its corynebacterial homologues, the core structure of |
| 4 | 6ona | - | https://onlinelibrary.wiley.com/doi/abs/10.1111/tbed.13944 | Evolution of H9N2 avian influenza viruses in Iran, 20172019 | 2020 | M Bashashati, DH Chung- Transboundary and, 2020 - Wiley Online Library | (http://www.cbs.dtu.dk/services/NetNGlyc/) and GlyProt server (http://www.glycosciences.de/ modeling/). The HA structure was modelled using the H9 HA template ( PDB accession number, 6ONA ) in the SWISS-MODEL server (https://swissmodel.expasy.org/) and |
| 5 | 3k2h | - | https://onlinelibrary.wiley.com/doi/abs/10.1111/tpj.13983 | Targeting plant DIHYDROFOLATE REDUCTASE with antifolates and mechanisms for genetic resistance | 2018 | MG Corral, J Haywood, LH Stehl, KA Stubbs- The Plant, 2018 - Wiley Online Library | The homology models of A. thaliana DHFR‐TS1 and DHFR‐TS2 were created ab initio based on the structure of the bifunctional DHFR‐TS enzyme from B. bovis (PDB 3K2H; Begley et al., 2011), using the I‐TASSER server (Zhang, 2008). |
| 6 | 6uww | - | https://onlinelibrary.wiley.com/doi/abs/10.1155/bmri/4196295 | In Silico Investigation of Phytochemicals From Clinically Tested Herbal Extracts as Potential Dihydrofolate Reductase Inhibitors for Buruli Ulcer | 2025 | AAK Mohamed, T Woasiedem- BioMed Research, 2025 - Wiley Online Library | original Schrdinger-prepared structure . This PDB structure , while Schrdinger retains the original biological residue numbering from the full-length protein sequence ( PDB ID: 6UWW ). |
| 7 | 3kzx | 3p96 | https://open.bu.edu/handle/2144/15107 | Sequence-and structure-based approaches to deciphering enzyme evolution in the Haloalkonoate Dehalogenase superfamily | 2014 | C Pandya - 2014 - open.bu.edu | ... , all , + and /20. Importantly, ~10% of domain combinations in the Protein Data Bank(PDB) are domain insertions. ... It performs structure-based alignment and secondary-structure comparison to identify conserved and inserted secondary structural elements. ... |
| 8 | 4giv | - | https://open.library.ubc.ca/collections/ubctheses/24/items/1.0340574 | Investigating the molecular architecture of yeast histone acetyltransferase complexes | 2016 | D Setiaputra - 2016 - open.library.ubc.ca | Learning, knowledge, research, insight: welcome to the world of UBC Library, the second-largest academic research library in Canada. |
| 9 | 3eoo | - | https://opendata.uni-halle.de/handle/1981185920/8795 | Massenspektrometrische Untersuchungen zur Struktur der Peroxisom-Proliferator-aktivierten Rezeptoren- und-/ | 2017 | R Schwarz - 2017 - opendata.uni-halle.de | Optische Dichte bei 600 nm PAGE Polyacrylamid-Gelelektrophorese PBP PPAR Binding Protein PCR Polymerase-Kettenreaktion PDB Proteindatenbank PflB Pyruvate Formate Lyase PMSF Phenylmethansulfonylfluorid PPAR Peroxisom-Proliferator-aktiverter Rezeptor ppm ... Die umfangreichsten Röntgenkristallstrukturen wurden mit dem Subtyp PPAR-γ (PDBEinträge: 3DZU, 3DZY und 3EOO) gewonnen, in denen das Volllängenprotein ohne den flexiblen N-Terminus mit RXR-α und verschiedenen Liganden und Kofaktoren kokristallisier |
| 10 | 4g50 | - | https://opus.bibliothek.uni-wuerzburg.de/files/32189/Scheuplein_Nicolas_Julian_D... | Fluorescent probe for the identification of potent inhibitors of the macrophage infectivity potentiator (Mip) protein of Burkholderia pseudomallei | 2023 | T Lohr, M Vivoli Vega, D Ankrett- Inhibitors of the - opus.bibliothek.uni-wuerzburg.de | corresponding co-crystal structures with BpMip; PDB ID 5V8T for 2 and PDB ID 4G50 for 3. in pink in the chemical structure . As can be seen from the crystal structures , in each case, the |