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 3gwc 3hzg https://pubs.acs.org/doi/abs/10.1021/acs.jpcb.6c01496 The Impact of Second-Shell Residues on Substrate Binding at the Active Site of Thymidylate Synthase from Mycobacterium tuberculosis 2026 P Sengupta, P Satpati- The Journal of Physical Chemistry B, 2026 - ACS Publications These structures indicate increased exposure of the active site between thermodynamics and structural characteristics ( to model the substrate-free MtbThyX, based on PDB 3HZG
2 3rrp 3r9q https://www.mdpi.com/1422-0067/27/13/5789 Deferoxamine Exhibits Antimicrobial and Immunomodulatory Activity Against Mycobacterium abscessus: Integrated In Silico and In Vitro Evidence 2026 RLS Lira, FB Mendes, PLBT Roxo- International Journal of, 2026 - mdpi.com associated with immunocompromised individuals, these microorganisms can also cause disease in susceptible immunocompetent hosts, particularly in the presence of structural lung... Molecular docking profiles within the binding sites of: c) fumarase (PDB ID: 3RRP);
3 6uld - https://pubs.acs.org/doi/abs/10.1021/acsinfecdis.5c00996 The Pyridoxal-5-Phosphate-Dependent Enzymes of Mycobacterium tuberculosis 2026 A Peracchi, B Baker- ACS Infectious Diseases, 2026 - ACS Publications from the PDB database (sequences derived from structural studies). Initially this search yielded 87 hits, many of which, however, were not pertinent (such as enzymes involved in the
4 2mrc 7ry7 https://onlinelibrary.wiley.com/doi/abs/10.1155/bri/2724332 Gene Expression, Docking and Machine Learning in Malaria Drug Discovery: A Systematic Review 2026 RS Dangana, IE Ebhohimen, SA Malgwi- Biochemistry, 2026 - Wiley Online Library The last studies have used deep learning docking methods, that is, the difusion model (Targetdif), to generate and screen novel compounds using structural features of essential... Immune/inflammatory response High mobility group Box 1 (PfHMGB1 HsHMGB1) 2MRC, 1HME
5 3hhe - https://www.pnas.org/doi/abs/10.1073/pnas.2608150123 H2S-mediated protein persulfidation regulates redox metabolic flux underlying salt-stress resilience in rice 2026 Z Lin, M Zhou, X Ma, M Li, L Fu, H Li, Y Liu- Proceedings of the, 2026 - pnas.org To further assess the structural implications, we generated a structure of a peroxidase from Chamaerops excelsa ( PDB -MODEL; RPIA, PDB 3HHE ) predicted that persulfidation at
6 6nb3 6nb5, 6nb4 https://onlinelibrary.wiley.com/doi/abs/10.1002/rmv.70113 Structural Basis of MERSCoV Receptor Interactions and Antibody Neutralisations 2026 E Gavor, YK Choong, S Singh- Reviews in Medical, 2026 - Wiley Online Library We offer insight into how these antibodies crossreact and crossneutralise by analysing available structures of spike glycoproteinantibody complexes. This review provides an update
7 6ona 7jpd https://www.sciencedirect.com/science/article/pii/S156713482600050X Evolutionary dynamics of epitopes of limited variability on the head of influenza H1 haemagglutinin 2026 J Loureno, H Zinad, J Kempton, S Gupta- Infection, Genetics and, 2026 - Elsevier It is commonly assumed that naturally protective targets of immunity in influenza are highly variable. Theoretical work suggests, by contrast, that influenza evolution is primarily driven by ... For the latter, a range of crystal structures were used (as presented in Figs. 2 and 3), including those mentioned above as well as 6ONA (A / Hickox / 1940), 7JPD (A / Fort Monmouth / 1 / 1947), 6MYA (A / Almaty / 32 / 1998), 6N41 (A / Netherlands / 002P1 / 1951), 4M4Y (A / California / 04 /2009), 6CHX (A / Juli
8 6ptg - https://www.science.org/doi/abs/10.1126/sciadv.aea6832 DksA inhibitors against intracellular and persistent Salmonella are effective in acute models of infection 2026 JS Kim, V Kumar, L Liu, YJ Choi, S Senovaityte- Science, 2026 - science.org negative bacteria ( PDB 4IJJ and 6PTG ) were retrieved from the PDB database. PDB files were Schrdinger) programs to analyze the domain structures and amino acid interactions. The
9 7m55 7sof, 7n8i https://search.proquest.com/openview/6076f420cc7b3f957d5b61b03be88b81/1?pq-origs... Structural Insights Into Host-Pathogen Interactions of Coronaviruses and Alphaviruses 2026 LJ Adams - 2026 - search.proquest.com Secondary structural elements idenfified via DSSP are labeled.( E ) Pre-fusion structure of S2 ( PDB : 6XR8). One monomer of S2 is displayed as a cartoon ribbon and colored according
10 3md7 3r1i, 3oce, 3mx6, 3oca, 3r1j, 3o0m, 3r4t, 3r6f, 3omf https://pubs.acs.org/doi/abs/10.1021/acs.jcim.6c00352 Assessing Metal Ion Assignment Accuracy in Protein Data Bank Models via Elemental Spectroscopy 2026 EH Snell, GW Grime, SM Webb, C Costa- Journal of Chemical, 2026 - ACS Publications We find that in a majority of cases, the metals modeled in the corresponding PDB entries data integrity issue in deposited macromolecular structures , PDB -wide. These results establish