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 7k45 - https://www.science.org/doi/abs/10.1126/science.abm5835 SARS-CoV-2 Beta variant infection elicits potent lineage-specific and cross-reactive antibodies 2022 SM Reincke, M Yuan, HC Kornau, VM Corman- Science, 2022 - science.org structural basis of this public broadly reactive clonotype, we determined crystal structures of We compared the structures of CS44 and CV07-287 with other published VH1-58 antibodies... Structures of VH1-58 antibodies from other studies are shown for comparison, including COVOX-253 (PDB 7BEN), S2E12 (PDB 7K45),
2 7k43 - https://www.sciencedirect.com/science/article/pii/S2211124722005344 Structures of Omicron spike complexes and implications for neutralizing antibody development 2022 H Guo, Y Gao, T Li, T Li, Y Lu, L Zheng, Y Liu, T Yang- Cell reports, 2022 - Elsevier The recently reported structural model PDB entry 7T9K (Mannar et al., 2022) was used as an initial template for model building of the Omicron Spike trimer and ACE2. PDB entry 7K43
3 7k43 7k4n https://www.nature.com/articles/s41401-021-00851-w Structure genomics of SARS-CoV-2 and its Omicron variant: drug design templates for COVID-19 2022 C Wu, W Yin, Y Jiang, HE Xu- Acta Pharmacologica Sinica, 2022 - nature.com on uncovering structures and functions for structural biology of SARS-CoV-2 and discuss important biological issues that remain to be addressed. We present the examples of structure - ... S2E12 (represented as a cyan surface) binds to the “up” conformation of SARS-CoV-2 S RBD (PDB: 7K4N); S2M11 (represented as a brown surface) binds to the “down” conformation of SARS-CoV-2 S RBD (PDB: 7K43);
4 7jxc 7jxe, 7jxd https://www.sciencedirect.com/science/article/pii/S0092867421000805 Circulating SARS-CoV-2 spike N439K variants maintain fitness while evading antibody-mediated immunity 2021 EC Thomson, LE Rosen, JG Shepherd, R Spreafico- Cell, 2021 - Elsevier / pdb /surface_glycoprotein/SARS-CoV-2/6m0j/isolde/notes.txt. The 1r42 refined structure differs from the PDB -deposited structure (copied from the 6m17 PDB structure ). ... Key resources table S2H13, S2H14, S2A4, S2X35 IgG Piccoli et al., 2020 PDB: 7JV2, 7JXC, 7JXD, 7JXE
5 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.
6 7jwk 6mu0 https://www.sciencedirect.com/science/article/pii/S002228362100588X Building structural models of a whole mycoplasma cell 2022 M Maritan, L Autin, J Karr, MW Covert, AJ Olson- Journal of molecular, 2022 - Elsevier PDB structure for a specific ingredient. Proteins with high sequence similarity and structural ... Ten of these experimental structures were used in our spatial model for the following gene products: MG396 (RpiB, 6MU0), MG027 (NusB, 1Q8C), MG191 .... The other four genes are only partially captured by experimentally-determined structures: MG200 (DnaJ-like, 4DCZ), MG238 (tig, 1HXV), MG301 (GapA, 7JWK), and MG469 (DnaA, 2JMP).
7 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.
8 7jva - https://www.nature.com/articles/s41467-023-35949-8.pdf Structural basis for a conserved neutralization epitope on the receptor-binding domain of SARS-CoV-2 2023 KYA Huang, X Chen, A Mohapatra- Nature, 2023 - nature.com PDB code 7M7B for 3D11 and 7JVA for S2A4. c IS-9A and similar antibodies extend their footprints upwards and contact residue 408 and the residues 502-504 region.
9 7jv2 7k43, 7jva, 7km8 https://www.science.org/doi/abs/10.1126/science.abh1139 Structural and functional ramifications of antigenic drift in recent SARS-CoV-2 variants 2021 M Yuan, D Huang, CCD Lee, NC Wu, AM Jackson- Science, 2021 - science.org We therefore investigated the structural and functional 4 ( PDB 6XEY) (27) are shown in pink and light pink, respectively; S2M11 ( PDB 7K43) (30) in orange and yellow; C121 ( PDB 7K8X
10 7jv2 7jvc, 7jw0, 7ra8, 7ral https://journals.plos.org/plospathogens/article?id=10.1371/journal.ppat.1010260 Structural and antigenic variations in the spike protein of emerging SARS-CoV-2 variants 2022 A Mittal, A Khattri, V Verma- PLoS Pathogens, 2022 - journals.plos.org Recent structural and functional studies have mapped the -CoV-2 variants; (2) the structural basis for antibody-mediated fitness, and in conjunction with the structures of the spike-nAb ... the neutralization mechanism involves direct competition with the ACE2 receptor. These antibodies include C002 (PDB: 7K8S) [70], C104 (PDB: 7K8U) [70], S2H13 (PDB: 7JV2) [77], C119 (PDB: 7K8U) [70], C121 (PDB: 7K8X) [70], LY-CoV555 (PDB: 7KMG), DH1041 (7LAA), COVA2-15 (EMD-22061) [82], 2–43 (EMD-22275) [94],