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9NK9

Nano-body peptide complex

Summary for 9NK9
Entry DOI10.2210/pdb9nk9/pdb
DescriptorNanobody, SER-PHE-GLU-ASP-PHE-TRP-LYS-GLY-GLU-ASP (3 entities in total)
Functional Keywordsantibody ligand complex, structural protein, immune system
Biological sourceLama glama
More
Total number of polymer chains2
Total formula weight15600.28
Authors
Zhao, G.,Cheloha, R.W.,Bewley, C.A. (deposition date: 2025-02-28, release date: 2025-05-28, Last modification date: 2025-06-04)
Primary citationSachdev, S.,Roy, S.,Saha, S.J.,Zhao, G.,Kumariya, R.,Creemer, B.A.,Yin, R.,Pierce, B.G.,Bewley, C.A.,Cheloha, R.W.
Evaluation of Alphafold modeling for elucidation of nanobody-peptide epitope interactions.
J.Biol.Chem., :110268-110268, 2025
Cited by
PubMed Abstract: Models of Ab-antigen complexes can be used to understand interaction mechanisms and for improving affinity. This study evaluates the use of the protein structure prediction algorithm AlphaFold (AF) for exploration of interactions between peptide epitope tags and the smallest functional antibody fragments, nanobodies (Nbs). Although past studies of AF for modeling antibody-target (antigen) interactions suggested modest algorithm performance, those were primarily focused on Ab-protein interactions, while the performance and utility of AF for Nb-peptide interactions, which are generally less complex due to smaller antigens, smaller binding domains, and fewer chains, is less clear. In this study we evaluated the performance of AF for predicting the structures of Nbs bound to experimentally validated, linear, short peptide epitopes (Nb-tag pairs). We expanded the pool of experimental data available for comparison through crystallization and structural determination of a previously reported Nb-tag complex (Nb). Models of Nb-tag pair structures generated from AF were variable with respect to consistency with experimental data, with good performance in just over half (4 out of 6) of cases. Even among Nb-tag pairs successfully modeled in isolation, efforts to translate modeling to more complex contexts failed, suggesting an underappreciated role of the size and complexity of inputs in AF modeling success. Finally, the model of a Nb-tag pair with minimal previous characterization was used to guide the design of a peptide-electrophile conjugate that undergoes covalent crosslinking with Nb upon binding. These findings highlight the utility of minimized antibody and antigen structures to maximize insights from AF modeling.
PubMed: 40409557
DOI: 10.1016/j.jbc.2025.110268
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.1 Å)
Structure validation

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PDB entries from 2025-06-04

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