The structure of the anti‐c‐myc antibody 9E10 Fab fragment/epitope peptide complex reveals a novel binding mode dominated by the heavy chain hypervariable …

N Krauß, H Wessner, K Welfle, H Welfle… - Proteins: Structure …, 2008 - Wiley Online Library
N Krauß, H Wessner, K Welfle, H Welfle, C Scholz, M Seifert, K Zubow, J Aÿ, M Hahn…
Proteins: Structure, Function, and Bioinformatics, 2008Wiley Online Library
The X‐ray structure of the Fab fragment from the anti‐c‐myc antibody 9E10 was determined
both as complex with its epitope peptide and for the free Fab. In the complex, two Fab
molecules adopt an unusual head to head orientation with the epitope peptide arranged
between them. In contrast, the free Fab forms a dimer with different orientation. In the
Fab/peptide complex the peptide is bound to one of the two Fabs at the “back” of its
extended CDR H3, in a cleft with CDR H1, thus forming a short, three‐stranded antiparallel β …
Abstract
The X‐ray structure of the Fab fragment from the anti‐c‐myc antibody 9E10 was determined both as complex with its epitope peptide and for the free Fab. In the complex, two Fab molecules adopt an unusual head to head orientation with the epitope peptide arranged between them. In contrast, the free Fab forms a dimer with different orientation. In the Fab/peptide complex the peptide is bound to one of the two Fabs at the “back” of its extended CDR H3, in a cleft with CDR H1, thus forming a short, three‐stranded antiparallel β‐sheet. The N‐ and C‐terminal parts of the peptide are also in contact with the neighboring Fab fragment. Comparison between the CDR H3s of the two Fab molecules in complex with the peptide and those from the free Fab reveals high flexibility of this loop. This structural feature is in line with thermodynamic data from isothermic titration calorimetry. Proteins 2008. © 2008 Wiley‐Liss, Inc.
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