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Arginine cluster introduction on framework region in anti-Lysozyme antibody improved association rate constant by changing conformational diversity of CDR loops.

Shingo MaetaMakoto NakakidoHiroaki MatsuuraNaoki SakaiKunio HirataDaisuke KurodaAtsushi FukunagaKouhei Tsumoto
Published in: Protein science : a publication of the Protein Society (2023)
Antibodies are used for many therapeutic and biotechnological purposes. Because the affinity of an antibody to the antigen is critical for clinical efficacy of pharmaceuticals, many affinity maturation strategies have been developed. Although we previously reported an affinity maturation strategy in which the association rate of the antibody towards its antigen is improved by introducing a cluster of arginine residues into the framework region of the antibody, the detailed molecular mechanism responsible for this improvement has been unknown. In this study, we introduced five arginine residues into an anti-hen egg white lysozyme antibody (HyHEL10) Fab fragment to create the R5-mutant and comprehensively characterized the interaction between antibody and antigen using thermodynamic analysis, X-ray crystallography, and molecular dynamics (MD) simulations. Our results indicate that introduction of charged residues strongly enhanced the association rate, as previously reported, and the antibody-antigen complex structure was almost the same for the R5-mutant and wild-type Fabs. The MD simulations indicate that the mutation increased conformational diversity in complementarity-determining region loops and thereby enhanced the association rate. These observations provide the molecular basis of affinity maturation by R5 mutation. This article is protected by copyright. All rights reserved.
Keyphrases
  • molecular dynamics
  • wild type
  • density functional theory
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  • high resolution
  • molecular dynamics simulations
  • single molecule
  • magnetic resonance imaging
  • mass spectrometry
  • monte carlo