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Salt links dominate affinity of antibody HyHEL-5 for lysozyme through enthalpic contributions

  1. Author:
    Wibbenmeyer, J. A.
    Schuck, P.
    Smith-Gill, S. J.
    Willson, R. C.
  2. Author Address

    Willson RC Univ Houston, Dept Biol & Biochem Houston, TX 77024 USA Univ Houston, Dept Biol & Biochem Houston, TX 77024 USA NIH, Mol Interact Resource Bioengn & Phys Sci Program Bethesda, MD 20892 USA NCI, Frederick Canc Res & Dev Ctr, NIH Frederick, MD 21702 USA Univ Houston, Dept Chem Engn Houston, TX 77024 USA
    1. Year: 1999
  1. Journal: Journal of Biological Chemistry
    1. 274
    2. 38
    3. Pages: 26838-26842
  2. Type of Article: Article
  1. Abstract:

    The binding of murine monoclonal antibody HyHEL-5 to lysozyme has been the subject of extensive crystallographic, computational, and experimental investigations. The complex of HyHEL-5 with hen egg lysozyme (HEL) features salt bridges between Fab heavy chain residue Glu(50), and Arg(45) Arg(68) of HEL. This interaction has been predicted to play a dominant role in the association on the basis of molecular electrostatics calculations. The association of aspartic acid and glutamine mutants at position 50(H) of the cloned HyHEL-5 Fab with HEL and bobwhite quail lysozyme (BQL), an avian variant bearing an Arg(68) --> Lys substitution in the epitope, was characterized by isothermal titration calorimetry and sedimentation equilibrium. Affinities for HEL were reduced by 400-fold (E50(H)D) and 40,000-fold (E50(H)Q) (Delta Delta G degrees estimated at 4.0 and 6.4 kcal mol(-1), respectively). The same mutations reduce affinity for BQL by only 7- and 55-fold, respectively, indicating a reduced specificity for HEL. The loss of affinity upon mutation is in each case primarily due to an unfavorable change in the enthalpy of the interaction; the entropic contribution is virtually unchanged. An enthalpy-entropy compensation exists for each interaction; Delta H degrees decreases, while Delta S degrees increases with temperature. The Delta Cp for each mutant interaction is less negative than the wild-type. Mutant-cycle analysis suggests the mutations present in the HyHEL-5 Fab mutants are linked to those present in the BQL with coupling energies between 3 and 4 kcal mol(-1). [References: 37]

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