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Antibody recognition of a human chorionic gonadotropin epitope (hCGbeta66-80) depends on local structure retained in the free peptide
Authors:Gregor Craig R  Cerasoli Eleonora  Schouten James  Ravi Jascindra  Slootstra Jerry  Horgan Adrian  Martyna Glenn J  Ryadnov Maxim G  Davis Paul  Crain Jason
Affiliation:School of Physics, University of Edinburgh, Mayfield Road, Edinburgh EH9 3JZ, Scotland, United Kingdom.
Abstract:Human chorionic gonadotropin (hCG) is an important biomarker in pregnancy and oncology, where it is routinely detected and quantified by specific immunoassays. Intelligent epitope selection is essential to achieving the required assay performance. We present binding affinity measurements demonstrating that a typical β3-loop-specific monoclonal antibody (8G5) is highly selective in competitive immunoassays and distinguishes between hCGβ(66-80) and the closely related luteinizing hormone (LH) fragment LHβ(86-100), which differ only by a single amino acid residue. A combination of optical spectroscopic measurements and atomistic computer simulations on these free peptides reveals differences in turn type stabilized by specific hydrogen bonding motifs. We propose that these structural differences are the basis for the observed selectivity in the full protein.
Keywords:Antibodies   Circular Dichroism (CD)   Fourier Transform IR (FTIR)   Hormones   Molecular Dynamics   Human Chorionic Gonadotropin   Oncology
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