表位
构象表位
化学
构象变化
肽
单克隆抗体
线性表位
抗体
互补决定区
蛋白质结构
立体化学
表位定位
生物物理学
结晶学
生物化学
生物
遗传学
作者
Z.F. Kanyo,Keh‐Ming Pan,R. Anthony Williamson,Dennis R. Burton,Stanley B. Prusiner,Robert J. Fletterick,Fred E. Cohen
标识
DOI:10.1006/jmbi.1999.3193
摘要
The X-ray crystallographic structures of the anti-Syrian hamster prion protein (SHaPrP) monoclonal Fab 3F4 alone, as well as the complex with its cognate peptide epitope (SHaPrP 104-113), have been determined to atomic resolution. The conformation of the decapeptide is an Omega-loop. There are substantial alterations in the antibody combining region upon epitope binding. The peptide binds in a U-shaped groove on the Fab surface, with the two specificity determinants, Met109 and Met112, penetrating deeply into separate hydrophobic cavities formed by the heavy and light chain complementarity-determining regions. In addition to the numerous contacts between the Fab and the peptide, two intrapeptide hydrogen bonds are observed, perhaps indicating the structure bound to the Fab exists transiently in solution. This provides the first structural information on a portion of the PrP N-terminal region observed to be flexible in the NMR studies of SHPrP 90-231, SHaPrP 29-231 and mouse PrP 23-231. Antibody characterization of the antigenic surfaces of PrPC and PrPSc identifies this flexible region as a component of the conformational rearrangement that is an essential feature of prion disease.
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