Leclerc E, Serban H, Prusiner S B, Burton D R, Williamson R A
Department of Immunology, The Scripps Research Institute, La Jolla, CA 92037, USA.
Arch Virol. 2006 Nov;151(11):2103-9. doi: 10.1007/s00705-006-0804-1. Epub 2006 Jun 22.
Prion diseases are caused by misfolding of the cellular prion protein, PrPC. In vitro studies have shown that PrP binds copper via the octarepeat region lying within the unstructured N-terminal segment of the protein, but the significance of copper in PrP metabolism remains unclear. Here, six specific antibodies recognizing different epitope regions of PrP were used to measure the effect of copper on the conformation of the molecule at the cell surface. Binding of an antibody, E149, to an epitope within the octarepeat domain of PrP is halved in the presence of copper, whereas binding of antibodies recognizing epitope motifs C-terminal to residue 90 of PrP remain relatively unaltered under equivalent conditions. These experiments strongly suggest that copper induces localized conformational change within the N-terminal portion of cell-surface PrPC.
朊病毒疾病是由细胞朊蛋白PrPC的错误折叠引起的。体外研究表明,PrP通过位于该蛋白无结构N端区域内的八肽重复区域结合铜,但铜在PrP代谢中的意义仍不清楚。在这里,使用六种识别PrP不同表位区域的特异性抗体来测量铜对细胞表面分子构象的影响。在有铜存在的情况下,抗体E149与PrP八肽重复结构域内一个表位的结合减半,而在相同条件下,识别PrP第90位残基C端表位基序的抗体结合保持相对不变。这些实验有力地表明,铜诱导细胞表面PrPC N端部分发生局部构象变化。