Wong B-S, Li R, Sassoon J, Kang S-C, Liu T, Pan T, Greenspan N S, Wisniewski T, Brown D R, Sy M-S
Institute of Pathology (BRB 933), Case Western Reserve University, School of Medicine, 10900 Euclid Ave., Cleveland, Ohio 44106, USA.
Cell Mol Life Sci. 2003 Jun;60(6):1224-34. doi: 10.1007/s00018-003-3057-0.
When recombinant and cellular prion protein (PrP(C)) binds copper, it acquires properties resembling the scrapie isoform (PrP(Sc)), namely protease resistance, detergent insolubility and increased beta sheet content. However, whether the conformations of PrP(C) induced by copper and PrP(Sc) are similar has not been studied in great detail. Here, we use a panel of seven monoclonal antibodies to decipher the epitopes on full-length mouse PrP(C) that are affected by exogenous copper, and to compare the antigenicity of the copper-treated full-length PrP(C) with the full-length PrP(Sc) present in scrapie-infected mouse brains. In the presence of copper, we found that epitopes along residues 115-130 and 153-165 become more accessible on PrP(C). These regions correspond to the two beta sheet strands in recombinant PrP and they were proposed to be important for prion conversion. However, when we compared the antibody-binding patterns between full-length PrP(C) with full-length PrP(Sc) and between copper-treated full-length PrP(C) with full-length PrP(Sc), antibody binding to residues 143-155 and 175-185 was consistently increased on PrP(Sc). Collectively, our results suggest that copper-treated full-length PrP(C) does not resemble full-length PrP(Sc), despite acquiring PrP(Sc)-like properties. In addition, since each full-length protein reacts distinctively to some of the antibodies, this binding pattern could discriminate between PrP(C) and PrP(Sc).
当重组型和细胞型朊病毒蛋白(PrP(C))与铜结合时,它会获得类似于瘙痒病异构体(PrP(Sc))的特性,即蛋白酶抗性、去污剂不溶性和β-折叠含量增加。然而,铜诱导的PrP(C)构象与PrP(Sc)是否相似尚未得到详细研究。在这里,我们使用一组七种单克隆抗体来解读全长小鼠PrP(C)上受外源铜影响的表位,并将经铜处理的全长PrP(C)的抗原性与瘙痒病感染小鼠脑中存在的全长PrP(Sc)进行比较。在有铜存在的情况下,我们发现PrP(C)上115 - 130位和153 - 165位残基处的表位变得更容易接近。这些区域对应于重组PrP中的两条β-折叠链,并且有人提出它们对朊病毒转化很重要。然而,当我们比较全长PrP(C)与全长PrP(Sc)之间以及经铜处理的全长PrP(C)与全长PrP(Sc)之间的抗体结合模式时,PrP(Sc)上与143 - 155位和175 - 185位残基的抗体结合始终增加。总体而言,我们的结果表明,尽管经铜处理的全长PrP(C)获得了类似PrP(Sc)的特性,但它与全长PrP(Sc)并不相似。此外,由于每种全长蛋白对某些抗体的反应不同,这种结合模式可以区分PrP(C)和PrP(Sc)。