首页> 美国卫生研究院文献>Biophysical Journal >Modeling by Assembly and Molecular Dynamics Simulations of the Low Cu2+ Occupancy Form of the Mammalian Prion Protein Octarepeat Region: Gaining Insight into Cu2+-Mediated β-Cleavage
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Modeling by Assembly and Molecular Dynamics Simulations of the Low Cu2+ Occupancy Form of the Mammalian Prion Protein Octarepeat Region: Gaining Insight into Cu2+-Mediated β-Cleavage

机译:通过组装和分子动力学模拟的哺乳动物on病毒蛋白八面体区域的低Cu2 +占用形式:深入了解Cu2 +介导的β切割。

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摘要

The prion protein has garnered considerable interest because of its involvement in prion disease as well as its unresolved cellular function. The octarepeat region in the flexible N-domain is capable of binding copper through multiple coordination modes. Under conditions of low pH and low Cu2+ concentration, the four octarepeats (ORs) cooperatively coordinate a single copper ion. Based on the average structure of the PHGG and GWGQ portions of a copper-free OR2 model from molecular dynamics simulations, the starting structures of the OR4 complex could be constructed by assembling the repeating structure of PHGG and GWGQ fragments. The resulting model contains a preformed site suitable for Cu2+ coordination. Molecular dynamics simulations of Cu2+ bound to the assembled OR4 model (Cu:OR4) reveal a close association of specific Trp and Gly residues with the Cu2+ center. This low Cu2+-occupancy form of prion protein is redox-active and can readily initiate cleavage of the OR region, mediated by reactive oxygen species generated by Cu+. The OR region is known to be required for β-cleavage, as are the Trp residues within the OR region. The β-cleaved form of the prion protein accumulates in amyloid fibrils. Hence, the close approach of Trp and Gly residues to the Cu2+ coordination site in the low Cu2+-occupancy form of the OR region may signal an important interaction for the initiation of prion disease.
机译:ion病毒蛋白因其参与disease病毒疾病及其无法解析的细胞功能而备受关注。柔性N域中的八面体区域能够通过多种配位模式结合铜。在低pH和低Cu 2 + 的条件下,四个八角豆(OR)协同配位单个铜离子。基于分子动力学模拟中无铜OR2模型的PHGG和GWGQ部分的平均结构,可以通过组装PHGG和GWGQ片段的重复结构来构建OR4配合物的起始结构。生成的模型包含适合Cu 2 + 配位的预成型位点。与组装的OR4模型(Cu:OR4)结合的Cu 2 + 的分子动力学模拟显示,特定Trp和Gly残基与Cu 2 + 中心紧密相关。 low病毒蛋白的这种低Cu 2 + 占有形式具有氧化还原活性,并且可以容易地引发OR区域的裂解,这是由Cu + 产生的活性氧介导的。已知OR区域是进行β切割所必需的,OR区域内的Trp残基也是如此。 ion病毒蛋白的β切割形式积聚在淀粉样蛋白原纤维中。因此,Trp和Gly残基接近OR区域低Cu 2 + 占据形式的Cu 2 + 配位点可能标志着一个重要的相互作用病毒疾病的引发。

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