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Deciphering Copper Coordination in the Mammalian Prion Protein Amyloidogenic Domain

机译:在哺乳动物朊病毒蛋白淀粉样蛋白域中解入铜协调

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摘要

Prions are pathological isoforms of the cellular prion protein that is responsible for transmissible spongiform encephalopathies (TSE). Cellular prion protein interacts with copper, Cu(II), through octarepeat and nonoctarepeat (non-OR) binding sites. The molecular details of Cu(II) coordination within the non-OR region are not well characterized yet. By the means of small angle x-ray scattering and x-ray absorption spectroscopic methods, we have investigated the effect of Cu(II) on prion protein folding and its coordination geometries when bound to the non-OR region of recombinant prion proteins (recPrP) from mammalian species considered resistant or susceptible to TSE. As the prion resistant model, we used ovine recPrP (OvPrP) carrying the protective polymorphism at residues A136, R154, and R171, whereas as TSE-susceptible models, we employed OvPrP with V136, R154, and Q171 polymorphism and bank vole recPrP. Our analysis reveals that Cu(II) affects the structural plasticity of the non-OR region, leading to a more compacted conformation. We then identified two Cu(II) coordination geometries: in the type 1 coordination observed in OvPrP at residues A136, R154, and R171, the metal is coordinated by four residues; conversely, the type 2 coordination is present in OvPrP with V136, R154, and Q171 and bank vole recPrP, where Cu(II) is coordinated by three residues and by one water molecule, making the non-OR region more exposed to the solvent. These changes in copper coordination affect the recPrP amyloid aggregation. This study may provide new insights into the molecular mechanisms governing the resistance or susceptibility of certain species to TSE.
机译:朊病毒是细胞朊病毒蛋白的病理同种型,其负责传染性海绵状脑病(TSE)。细胞朊病毒蛋白质与铜,Cu(II),通过八烷糖和非乙酰糖(非或)结合位点相互作用。在非或区域内的Cu(II)的分子细节尚未充分表征。通过小角度X射线散射和X射线吸收光谱方法的方法,我们研究了Cu(II)对朊病毒蛋白折叠及其与重组朊病毒蛋白的非或区域的协调几何的影响(Recprp )来自被认为是抗性或易受TSE的哺乳动物物种。作为朊病毒模型,我们使用绵羊Recprp(OVPRP)在残留物A136,R154和R171中携带保护性多态性,而作为TSE易感模型,我们使用V136,R154和Q171多态性和银行孔探测器的OVPRP。我们的分析表明,Cu(ii)影响非或区域的结构可塑性,导致更紧凑的构象。然后鉴定了两个Cu(ii)的协调几何形状:在ovprp在残留物A136,R154和R171中观察到的1型配位,金属由四个残基协调;相反,2型协调存在于具有V136,R154和Q171的OVPRP中,并且Bank Vole Recprp,其中Cu(II)由三个残基和一个水分子配位,使得不暴露于溶剂的非或区域。这些铜协调的变化会影响逆蛋白淀粉样蛋白聚集。本研究可以为有关某些物种对TSE的抗性或易感性的分子机制提供新的见解。

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