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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Copper-induced structural propensities of the amyloidogenic region of human prion protein
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Copper-induced structural propensities of the amyloidogenic region of human prion protein

机译:铜诱导人类pr病毒蛋白淀粉样生成区的结构倾向

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摘要

Transmissible spongiform encephalopathies are associated with the misfolding of the cellular Prion Protein (PrP~C) to an abnormal protein isoform, called scrapie prion protein (PrP~(Sc)). The structural rearrangement of the fragment of N-terminal domain of the protein spanning residues 91–127 is critical for the observed structural transition. The amyloidogenic domain of the protein encloses two copper-binding sites corresponding to His-96 and His-111 residues that act as anchors for metal ion binding. Previous studies have shown that Cu(II) sequestration by both sites may modulate the peptide’s tendency to aggregation as it inflicts the hairpin-like structure that stabilizes the transition states leading to β-sheet formation. On the other hand, since both His sites differ in their ability to Cu(II) sequestration, with His-111 as a preferred binding site, we found it interesting to test the role of Cu(II) coordination to this single site on the structural properties of amyloidogenic domain. The obtained results reveal that copper binding to His-111 site imposes precise backbone bending and weakens the natural tendency of apo peptide to β-sheet formation.
机译:传染性海绵状脑病与细胞Pri蛋白(PrP〜C)错误折叠为异常蛋白同种型(称为瘙痒病pr病毒蛋白(PrP〜(Sc)))有关。跨越残基91-127的蛋白质N末端结构域片段的结构重排对于观察到的结构转变至关重要。该蛋白质的淀粉样蛋白形成域包围了两个铜结合位点,它们对应于His-96和His-111残基,这些残基充当金属离子结合的锚。先前的研究表明,两个位点的Cu(II)螯合作用可能会调节肽的聚集趋势,因为它会形成发夹状结构,从而稳定过渡状态,导致形成β-折叠。另一方面,由于两个His位点在螯合Cu(II)的能力上都不同,以His-111作为优选的结合位点,因此我们发现有趣的是测试Cu(II)配位对该单个位点的作用。淀粉样蛋白形成结构域的结构特性。所得结果表明,铜与His-111位点的结合强加了精确的骨架弯曲,并减弱了载脂蛋白肽形成β-折叠的自然趋势。

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