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The effect of a membrane-mimicking environment on the interactions of Cu2+ with an amyloidogenic fragment of chicken prion protein

机译:膜模拟环境对Cu2 +与鸡朊蛋白淀粉样蛋白片段相互作用的影响

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摘要

Prion proteins (PrP) from different species have the ability to tightly bind Cu2+ ions. Copper coordination sites are located in the disordered and flexible N-terminal region which contains several His anchoring sites. Among them, two His residues are found in the so called amyloidogenic PrP region which is believed to play a key role in the process leading to oligomer and fibril formation. Both chicken and human amyloidogenic regions have a hydrophobic C-terminal region rich in Ala and Val amino acids. Recent findings revealed that this domain undergoes random coil to α-helix structuring upon interaction with membrane models. This interaction might strongly impact metal binding abilities either in terms of donor sets or affinity. In this study we investigated Cu2+ interaction with an amyloidogenic fragment, chPrP105-140, derived from chicken prion protein (chPrP), in different solution environments. The behavior of the peptide and its metal complexes was analyzed in water and in the presence of negative and positive charged membrane mimicking environments formed by sodium dodecyl sulfate (SDS) and dodecyl trimethyl ammonium chloride (DTAC) micelles. The metal coordination sphere, the metal binding affinity and stoichiometry were evaluated by combining spectroscopic and potentiometric methods. Finally we compare copper(ii) interactions with human and chicken amyloidogenic fragments. Our results indicate that the chicken amyloidogenic fragment is a stronger copper ligand than the human amyloidogenic fragment.
机译:来自不同物种的Prion蛋白(PrP)具有紧密结合Cu2 +离子的能力。铜配位位点位于无序且柔性的N端区域,该区域包含多个His锚定位点。其中,在所谓的淀粉样蛋白生成的PrP区中发现了两个His残基,据认为在导致寡聚物和原纤维形成的过程中起关键作用。鸡和人类淀粉样蛋白形成区均具有富含Ala和Val氨基酸的疏水性C端区域。最新发现表明,该域与膜模型相互作用时经历随机卷曲到α-螺旋结构。这种相互作用可能会严重影响金属的结合能力,无论是供体集还是亲和力。在这项研究中,我们研究了Cu2 +与淀粉样蛋白生成片段chPrP105-140的相互作用,该片段源自鸡pr病毒蛋白(chPrP),在不同的溶液环境中。在水中以及十二烷基硫酸钠(SDS)和十二烷基三甲基氯化铵(DTAC)胶束形成的带负电荷和正电荷的膜模拟环境下,分析了肽及其金属配合物的行为。结合光谱学和电位法评估了金属配位球,金属结合亲和力和化学计量。最后,我们比较了铜(ii)与人和鸡淀粉样蛋白生成片段的相互作用。我们的结果表明,鸡淀粉样蛋白生成片段是比人类淀粉样蛋白生成片段更强的铜配体。

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