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Copper binding to octarepeat peptides of the prion protein monitored by mass spectrometry.

机译:通过质谱监测铜与the病毒蛋白的八肽肽的结合。

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摘要

Electrospray ionization mass spectrometry (ESI-MS) was used to measure the binding of Cu2+ ions to synthetic peptides corresponding to sections of the sequence of the mature prion protein (PrP). ESI-MS demonstrates that Cu2+ is unique among divalent metal ions in binding to PrP and defines the location of the major Cu2+ binding site as the octarepeat region in the N-terminal domain, containing multiple copies of the repeat ProHisGlyGlyGlyTrpGlyGln. The stoichiometries of the complexes measured directly by ESI-MS are pH dependent: a peptide containing four octarepeats chelates two Cu2+ ions at pH 6 but four at pH 7.4. At the higher pH, the binding of multiple Cu2+ ions occurs with a high degree of cooperativity for peptides C-terminally extended to incorporate a fifth histidine. Dissociation constants for each Cu2+ ion binding to the octarepeat peptides, reported here for the first time, are mostly in the low micromolar range; for the addition of the third and fourth Cu2+ ions to the extended peptides at pH 7.4, K(D)'s are <100 nM. N-terminal acetylation of the peptides caused some reduction in the stoichiometry of binding at both pH's. Cu2+ also binds to a peptide corresponding to the extreme N-terminus of PrP that precedes the octarepeats, arguing that this region of the sequence may also make a contribution to the Cu2+ complexation. Although the structure of the four-octarepeat peptide is not affected by pH changes in the absence of Cu2+, as judged by circular dichroism, Cu2+ binding induces a modest change at pH 6 and a major structural perturbation at pH 7.4. It is possible that PrP functions as a Cu2+ transporter by binding Cu2+ ions from the extracellular medium under physiologic conditions and then releasing some or all of this metal upon exposure to acidic pH in endosomes or secondary lysosomes.
机译:电喷雾电离质谱法(ESI-MS)用于测量Cu2 +离子与对应于成熟病毒蛋白(PrP)序列片段的合成肽的结合。 ESI-MS证明Cu2 +在二价金属离子中与PrP结合时是唯一的,并将主要Cu2 +结合位点的位置定义为N末端域中的八面体区域,其中包含重复ProHisGlyGlyGlyTrpGlyGln的多个副本。通过ESI-MS直接测量的配合物的化学计量是pH依赖性的:含有四个八角豆的肽在pH 6时螯合两个Cu2 +离子,而在pH 7.4时螯合两个Cu2 +离子。在较高的pH值下,多个Cu2 +离子的结合对于C端延伸并结合第五个组氨酸的肽具有高度的协同作用。本文首次报道,每个与八聚肽结合的Cu2 +离子的解离常数大多在低微摩尔范围内。对于在pH 7.4下向延伸肽中添加第三和第四Cu2 +离子而言,K(D)为<100 nM。肽的N末端乙酰化会导致两个pH的结合化学计量降低。 Cu2 +还与对应于八角豆之前的PrP极端N末端的肽结合,认为该序列的这一区域也可能对Cu2 +络合做出了贡献。尽管在不存在Cu2 +的情况下,四八面体肽的结构不受pH变化的影响,但通过圆二色性判断,Cu2 +的结合在pH 6时引起适度的变化,在pH 7.4时引起主要的结构扰动。 PrP可能通过在生理条件下结合细胞外介质中的Cu2 +离子,然后在内体或次级溶酶体中暴露于酸性pH时释放部分或全部这种金属,从而充当Cu2 +转运蛋白。

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