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拉曼光学活性和圆二色性揭示了二价铜离子和锰离子对朊病毒蛋白折叠影响的显著差异。

Raman optical activity and circular dichroism reveal dramatic differences in the influence of divalent copper and manganese ions on prion protein folding.

作者信息

Zhu Fujiang, Davies Paul, Thompsett Andrew R, Kelly Sharon M, Tranter George E, Hecht Lutz, Isaacs Neil W, Brown David R, Barron Laurence D

机构信息

WestChem, Department of Chemistry, University of Glasgow, Glasgow G12 8QQ, United Kingdom.

出版信息

Biochemistry. 2008 Feb 26;47(8):2510-7. doi: 10.1021/bi7022893. Epub 2008 Jan 19.

DOI:10.1021/bi7022893
PMID:18205409
Abstract

The binding of divalent copper ions to the full-length recombinant murine prion protein PrP23-231 at neutral pH was studied using vibrational Raman optical activity (ROA) and ultraviolet circular dichroism (UV CD). The effect of the Cu2+ ions on PrP structure depends on whether they are added after refolding of the protein in water or are present during the refolding process. In the first case ROA reveals that the hydrated alpha-helix is lost, with UV CD revealing a drop from approximately 25% to approximately 18% in the total alpha-helix content. The lost alpha-helix could be that comprising residues 145-156, located within the region associated with scrapie PrP formation. In the second case, ROA reveals the protein's structure to be almost completely disordered/irregular, with UV CD revealing a drop in total alpha-helix content to approximately 5%. Hence, although Cu2+ binding takes place exclusively within the unfolded/disordered N-terminal region, it can profoundly affect the structure of the folded/alpha-helical C-terminal region. This is supported by the finding that refolding in the presence of Cu2+ of a mutant in which the first six histidines associated with copper binding to the N-terminal region are replaced by alanine has a similar alpha-helix content to the metal-free protein. In contrast, when the protein is refolded in the presence of divalent manganese ions, ROA indicates the alpha-helix is reinforced, with UV CD revealing an increase in total alpha-helix content to approximately 30%. The very different influence of Cu2+ and Mn2+ ions on prion protein structure may originate in the different stability constants and geometries of their complexes.

摘要

利用振动拉曼光学活性(ROA)和紫外圆二色性(UV CD)研究了二价铜离子在中性pH条件下与全长重组鼠朊病毒蛋白PrP23 - 231的结合。Cu2 +离子对PrP结构的影响取决于它们是在蛋白质在水中重折叠后添加,还是在重折叠过程中存在。在第一种情况下,ROA显示水合α - 螺旋消失,UV CD显示总α - 螺旋含量从约25%下降到约18%。丢失的α - 螺旋可能是包含位于与瘙痒病PrP形成相关区域内的145 - 156位残基的螺旋。在第二种情况下,ROA显示蛋白质结构几乎完全无序/不规则,UV CD显示总α - 螺旋含量下降到约5%。因此,尽管Cu2 +结合仅发生在未折叠/无序的N端区域,但它可以深刻影响折叠/α - 螺旋C端区域的结构。这一发现得到了支持,即在与N端区域铜结合相关的前六个组氨酸被丙氨酸取代的突变体在Cu2 +存在下重折叠时,其α - 螺旋含量与无金属蛋白相似。相反,当蛋白质在二价锰离子存在下重折叠时,ROA表明α - 螺旋得到增强,UV CD显示总α - 螺旋含量增加到约30%。Cu2 +和Mn2 +离子对朊病毒蛋白结构的非常不同的影响可能源于它们复合物的不同稳定性常数和几何形状。

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