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计算朊病毒蛋白(PrP)八肽重复区过渡金属选择性的研究。

Computational studies of transition metal selectivity of octapeptide repeat region of prion protein (PrP).

机构信息

School of Chemical Sciences, Devi Ahilya University Indore, Indore 452001, India.

出版信息

J Phys Chem B. 2010 Jan 21;114(2):1127-35. doi: 10.1021/jp909945e.

Abstract

We have presented a detailed theoretical (density functional theory and ONIOM) study on the structure and M-PrP (prion protein) interaction on various prion models, M(PrP) systems (where PrP = HGG, HGGGW x 3H(2)O, and PrP(61-84), and M = Zn, Cu, Ni, Co, Fe, Mn). It was shown that the geometry of the complex [Mn(HGGGW)(H(2)O)] x 2H(2)O is quite different for M = Mn(III) and Mn(II), and partial unfolding occurs only for the M = Mn(III). In [Zn{PrP(61-84)}], Zn(II) forms a bond with carbonyl oxygen of the Pro(84) residue in the axial position. The coordination of transition metal ions to PrP(61-84) induces the significant geometrical changes in the PrP(61-68) and Prp(69-76) octapeptide repeat regions. The Trp(65) and Trp(73) residues come closer to each other. The glutamines Gln(67) and Gln(75) also come closer to one another and result in the formation of a hydrogen bond between the carbonyl carbon of Gln(67) and one of the NH(2) hydrogens of Gln(75). A specific aggregatory effect is found for Co(II) and Mn(II). The relative binding ability of the metal ions increases in the order Zn(II) < Mn(II) < Cu(II) < Fe(II) < Co(II) < Ni(II). The PrP is most distorted upon binding to Co(II) and least distorted upon binding to Zn(II).

摘要

我们对各种朊病毒模型、M(PrP)系统(其中 PrP = HGG、HGGGW x 3H(2)O 和 PrP(61-84),而 M = Zn、Cu、Ni、Co、Fe、Mn)的结构和 M-PrP(朊病毒蛋白)相互作用进行了详细的理论(密度泛函理论和 ONIOM)研究。结果表明,对于 M = Mn(III)和 Mn(II),复合物[Mn(HGGGW)(H(2)O)] x 2H(2)O 的几何形状有很大的不同,并且只有 M = Mn(III)会发生部分展开。在[Zn{PrP(61-84)}]中,Zn(II)与脯氨酸(Pro(84)残基的羰基氧形成键。过渡金属离子与 PrP(61-84)的配位导致 PrP(61-68)和 Prp(69-76)八肽重复区的显著几何变化。色氨酸(Trp(65)和 Trp(73)残基彼此靠近。谷氨酰胺(Gln(67)和 Gln(75)也彼此靠近,导致 Gln(67)的羰基碳和 Gln(75)的一个 NH(2)氢之间形成氢键。Co(II)和 Mn(II)存在特定的聚集效应。金属离子的相对结合能力按 Zn(II) < Mn(II) < Cu(II) < Fe(II) < Co(II) < Ni(II)的顺序增加。与 Co(II)结合时,PrP 的变形最大,与 Zn(II)结合时变形最小。

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