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全长人类朊病毒蛋白中铜离子(Cu2+)结合区域的结构

The configuration of the Cu2+ binding region in full-length human prion protein.

作者信息

del Pino Pablo, Weiss Andreas, Bertsch Uwe, Renner Christian, Mentler Matthias, Grantner Klaus, Fiorino Ferdinando, Meyer-Klaucke Wolfram, Moroder Luis, Kretzschmar Hans A, Parak Fritz G

机构信息

Physics Department E17, Technical University Munich, 85747 Garching, Germany.

出版信息

Eur Biophys J. 2007 Mar;36(3):239-52. doi: 10.1007/s00249-006-0124-0. Epub 2007 Jan 16.

Abstract

The cellular prion protein (PrP(C)) is a Cu(2+) binding protein connected to the outer cell membrane. The molecular features of the Cu(2+) binding sites have been investigated and characterized by spectroscopic experiments on PrP(C)-derived peptides and the recombinant human full-length PrP(C )(hPrP-[23-231]). The hPrP-[23-231] was loaded with (63)Cu under slightly acidic (pH 6.0) or neutral conditions. The PrP(C)/Cu(2+)-complexes were investigated by extended X-ray absorption fine structure (EXAFS), electron paramagnetic resonance (EPR), and electron nuclear double resonance (ENDOR). For comparison, peptides from the copper-binding octarepeat domain were investigated in different environments. Molecular mechanics computations were used to select sterically possible peptide/Cu(2+) structures. The simulated EPR, ENDOR, and EXAFS spectra of these structures were compared with our experimental data. For a stoichiometry of two octarepeats per copper the resulting model has a square planar four nitrogen Cu(2+) coordination. Two nitrogens belong to imidazole rings of histidine residues. Further ligands are two deprotonated backbone amide nitrogens of the adjacent glycine residues and an axial oxygen of a water molecule. Our complex model differs significantly from those previously obtained for shorter peptides. Sequence context, buffer conditions and stoichiometry of copper show marked influence on the configuration of copper binding to PrP(C).

摘要

细胞朊蛋白(PrP(C))是一种与细胞外膜相连的铜离子(Cu(2+))结合蛋白。通过对PrP(C)衍生肽段和重组人全长PrP(C)(hPrP-[23-231])进行光谱实验,研究并表征了Cu(2+)结合位点的分子特征。hPrP-[23-231]在微酸性(pH 6.0)或中性条件下加载了铜-63((63)Cu)。通过扩展X射线吸收精细结构(EXAFS)、电子顺磁共振(EPR)和电子核双共振(ENDOR)对PrP(C)/Cu(2+)复合物进行了研究。为作比较,还研究了来自铜结合八肽重复结构域的肽段在不同环境中的情况。利用分子力学计算来选择空间上可能的肽段/Cu(2+)结构。将这些结构的模拟EPR、ENDOR和EXAFS光谱与我们的实验数据进行了比较。对于每个铜离子有两个八肽重复结构的化学计量比,所得模型具有平面正方形的四个氮原子与Cu(2+)配位。两个氮原子属于组氨酸残基的咪唑环。另外的配体是相邻甘氨酸残基的两个去质子化主链酰胺氮原子和一个水分子的轴向氧原子。我们的复合物模型与之前针对较短肽段获得的模型有显著不同。铜离子的序列背景、缓冲条件和化学计量比对其与PrP(C)结合的构型有显著影响。

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