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Structural and dynamic characterization of copper(11) binding of the human prion protein outside the octarepeat region

机译:八边形区域外人病毒蛋白铜(11)结合的结构和动态表征

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摘要

Human prion protein (hPrP) fragments encompassing the 91-120 region, namely hPrP92-100 (SP1), hPrP106-113 (SP2), hPrP91-120 (M), and hPrP91-114 (LP2), were considered for delineation of the Cu-II-binding site(s). NMR and EPR spectroscopy results obtained from LP1 or LP2 were compared with those obtained from SP1 and SP2. The coexistence of two binding sites, one centered at His96 and the other at His111, was evidenced and ratified by ESI mass spectrometry at low and high metal:peptide ratios. While room-temperature NMR spectroscopy data were consistent with the binding site centered on His111 being approximately fourfold stronger than that centered on His96, low-temperature EPR spectroscopy results yielded evidence for the opposite trend. This disagreement, which has also occurred in the literature, was clarified by temperature-dependent molecular dynamics runs that demonstrated Met112 approaching the metal at room temperature, a process that is expected to stabilize the His111-centered binding site through hydrophobic shielding of the metal coordination sphere.
机译:涵盖91-120区域的人类pr病毒蛋白(hPrP)片段被认为是hPrP92-100(SP1),hPrP106-113(SP2),hPrP91-120(M)和hPrP91-114(LP2)的轮廓。 Cu-II结合位点。将从LP1或LP2获得的NMR和EPR光谱结果与从SP1和SP2获得的结果进行比较。通过ESI质谱在低和高金属:肽比例下证明并批准了两个结合位点的共存,一个集中在His96上,另一个集中在His111上。室温NMR光谱数据与以His111为中心的结合位点比以His96为中心的结合位点强约四倍,而低温EPR光谱结果却为相反的趋势提供了证据。这种分歧在文献中也已经出现,通过与温度有关的分子动力学实验得以阐明,该实验证明了Met112在室温下接近金属,该过程有望通过疏水性屏蔽金属配位来稳定His111中心的结合位点。领域。

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