首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Spectroscopic and electronic structure studies of copper(II) binding to His111 in the human prion protein fragment 106-115: Evaluating the role of protons and methionine residues
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Spectroscopic and electronic structure studies of copper(II) binding to His111 in the human prion protein fragment 106-115: Evaluating the role of protons and methionine residues

机译:铜(II)与人类病毒蛋白片段106-115中His111结合的光谱和电子结构研究:评估质子和蛋氨酸残基的作用

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摘要

The prion protein (PrP~C) is implicated in the spongiform encephalopathies in mammals, and it is known to bind Cu(II) at the N-terminal region. The region around His111 has been proposed to be key for the conversion of normal PrP~C to its infectious isoform PrP~(Sc). The principal aim of this study is to understand the role of protons and methionine residues 109 and 112 in the coordination of Cu(II) to the peptide fragment 106-115 of human PrP, using different spectroscopic techniques (UV-vis absorption, circular dichroism, and electron paramagnetic resonance) in combination with detailed electronic structure calculations. Our study has identified a proton equilibrium with a pK_a of 7.5 associated with the Cu(II)-PrP(106-115) complex, which is ascribed to the deprotonation of the Met109 amide group, and it converts the site from a 3NO to a 4N equatorial coordination mode. These findings have important implications as they imply that the coordination environment of this Cu binding site at physiological pH is a mixture of two species. This study also establishes that Met109 and Met112 do not participate as equatorial ligands for Cu, and that Met112 is not an essential ligand, while Met109 plays a more important role as a weak axial ligand, particularly for the 3NO coordination mode. A role for Met109 as a highly conserved residue that is important to regulate the protonation state and redox activity of this Cu binding site, which in turn would be important for the aggregation and amyloidogenic properties of the protein, is proposed.
机译:ion病毒蛋白(PrP〜C)参与哺乳动物的海绵状脑病,并且已知其在N端区域结合Cu(II)。已经提出了His111周围的区域是正常PrP〜C转化为其传染性同工型PrP〜(Sc)的关键。这项研究的主要目的是了解质子和蛋氨酸残基109和112在Cu(II)与人PrP肽片段106-115的配位中的作用,使用不同的光谱技术(紫外可见吸收,圆二色性) ,以及电子顺磁共振)与详细的电子结构计算结合起来。我们的研究确定了与Cu(II)-PrP(106-115)配合物相关的pK_a为7.5的质子平衡,这归因于Met109酰胺基团的去质子化,并将位点从3NO转化为a 4N赤道协调模式。这些发现具有重要意义,因为它们暗示该铜结合位点在生理pH下的配位环境是两种物质的混合物。这项研究还确定,Met109和Met112不作为铜的赤道配体参与,并且Met112不是必需的配体,而Met109作为弱的轴向配体(尤其是3NO配位模式)起着更重要的作用。提出了Met109作为高度保守的残基的作用,该残基对于调节该Cu结合位点的质子化状态和氧化还原活性很重要,而继而对于蛋白质的聚集和淀粉样蛋白形成特性将很重要。

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