首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Bioinorganic chemistry of synucleinopathies: Deciphering the binding features of Met motifs and His-50 in AS-Cu(I) interactions
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Bioinorganic chemistry of synucleinopathies: Deciphering the binding features of Met motifs and His-50 in AS-Cu(I) interactions

机译:突触核蛋白病的生物无机化学:破译Met主题和His-50在AS-Cu(I)相互作用中的结合特征

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The aggregation of alpha-synuclein (AS) is a critical step in the etiology of Parkinson's disease (PD) and other neurodegenerative synucleinopathies. This process is selectively enhanced by copper in vitro and the interaction is proposed to play a potential role in vivo. Presently, the identity of the Cu(I) binding sites in AS and their relative affinities are under debate. In this work we have addressed unresolved details related to the structural binding specificity and affinity of Cu(I) to full-length AS. We demonstrated conclusively that: (i) the binding preferences of Cu(I) for the Met-binding sites at the N- (K-d = 20 mu M) and C-terminus (K-d = 270 mu M) of AS are widely different: (ii) the imidazole ring of His-50 acts as an effective anchoring residue (K-d = 50 mu M) for Cu(I) binding to AS; and (iii) no major structural rearrangements occur in the protein upon Cu(I) binding. Overall, our work shows that Cu(I) binding to the N- and C-terminal regions of AS are two independent events, with substantial differences in their affinities, and suggest that protein oxidative damage derived from a misbalance in cellular copper homeostasis would target preferentially the N-terminal region of AS. This knowledge is key to understanding the structural-aggregation basis of the copper catalyzed oxidation of AS. (C) 2014 Elsevier Inc. All rights reserved.
机译:α-突触核蛋白(AS)的聚集是帕金森氏病(PD)和其他神经退行性突触核蛋白病的病因学中的关键步骤。通过铜体外选择性地增强了该过程,并且提出了相互作用在体内起潜在作用。目前,在AS中的Cu(I)结合位点的身份及其相对亲和力尚在争论中。在这项工作中,我们已经解决了与结构结合特异性和Cu(I)对全长AS的亲和力有关的未解决细节。我们最终证明:(i)Cu(I)对AS的N-(Kd = 20μM)和C端(Kd = 270μM)的Met结合位点的结合偏好有很大不同: (ii)His-50的咪唑环可作为Cu(I)与AS结合的有效锚定残基(Kd = 50μM); (iii)结合Cu(I)后,蛋白质中没有发生重大的结构重排。总体而言,我们的工作表明,与AS的N和C末端区域结合的Cu(I)是两个独立的事件,其亲和力存在实质性差异,并表明由细胞内铜稳态失衡引起的蛋白质氧化损伤将成为目标优选AS的N-末端区域。该知识对于理解AS的铜催化氧化的结构聚集基础至关重要。 (C)2014 Elsevier Inc.保留所有权利。

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