Gonzalez-Garcia Mario, Fusco Giuliana, De Simone Alfonso
Department of Life Sciences, Imperial College London, London, United Kingdom.
Centre for Misfolding Diseases, Department of Chemistry, University of Cambridge, Cambridge, United Kingdom.
Front Chem. 2023 May 2;11:1167766. doi: 10.3389/fchem.2023.1167766. eCollection 2023.
The aberrant aggregation of α-synuclein (αS), a disordered protein primarily expressed in neuronal cells, is strongly associated with the underlying mechanisms of Parkinson's disease. It is now established that αS has a weak affinity for metal ions and that these interactions alter its conformational properties by generally promoting self-assembly into amyloids. Here, we characterised the nature of the conformational changes associated with metal binding by αS using nuclear magnetic resonance (NMR) to measure the exchange of the backbone amide protons at a residue specific resolution. We complemented these experiments with N relaxation and chemical shift perturbations to obtain a comprehensive map of the interaction between αS and divalent (Ca, Cu, Mn, and Zn) and monovalent (Cu) metal ions. The data identified specific effects that the individual cations exert on the conformational properties of αS. In particular, binding to calcium and zinc generated a reduction of the protection factors in the C-terminal region of the protein, whereas both Cu(II) and Cu(I) did not alter the amide proton exchange along the αS sequence. Changes in the R/R ratios from N relaxation experiments were, however, detected as a result of the interaction between αS and Cu or Zn, indicating that binding to these metals induces conformational perturbations in distinctive regions of the protein. Collectively our data suggest that multiple mechanisms of enhanced αS aggregation are associated with the binding of the analysed metals.
α-突触核蛋白(αS)是一种主要在神经细胞中表达的无序蛋白质,其异常聚集与帕金森病的潜在机制密切相关。现已确定αS对金属离子具有弱亲和力,并且这些相互作用通常通过促进自组装成淀粉样蛋白来改变其构象特性。在这里,我们使用核磁共振(NMR)以残基特异性分辨率测量主链酰胺质子的交换,来表征与αS金属结合相关的构象变化的性质。我们用N弛豫和化学位移扰动对这些实验进行补充,以获得αS与二价(钙、铜、锰和锌)和一价(铜)金属离子之间相互作用的全面图谱。数据确定了单个阳离子对αS构象特性产生的特定影响。特别是,与钙和锌结合会导致蛋白质C末端区域的保护因子降低,而Cu(II)和Cu(I)均未改变αS序列上的酰胺质子交换。然而,由于αS与铜或锌之间的相互作用,检测到N弛豫实验中R/R比值的变化,表明与这些金属的结合会在蛋白质的不同区域诱导构象扰动。我们的数据共同表明,αS聚集增强的多种机制与所分析金属的结合有关。