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Double-stranded DNA Stimulates the Fibrillation of α-Synuclein in vitro and is Associated with the Mature Fibrils: An Electron Microscopy Study

机译:双链DNA在体外刺激α-突触核蛋白的纤维化,与成熟的原纤维有关:电子显微镜研究

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摘要

Filamentous aggregates formed by α-synuclein are a prominent and presumably key etiological factor in Parkinson's and other neurodegenerative diseases characterized by motor disorders. Numerous studies have demonstrated that various environmental and intracellular factors affect the fibrillation properties of α-synuclein, e.g. by accelerating the process of assembly. Histones, the major component and constituent of chromatin, interact specifically with α-synuclein and enhance its fibrillation significantly. Here, we report that another component of chromatin, double-stranded DNA (dsDNA), either linear or supercoiled, also interacts with wild-type α-synuclein, leading to a significant stimulation of α-synuclein assembly into mature fibrils characterized by a reduced lag phase. In general, the morphology of the fibrils remains unchanged in the presence of linear dsDNA. Electron microscopy reveals that DNA forms various types of complexes upon association with the fibrils at their surface without distortion of the double-helical structure. The existence of these complexes was confirmed by the electrophoresis, which also demonstrated that a fraction of the associated DNA was resistant to digestion by restriction endonucleases. Fibrils assembled from the α-synuclein mutants A30P and A53T and the C-terminally truncated variants (encoding amino acid residues 1–108 or 1–124) also form complexes with linear dsDNA. Possible mechanisms and implications of dsDNA–α-synuclein interactions are discussed.
机译:由α-突触核蛋白形成的丝状聚集体是帕金森和其他由运动障碍为特征的神经变性疾病中的突出且可能的关键病因因素。许多研究表明,各种环境和细胞内因素会影响α-突触核蛋白的原纤化性质,例如,通过加速组装过程。组蛋白,染色质的主要成分和成分,特别用α-突触核苷与α-突触蛋白相互作用,显着提高其颤动。在这里,我们报道了染色质,双链DNA(DSDNA)的另一组分,即线性或超硅酸盐,也与野生型α-突触核蛋白相互作用,导致α-突触核蛋白组件的显着刺激成成熟的原纤维,其特征在于减少滞后阶段。通常,在线性DSDNA存在下,原纤维的形态保持不变。电子显微镜显示DNA在与其表面的原纤维结合时形成各种类型的复合物,而不会扭曲双螺旋结构。通过电泳证实了这些复合物的存在,这也证明了通过限制性内切核酸酶的抗性消化的抗体的一部分抵抗力。由α-透核突变体A30P和A53T和C末端截短的变体组装的原纤维(编码氨基酸残基1-108或1-124)也与线性DSDNA形成复合物。讨论了DSDNA-α-突触核蛋白相互作用的可能机制和影响。

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