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首页> 外文期刊>The Biochemical Journal >Scutellarin inhibits the uninduced and metal-induced aggregation of alpha-Synuclein and disaggregates preformed fibrils: implications for Parkinson's disease
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Scutellarin inhibits the uninduced and metal-induced aggregation of alpha-Synuclein and disaggregates preformed fibrils: implications for Parkinson's disease

机译:Scutellarin抑制了α-突触核蛋白的未诱导和金属诱导的聚集,并分解了预成型的原纤维:对帕金森病的影响

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The aggregation of the protein alpha synuclein (alpha-Syn), a known contributor in Parkinson's disease (PD) pathogenesis is triggered by transition metal ions through occupational exposure and disrupted metal ion homeostasis. Naturally occurring small molecules such as polyphenols have emerged as promising inhibitors of alpha-Syn fibrillation and toxicity and could be potential therapeutic agents against PD. Here, using an array of biophysical tools combined with cellular assays, we demonstrate that the novel polyphenolic compound scutellarin efficiently inhibits the uninduced and metal-induced fibrillation of alpha-Syn by acting at the nucleation stage and stabilizes a partially folded intermediate of alpha-Syn to form SDS-resistant, higher-order oligomers (similar to 680 kDa) and also disaggregates preformed fibrils of alpha-Syn into similar type of higher-order oligomers. ANS binding assay, fluorescence lifetime measurements and cell-toxicity experiments reveal scutellarin-generated oligomers as compact, low hydrophobicity structures with modulated surface properties and significantly reduced cytotoxicity than the fibrillation intermediates of alpha-Syn control. Fluorescence spectroscopy and isothermal titration calorimetry establish the binding between scutellarin and alpha-Syn to be non-covalent in nature and of moderate affinity (K-a similar to 10(5) M-1). Molecular docking approaches suggest binding of scutellarin to the residues present in the NAC region and C-terminus of monomeric alpha-Syn and the C-terminal residues of fibrillar alpha-Syn, demonstrating inhibition of fibrillation upon binding to these residues and possible stabilization of the autoinhibitory conformation of alpha-Syn. These findings reveal interesting insights into the mechanism of scutellarin action and establish it as an efficient modulator of uninduced as well as metal-induced alpha-Syn fibrillation and toxicity.
机译:所述蛋白α突触核蛋白的聚集(α-SYN),在帕金森氏病的已知的贡献者(PD)的发病机制是通过职业暴露和破坏金属离子稳态的过渡金属离子触发。天然存在的小分子,例如多酚类已经成为有前途的α-Syn的颤动和毒性的抑制剂,并可以是对PD的潜在治疗剂。在这里,用的生物物理工具,细胞试验组合的阵列,我们表明,新型多酚化合物野黄芩苷有效地在成核阶段作用抑制阿尔法 - 顺式的未诱导和金属诱导原纤化并稳定部分折叠中间体的α-Syn的的以形成耐SDS,高阶低聚物(类似于680 kDa)的和也解聚预形成的α-Syn的原纤维成类似类型高阶低聚物。 ANS结合测定,荧光寿命测量和细胞毒性实验显示野黄芩苷生成的低聚物作为用调制表面性能紧凑,低疏水性的结构和降低显著细胞毒性比的α-Syn的控制的原纤化的中间体。荧光光谱法和等温滴定量热法建立灯盏花乙和α-Syn的是非共价性质,中等亲和力(K-一个类似于10(5)M-1)之间的结合。分子对接方法建议野黄芩苷的结合的残基存在于NAC区域和单体的α-Syn的的C-末端和纤维状的α-Syn的的C-末端残基,表明在结合这些残基和可能的稳定化原纤化的抑制的α-Syn的的自抑制构象。这些发现揭示了有趣的见解野黄芩苷的作用机理,并建立它作为一种有效的调制器的未诱导的以及金属诱导的α-Syn的原纤化和毒性。

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