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首页> 外文期刊>Open Journal of Biophysics >Fluorescence as a Tool to Study Lipid-Protein Interactions: The Case of α-Synuclein
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Fluorescence as a Tool to Study Lipid-Protein Interactions: The Case of α-Synuclein

机译:荧光作为研究脂蛋白相互作用的工具:以α-突触核蛋白为例

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During the past 20 years there has been a remarkable growth in the use of fluorescence in the biological sciences. Fluorescence is now a dominant methodology used extensively in biochemistry, biophysics, biotechnology, medical diagnostics, flow cytometry, DNA sequencing and genetic analysis to name a few. It is one of the most powerful methods to study protein folding, dynamics, assembly and interactions as well as membrane structure. α-Synuclein belongs to the class of intrinsically disordered proteins lacking of a well-folded structure under physiological conditions. The conversion of α-synuclein from a soluble monomer to an insoluble fibril may underlie the neurodegeneration associated with Parkinson’s disease (PD). Although the exact mechanism of α-synuclein toxicity is still unknown, it has been proposed that disturbs membrane structure, leading to increased membrane permeability and eventual cell death. This review highlights the significant role played by fluorescence techniques in unraveling the nature of interactions between α-synuclein and membranes and its implications in PD.
机译:在过去的20年中,生物科学中荧光的使用有了显着的增长。现在,荧光已成为一种主要方法,广泛用于生物化学,生物物理学,生物技术,医学诊断,流式细胞仪,DNA测序和遗传分析等。它是研究蛋白质折叠,动力学,组装和相互作用以及膜结构的最有效方法之一。 α-突触核蛋白属于在生理条件下缺乏良好折叠结构的内在无序蛋白的类别。 α-突触核蛋白从可溶性单体转变为不溶性原纤维可能是与帕金森氏病(PD)相关的神经变性的基础。尽管α-突触核蛋白毒性的确切机制仍是未知的,但已提出干扰膜结构,导致膜通透性增加和最终细胞死亡的提议。这篇综述强调了荧光技术在揭示α-突触核蛋白与膜之间相互作用的本质及其对PD的影响中所起的重要作用。

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