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High resolution spectroscopy reveals fibrillation inhibition pathways of insulin

机译:高分辨率光谱揭示了胰岛素的原纤化抑制途径

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摘要

Fibril formation implies the conversion of a protein’s native secondary structure and is associated with several neurodegenerative diseases. A better understanding of fibrillation inhibition and fibril dissection requires nanoscale molecular characterization of amyloid structures involved. Tip-enhanced Raman scattering (TERS) has already been used to chemically analyze amyloid fibrils on a sub-protein unit basis. Here, TERS in combination with atomic force microscopy (AFM), and conventional Raman spectroscopy characterizes insulin assemblies generated during inhibition and dissection experiments in the presence of benzonitrile, dimethylsulfoxide, quercetin, and β-carotene. The AFM topography indicates formation of filamentous or bead-like insulin self-assemblies. Information on the secondary structure of bulk samples and of single aggregates is obtained from standard Raman and TERS measurements. In particular the high spatial resolution of TERS reveals the surface conformations associated with the specific agents. The insulin aggregates formed under different inhibition and dissection conditions can show a similar morphology but differ in their β-sheet structure content. This suggests different aggregation pathways where the prevention of the β-sheet stacking of the peptide chains plays a major role. The presented approach is not limited to amyloid-related reasearch but can be readily applied to systems requiring extremely surface-sensitive characterization without the need of labels.
机译:原纤维形成意味着蛋白质天然二级结构的转变,并与几种神经退行性疾病有关。要更好地了解原纤维形成抑制和原纤维剥离,需要对淀粉样结构进行纳米级分子表征。尖端增强拉曼散射(TERS)已用于在亚蛋白单位基础上化学分析淀粉样蛋白原纤维。在这里,结合原子力显微镜(AFM)和常规拉曼光谱的TERS表征了在存在苄腈,二甲亚砜,槲皮素和β-胡萝卜素的抑制和解剖实验过程中产生的胰岛素组装体。 AFM形貌表明形成丝状或珠状胰岛素自组装体。有关散装样品和单个聚集体二级结构的信息可从标准拉曼和TERS测量中获得。特别是,TERS的高空间分辨率揭示了与特定试剂相关的表面构象。在不同抑制和解剖条件下形成的胰岛素聚集体可显示相似的形态,但其β-折叠结构含量不同。这表明了不同的聚集途径,其中防止肽链的β-折叠堆叠起主要作用。提出的方法不限于淀粉样蛋白相关的研究,而是可以容易地应用于需要极度表面敏感的表征而无需标签的系统。

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