Chatani Eri, Inoue Rintaro, Imamura Hiroshi, Sugiyama Masaaki, Kato Minoru, Yamamoto Masahide, Nishida Koji, Kanaya Toshiji
Department of Chemistry, Graduate School of Science, Kobe University, Hyogo 657-8501, Japan.
Research Reactor Institute, Kyoto University, Osaka 590-0494, Japan.
Sci Rep. 2015 Oct 27;5:15485. doi: 10.1038/srep15485.
The nucleation event of amyloid fibrils is one of the most crucial processes that dictate the timing and rate of the pathology of diseases; however, information regarding how protein molecules associate to produce fibril nuclei is currently limited. In order to explore this issue in more detail, we performed time-resolved small angle X-ray scattering (SAXS) measurements on insulin fibrillation, in combination with additional multidirectional analyses of thioflavin T fluorescence, FTIR spectroscopy, light scattering, and light transmittance, during the fibrillation process of bovine insulin. SAXS monitoring revealed that insulin molecules associated into rod-like prefibrillar aggregates in the very early stage of the reaction. After the formation of these early aggregates, they appeared to further coalesce mutually to form larger clusters, and the SAXS profiles subsequently showed the further time evolution of conformational development towards mature amyloid fibrils. Distinct types of structural units in terms of shape in a nano-scale order, cross-β content, and thioflavin T fluorescence intensity were observed in a manner that was dependent on the fibrillation pathways. These results suggest the presence of diverse substructures that characterize various fibrillation pathways, and eventually, manifest polymorphisms in mature amyloid fibrils.
淀粉样纤维的成核事件是决定疾病病理发生时间和速率的最关键过程之一;然而,目前关于蛋白质分子如何结合产生纤维核的信息有限。为了更详细地探讨这个问题,我们在牛胰岛素的纤维化过程中,结合硫黄素T荧光、傅里叶变换红外光谱、光散射和透光率的额外多方向分析,对胰岛素纤维化进行了时间分辨小角X射线散射(SAXS)测量。SAXS监测显示,胰岛素分子在反应的非常早期阶段结合形成棒状前纤维聚集体。这些早期聚集体形成后,它们似乎相互进一步聚结形成更大的簇,随后SAXS图谱显示了构象向成熟淀粉样纤维进一步发展的时间演变。在纳米尺度的形状、交叉β含量和硫黄素T荧光强度方面观察到不同类型的结构单元,其方式取决于纤维化途径。这些结果表明存在多种亚结构,这些亚结构表征了各种纤维化途径,并最终在成熟淀粉样纤维中表现出多态性。