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首页> 外文期刊>Biophysical Journal >Structure and dynamics of oligomeric intermediates in beta2-microglobulin self-assembly.
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Structure and dynamics of oligomeric intermediates in beta2-microglobulin self-assembly.

机译:β2-微球蛋白自组装中低聚中间体的结构和动力学。

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摘要

beta(2)-Microglobulin is a 99-residue protein with a propensity to form amyloid-like fibrils in vitro which exhibit distinct morphologies dependent on the solution conditions employed. Here we have used ion mobility spectrometry-mass spectrometry to characterize the oligomeric species detected during the formation of worm-like fibrils of beta(2)-microglobulin at pH 3.6. Immediately upon sample dissolution, beta(2)-microglobulin monomer and oligomers-the latter ranging in size from dimer to hexamer-are present as a pool of rapidly interconverting species. Increasing the ionic strength of the solution initiates fibril formation without a lag-phase whereupon these oligomers become more stable and higher-order species (7-mer to >14-mer) are observed. The oligomers detected have collision cross-sectional areas consistent with a linearly stacked assembly comprising subunits of native-like volume. The results provide insights into the identity and properties of the transient, oligomeric intermediates formed during assembly of worm-like fibrils and identify species that differ significantly from the oligomers previously characterized during the nucleated assembly of long, straight fibrils. The data presented demonstrate the interrelationship between different fibril-forming pathways and identify their points of divergence.
机译:beta(2)-Microglobulin是99个残基的蛋白质,具有在体外形成淀粉样蛋白原纤维的倾向,该淀粉样蛋白的形态取决于所采用的溶液条件。在这里,我们已经使用离子迁移谱-质谱来表征在pH 3.6的β(2)-微球蛋白蠕虫状原纤维形成过程中检测到的低聚物种。样品溶解后,立即存在β(2)-微球蛋白单体和低聚物(后者的大小范围从二聚体到六聚体),它们是快速相互转换的物种的集合。溶液离子强度的增加可引发原纤维的形成,而没有滞后相,因此这些低聚物变得更稳定,并观察到更高阶的物种(7-mer至> 14-mer)。检测到的低聚物具有与包括天然样体积的亚基的线性堆叠组件一致的碰撞横截面积。结果为深入了解蠕虫状原纤维组装过程中形成的瞬时,低聚中间体的特性和性质,并鉴定出与以前在长而直的原纤维成核组装过程中表征的低聚物明显不同的物种。所提供的数据证明了不同的原纤维形成途径之间的相互关系,并确定了它们的分歧点。

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