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Monitoring site-specific conformational changes in real-time reveals a misfolding mechanism of the prion protein

机译:实时监测特定于位点的构象变化揭示了ion病毒蛋白的错误折叠机制

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摘要

During pathological aggregation, proteins undergo remarkable conformational re-arrangements to anomalously assemble into a heterogeneous collection of misfolded multimers, ranging from soluble oligomers to insoluble amyloid fibrils. Inspired by fluorescence resonance energy transfer (FRET) measurements of protein folding, an experimental strategy to study site-specific misfolding kinetics during aggregation, by effectively suppressing contributions from inter-molecular FRET, is described. Specifically, the kinetics of conformational changes across different secondary and tertiary structural segments of the mouse prion protein (moPrP) were monitored independently, after the monomeric units transformed into large oligomers OL, which subsequently disaggregated reversibly into small oligomers OS at pH 4. The sequence segments spanning helices α2 and α3 underwent a compaction during the formation of OL and elongation into β-sheets during the formation of OS. The β1-α1-β2 and α2-α3 subdomains were separated, and the helix α1 was unfolded to varying extents in both OL and OS.
机译:在病理性聚集过程中,蛋白质会经历显着的构象重排,异常组装成错误折叠的多聚体的异质集合,范围从可溶性寡聚物到不溶性淀粉样蛋白原纤维。受蛋白质折叠的荧光共振能量转移(FRET)测量的启发,描述了一种通过有效抑制分子间FRET的作用研究聚集过程中位点特异性错折叠动力学的实验策略。具体而言,在单体单元转化为大寡聚物OL之后,该蛋白在不同的二级和三级结构节段(moPrP)上构象变化的动力学被独立监测,随后在pH 4下可逆地分解为小寡聚物OS。序列跨越螺旋α2和α3的链段在OL形成过程中经历了压实,在OS形成过程中经历了延伸成β-折叠。分离了β1-α1-β2和α2-α3子域,并且在OL和OS中螺旋α1均以不同程度展开。

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  • 期刊名称 other
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  • 年(卷),期 -1(8),-1
  • 年度 -1
  • 页码 e44698
  • 总页数 27
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