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朊蛋白的未折叠状态和中间状态在一种抗朊病毒伴侣蛋白的作用机制中起着关键作用。

Unfolded and intermediate states of PrP play a key role in the mechanism of action of an antiprion chaperone.

作者信息

Petrosyan Rafayel, Patra Shubhadeep, Rezajooei Negar, Garen Craig R, Woodside Michael T

机构信息

Department of Physics, University of Alberta, Edmonton, AB T6G 2E1 Canada.

Department of Physics, University of Alberta, Edmonton, AB T6G 2E1 Canada

出版信息

Proc Natl Acad Sci U S A. 2021 Mar 2;118(9). doi: 10.1073/pnas.2010213118.

Abstract

Prion and prion-like diseases involve the propagation of misfolded protein conformers. Small-molecule pharmacological chaperones can inhibit propagated misfolding, but how they interact with disease-related proteins to prevent misfolding is often unclear. We investigated how pentosan polysulfate (PPS), a polyanion with antiprion activity in vitro and in vivo, interacts with mammalian prion protein (PrP) to alter its folding. Calorimetry showed that PPS binds two sites on natively folded PrP, but one PPS molecule can bind multiple PrP molecules. Force spectroscopy measurements of single PrP molecules showed PPS stabilizes not only the native fold of PrP but also many different partially folded intermediates that are not observed in the absence of PPS. PPS also bound tightly to unfolded segments of PrP, delaying refolding. These observations imply that PPS can act through multiple possible modes, inhibiting misfolding not only by stabilizing the native fold or sequestering natively folded PrP into aggregates, as proposed previously, but also by binding to partially or fully unfolded states that play key roles in mediating misfolding. These results underline the likely importance of unfolded states as critical intermediates on the prion conversion pathway.

摘要

朊病毒及朊病毒样疾病涉及错误折叠的蛋白质构象异构体的传播。小分子药理伴侣可以抑制传播性错误折叠,但它们如何与疾病相关蛋白相互作用以防止错误折叠通常并不清楚。我们研究了戊聚糖多硫酸盐(PPS),一种在体外和体内均具有抗朊病毒活性的聚阴离子,如何与哺乳动物朊病毒蛋白(PrP)相互作用以改变其折叠。量热法表明,PPS结合天然折叠的PrP上的两个位点,但一个PPS分子可以结合多个PrP分子。对单个PrP分子的力谱测量表明,PPS不仅稳定PrP的天然折叠,还稳定许多在没有PPS时未观察到的不同的部分折叠中间体。PPS还紧密结合PrP的未折叠片段,延迟再折叠。这些观察结果表明,PPS可以通过多种可能的模式起作用,不仅如先前提出的那样通过稳定天然折叠或将天然折叠的PrP隔离成聚集体来抑制错误折叠,还通过结合在介导错误折叠中起关键作用的部分或完全未折叠状态来抑制错误折叠。这些结果强调了未折叠状态作为朊病毒转化途径中关键中间体的可能重要性。

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