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家族性突变与重组人朊病毒蛋白的热力学稳定性

Familial mutations and the thermodynamic stability of the recombinant human prion protein.

作者信息

Swietnicki W, Petersen R B, Gambetti P, Surewicz W K

机构信息

Department of Pathology, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Biol Chem. 1998 Nov 20;273(47):31048-52. doi: 10.1074/jbc.273.47.31048.

DOI:10.1074/jbc.273.47.31048
PMID:9813003
Abstract

Hereditary forms of human prion disease are linked to specific mutations in the PRNP gene. It has been postulated that these mutations may facilitate the pathogenic process by reducing the stability of the prion protein (PrP). To test this hypothesis, we characterized the recombinant variants of human PrP(90-231) containing point mutations corresponding to Gerstmann-Straussler-Scheinker disease (P102L), Creutzfeld-Jakob disease (E200K), and fatal familial insomnia (M129/D178N). The first two of these mutants could be recovered form from the periplasmic space of Escherichia coli in a soluble form, whereas the D178N variant aggregated into inclusion bodies. The secondary structure of the two soluble variants was essentially identical to that of the wild-type protein. The thermodynamic stability of these mutants was assessed by unfolding in guanidine hydrochloride and thermal denaturation. The stability properties of the P102L variant were indistinguishable from those of wild-type PrP, whereas the E200K mutation resulted in a very small destabilization of the protein. These data, together with the predictive analysis of other familial mutations, indicate that some hereditary forms of prion disease cannot be rationalized using the concept of mutation-induced thermodynamic destabilization of the cellular prion protein.

摘要

人类朊病毒病的遗传形式与PRNP基因的特定突变有关。据推测,这些突变可能通过降低朊病毒蛋白(PrP)的稳定性来促进致病过程。为了验证这一假设,我们对人PrP(90 - 231)的重组变体进行了表征,这些变体包含与格斯特曼-施特劳斯勒-谢克尔病(P102L)、克雅氏病(E200K)和致死性家族性失眠症(M129/D178N)相对应的点突变。其中前两个突变体可以以可溶形式从大肠杆菌的周质空间中回收,而D178N变体则聚集成包涵体。这两个可溶变体的二级结构与野生型蛋白基本相同。通过在盐酸胍中展开和热变性来评估这些突变体的热稳定性。P102L变体的稳定性特性与野生型PrP无法区分,而E200K突变导致该蛋白的稳定性略有降低。这些数据,连同对其他家族性突变的预测分析,表明一些遗传性朊病毒病形式不能用细胞朊病毒蛋白的突变诱导热稳定性降低这一概念来解释。

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