Hydration and packing effects on prion folding and β-sheet conversion -: High pressure spectroscopy and pressure perturbation calorimetry studies

被引:97
作者
Cordeiro, Y
Kraineva, J
Ravindra, R
Lima, LMTR
Gomes, MPB
Foguel, D
Winter, R
Silva, JL
机构
[1] Univ Fed Rio de Janeiro, Inst Ciencias Biomed, Dept Bioquim Med, Ctr Nacl Ressonancia Magnet Nucl Macromol, BR-21941590 Rio De Janeiro, Brazil
[2] Univ Dortmund, Dept Chem, D-44227 Dortmund, Germany
[3] Univ Fed Rio de Janeiro, Fac Farm, Dept Medicamentos, BR-21941590 Rio De Janeiro, Brazil
关键词
D O I
10.1074/jbc.M404295200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The main hypothesis for prion diseases proposes that the cellular protein (PrPC) can be altered into a misfolded, beta-sheet-rich isoform (PrPSc), which undergoes aggregation and triggers the onset of transmissible spongiform encephalopathies. Here, we compare the stability against pressure and the thermomechanical properties of the alpha-helical and beta-sheet conformations of recombinant murine prion protein, designated as alpha-rPrP and beta-rPrP, respectively. High temperature induces aggregates and a large gain in intermolecular antiparallel beta-sheet (beta-rPrP), a conformation that shares structural similarity with PrPSc.alpha-rPrP is highly stable, and only pressures above 5 kilobars (1 kilobar = 100 MegaPascals) cause reversible denaturation, a process that leads to a random and turn-rich conformation with concomitant loss of alpha-helix, as measured by Fourier transform infrared spectroscopy. In contrast, aggregates of beta-rPrP are very sensitive to pressure, undergoing transition into a dissociated species that differs from the denatured form derived from alpha-rPrP. The higher susceptibility to pressure of beta-rPrP can be explained by its less hydrated structure. Pressure perturbation calorimetry supports the view that the accessible surface area of alpha-rPrP is much higher than that of alpha-rPrP, which explains the lower degree of hydration of alpha-rPrP. Our findings shed new light on the mechanism of prion conversion and show how water plays a prominent role. Our results allow us to propose a volume and free energy diagram of the different species involved in the conversion and aggregation. The existence of different folded conformations as well as different denatured states of PrP may explain the elusive character of its conversion into a pathogenic form.
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页码:32354 / 32359
页数:6
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