Unfolding Mechanism and Fibril Formation Propensity of Human Prion Protein in the Presence of Molecular Crowding Agents

被引:0
|
作者
Madheswaran, Manoj [1 ]
Ventserova, Nataliia [1 ]
D'Abrosca, Gianluca [2 ]
Salzano, Giulia [3 ]
Celauro, Luigi [3 ]
Cazzaniga, Federico Angelo [4 ]
Isernia, Carla [1 ]
Malgieri, Gaetano [1 ]
Moda, Fabio [5 ]
Russo, Luigi [1 ]
Legname, Giuseppe [3 ]
Fattorusso, Roberto [1 ]
机构
[1] Univ Campania Luigi Vanvitelli, Dept Environm Biol & Pharmaceut Sci & Technol DIST, I-81100 Caserta, Italy
[2] Univ Foggia, Dept Clin & Expt Med, I-71122 Foggia, Italy
[3] Scuola Int Super Avanzati, Dept Neurosci, I-34136 Trieste, Italy
[4] Fdn IRCCS Ist Neurol Carlo Besta, Div Neurol 5 Neuropathol, I-20133 Milan, Italy
[5] Fdn IRCCS Ist Neurol Carlo Besta, SSD Lab Med, I-20133 Milan, Italy
关键词
prion protein; thermal unfolding; molecular crowding; Ficoll; amyloid fibrils; HUMAN NEURONS; MOUSE PRION; SCRAPIE; FRAGMENT; VARIANT; SYSTEM;
D O I
10.3390/ijms25189916
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 pathological process of prion diseases implicates that the normal physiological cellular prion protein (PrPC) converts into misfolded abnormal scrapie prion (PrPSc) through post-translational modifications that increase beta-sheet conformation. We recently demonstrated that HuPrP(90-231) thermal unfolding is partially irreversible and characterized by an intermediate state (beta-PrPI), which has been revealed to be involved in the initial stages of PrPC fibrillation, with a seeding activity comparable to that of human infectious prions. In this study, we report the thermal unfolding characterization, in cell-mimicking conditions, of the truncated (HuPrP(90-231)) and full-length (HuPrP(23-231)) human prion protein by means of CD and NMR spectroscopy, revealing that HuPrP(90-231) thermal unfolding is characterized by two successive transitions, as in buffer solution. The amyloidogenic propensity of HuPrP(90-231) under crowded conditions has also been investigated. Our findings show that although the prion intermediate, structurally very similar to beta-PrPI, forms at a lower temperature compared to when it is dissolved in buffer solution, in cell-mimicking conditions, the formation of prion fibrils requires a longer incubation time, outlining how molecular crowding influences both the equilibrium states of PrP and its kinetic pathways of folding and aggregation.
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页数:15
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