Preventing misfolding of the prion protein by trimethylamine N-oxide

被引:66
作者
Bennion, BJ
DeMarco, ML
Daggett, V [1 ]
机构
[1] Univ Washington, Dept Med Chem, Seattle, WA 98195 USA
[2] Univ Washington, Biomol Struct & Design Program, Seattle, WA 98195 USA
关键词
D O I
10.1021/bi0486379
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
Transmissible spongiform encephalopathies are a class of fatal neurodegenerative diseases linked to the prion protein. The prion protein normally exists in a soluble, globular state (PrPC) that appears to participate in copper metabolism in the central nervous system and/or signal transduction. Infection or disease occurs when an alternatively folded form of the prion protein (PrPSc) converts soluble and predominantly alpha-helical PrPC into aggregates rich in beta-structure. The structurally disordered N-terminus adopts beta-structure upon conversion to PrPSc at low pH. Chemical chaperones, such as trimethylamine N-oxide (TMAO), can prevent formation of PrPSc in scrapie-infected mouse neuroblastoma cells [Tatzelt, J., et al. (1996) EMBO J. 15, 6363-6373]. To explore the mechanism of TMAO protection of PrPC at the atomic level, molecular dynamics simulations were performed under conditions normally leading to conversion (low pH) with and without 1 M TMAO. In PrPC simulations at low pH, the helix content drops and the N-terminus is brought into the small native beta-sheet, yielding a PrPSc-like state. Addition of 1 M TMAO leads to a decreased radius of gyration, a greater number of protein-protein hydrogen bonds, and a greater number of tertiary contacts due to the N-terminus forming an Omega-Ioop and packing against the structured core of the protein, not due to an increase in the level of extended structure as with the PrPC to PrPSc simulation. In simulations beginning with the "PrPSc-like" structure (derived from PrPC simulated at low pH in pure water) in 1 M TMAO, similar structural reorganization at the N-terminus occurred, disrupting the extended sheet. The mechanism of protection by TMAO appears to be exclusionary in nature, consistent with previous theoretical and experimental studies. The TMAO-induced N-terminal conformational change prevents residues that are important in the conversion of PrPC to PrPSc from assuming extended sheet structure at low pH.
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页码:12955 / 12963
页数:9
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