Structural properties of prion protein protofibrils and fibrils: An experimental assessment of atomic models

被引:59
作者
DeMarco, Mari L.
Silveira, Jay
Caughey, Byron
Daggett, Valerie [1 ]
机构
[1] Univ Washington, Dept Med Chem, Biomol Struct & Design Program, Seattle, WA 98195 USA
[2] NIAID, Rocky Mt Lab, Lab Persistent Viral Dis, NIH, Hamilton, MT 59840 USA
关键词
D O I
10.1021/bi0612723
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
Decades after the prion protein was implicated in transmissible spongiform encephalopathies, the structure of its toxic isoform and its mechanism of toxicity remain unknown. By gathering available experimental data, albeit low resolution, a few pieces of the prion puzzle can be put in place. Currently, there are two fundamentally different models of a prion protofibril. One has its building blocks derived from a molecular dynamics simulation of the prion protein under amyloidogenic conditions, termed the spiral model. The other model was constructed by threading a portion of the prion sequence through a beta-helical structure from the Protein Data Bank. Here we compare and contrast these models with respect to all of the available experimental information, including electron micrographs, symmetries, secondary structure, oligomerization interfaces, enzymatic digestion, epitope exposure, and disaggregation profiles. Much of this information was not available when the two models were introduced. Overall, we find that the spiral model is consistent with all of the experimental results. In contrast, it is difficult to reconcile several of the experimental observables with the beta-helix model. While the experimental constraints are of low resolution, in bringing together the previously disconnected experiments, we have developed a clearer picture of prion aggregates. Both the improved characterization of prion aggregates and the existing atomic models can be used to devise further experiments to better elucidate the misfolding pathway and the structure of prion protofibrils.
引用
收藏
页码:15573 / 15582
页数:10
相关论文
共 67 条
[1]   Simulations of biomolecules: characterization of the early steps in the pH-induced conformational conversion of the hamster, bovine and human forms of the prion protein [J].
Alonso, DOV ;
An, C ;
Daggett, V .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2002, 360 (1795) :1165-1178
[2]   Mapping the early steps in the pH-induced conformational conversion of the prion protein [J].
Alonso, DOV ;
DeArmond, SJ ;
Cohen, FE ;
Daggett, V .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (06) :2985-2989
[3]   Synchrotron X-ray studies suggest that the core of the transthyretin amyloid fibril is a continuous beta-sheet helix [J].
Blake, C ;
Serpell, L .
STRUCTURE, 1996, 4 (08) :989-998
[4]   SCRAPIE AND CELLULAR PRION PROTEINS DIFFER IN THEIR KINETICS OF SYNTHESIS AND TOPOLOGY IN CULTURED-CELLS [J].
BORCHELT, DR ;
SCOTT, M ;
TARABOULOS, A ;
STAHL, N ;
PRUSINER, SB .
JOURNAL OF CELL BIOLOGY, 1990, 110 (03) :743-752
[5]  
BORCHELT DR, 1992, J BIOL CHEM, V267, P16188
[6]   Inherent toxicity of aggregates implies a common mechanism for protein misfolding diseases [J].
Bucciantini, M ;
Giannoni, E ;
Chiti, F ;
Baroni, F ;
Formigli, L ;
Zurdo, JS ;
Taddei, N ;
Ramponi, G ;
Dobson, CM ;
Stefani, M .
NATURE, 2002, 416 (6880) :507-511
[7]   Molecular features of the copper binding sites in the octarepeat domain of the prion protein [J].
Burns, CS ;
Aronoff-Spencer, E ;
Dunham, CM ;
Lario, P ;
Avdievich, NI ;
Antholine, WE ;
Olmstead, MM ;
Vrielink, A ;
Gerfen, GJ ;
Peisach, J ;
Scott, WG ;
Millhauser, GL .
BIOCHEMISTRY, 2002, 41 (12) :3991-4001
[8]  
CAUGHEY B, 1991, J BIOL CHEM, V266, P18217
[9]   N-TERMINAL TRUNCATION OF THE SCRAPIE-ASSOCIATED FORM OF PRP BY LYSOSOMAL PROTEASE(S) - IMPLICATIONS REGARDING THE SITE OF CONVERSION OF PRP TO THE PROTEASE-RESISTANT STATE [J].
CAUGHEY, B ;
RAYMOND, GJ ;
ERNST, D ;
RACE, RE .
JOURNAL OF VIROLOGY, 1991, 65 (12) :6597-6603
[10]   Protofibrils, pores, fibrils, and neurodegeneration: Separating the responsible protein aggregates from the innocent bystanders [J].
Caughey, B ;
Lansbury, PT .
ANNUAL REVIEW OF NEUROSCIENCE, 2003, 26 :267-298