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  • 标题:Structural dependence of HET-s amyloid fibril infectivity assessed by cryoelectron microscopy
  • 本地全文:下载
  • 作者:Naoko Mizuno ; Ulrich Baxa ; Alasdair C. Steven
  • 期刊名称:Proceedings of the National Academy of Sciences
  • 印刷版ISSN:0027-8424
  • 电子版ISSN:1091-6490
  • 出版年度:2011
  • 卷号:108
  • 期号:8
  • 页码:3252-3257
  • DOI:10.1073/pnas.1011342108
  • 语种:English
  • 出版社:The National Academy of Sciences of the United States of America
  • 摘要:HET-s is a prion protein of the fungus Podospora anserina which, in the prion state, is active in a self/nonself recognition process called heterokaryon incompatibility. Its prionogenic properties reside in the C-terminal "prion domain." The HET-s prion domain polymerizes in vitro into amyloid fibrils whose properties depend on the pH of assembly; above pH 3, infectious singlet fibrils are produced, and below pH 3, noninfectious triplet fibrils. To investigate the correlation between structure and infectivity, we performed cryo-EM analyses. Singlet fibrils have a helical pitch of approximately 410 A and a left-handed twist. Triplet fibrils have three protofibrils whose lateral dimensions (36 x 25 A) and axial packing (one subunit per 9.4 A) match those of singlets but differ in their supercoiling. At 8.5-A resolution, the cross-section of the singlet fibril reconstruction is largely consistent with that of a {beta}-solenoid model previously determined by solid-state NMR. Reconstructions of the triplet fibrils show three protofibrils coiling around a common axis and packed less tightly at pH 3 than at pH 2, eventually peeling off. Taken together with the earlier observation that fragmentation of triplet fibrils by sonication does not increase infectivity, these observations suggest a novel mechanism for self-propagation, whereby daughter fibrils nucleate on the lateral surface of singlet fibrils. In triplets, this surface is occluded, blocking nucleation and thereby explaining their lack of infectivity.
  • 关键词:assembly nucleation ; cryoelectron microscopy ; protein template ; polymorphism ; three-dimensional image reconstruction
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