A systematic investigation of production of synthetic prions from recombinant prion protein

被引:26
作者
Schmidt, Christian
Fizet, Jeremie
Properzi, Francesca
Batchelor, Mark
Sandberg, Malin K.
Edgeworth, Julie A.
Afran, Louise
Ho, Sammy
Badhan, Anjna
Klier, Steffi
Linehan, Jacqueline M.
Brandner, Sebastian
Hosszu, Laszlo L. P.
Tattum, M. Howard
Jat, Parmjit
Clarke, Anthony R.
Kloehn, Peter C.
Wadsworth, Jonathan D. F.
Jackson, Graham S.
Collinge, John [1 ]
机构
[1] UCL Inst Neurol, Natl Hosp Neurol & Neurosurg, MRC Prion Unit, London WC1N 3BG, England
来源
OPEN BIOLOGY | 2015年 / 5卷 / 12期
基金
英国医学研究理事会;
关键词
prion; prion disease; prion protein; prion amyloid; synthetic prions; CREUTZFELDT-JAKOB-DISEASE; MAMMALIAN PRIONS; IN-VITRO; SCRAPIE; CONVERSION; STRAINS; ASSAY; SUSCEPTIBILITY; INTERMEDIATE; PROPAGATION;
D O I
10.1098/rsob.150165
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
According to the protein-only hypothesis, infectious mammalian prions, which exist as distinct strains with discrete biological properties, consist of multichain assemblies of misfolded cellular prion protein (PrP). A critical test would be to produce prion strains synthetically from defined components. Crucially, high-titre 'synthetic' prions could then be used to determine the structural basis of infectivity and strain diversity at the atomic level. While there have been multiple reports of production of prions from bacterially expressed recombinant PrP using various methods, systematic production of high-titre material in a form suitable for structural analysis remains a key goal. Here, we report a novel high-throughput strategy for exploring a matrix of conditions, additives and potential cofactors that might generate high-titre prions from recombinant mouse PrP, with screening for infectivity using a sensitive automated cell-based bioassay. Overall, approximately 20 000 unique conditions were examined. While some resulted in apparently infected cell cultures, this was transient and not reproducible. We also adapted published methods that reported production of synthetic prions from recombinant hamster PrP, but again did not find evidence of significant infectious titre when using recombinant mouse PrP as substrate. Collectively, our findings are consistent with the formation of prion infectivity from recombinant mouse PrP being a rare stochastic event and we conclude that systematic generation of prions from recombinant PrP may only become possible once the detailed structure of authentic ex vivo prions is solved.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Endoproteolysis of cellular prion protein by plasmin hinders propagation of prions
    Mays, Charles E.
    Trinh, Trang H. T.
    Telling, Glenn
    Kang, Hae-Eun
    Ryou, Chongsuk
    FRONTIERS IN MOLECULAR NEUROSCIENCE, 2022, 15
  • [22] Spontaneous generation of distinct prion variants with recombinant prion protein from a baculovirus-insect cell expression system
    Imamura, Morikazu
    Tabeta, Naoko
    Iwamaru, Yoshifumi
    Takatsuki, Hanae
    Mori, Tsuyoshi
    Atarashi, Ryuichiro
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2022, 613 : 67 - 72
  • [23] Fate of prions in soil: Degradation of recombinant prion in aqueous extracts from soil and casts of two earthworm species
    Nechitaylo, Taras Y.
    Timmis, Kenneth N.
    Byzov, Boris A.
    Kurakov, Alexander V.
    Belogolova, Elena
    Jones, David L.
    Ferrer, Manuel
    Golyshin, Peter N.
    SOIL BIOLOGY & BIOCHEMISTRY, 2010, 42 (07) : 1168 - 1171
  • [24] Development of a new largely scalable in vitro prion propagation method for the production of infectious recombinant prions for high resolution structural studies
    Erana, Hasier
    Charco, Jorge M.
    Di Bari, Michele A.
    Diaz-Dominguez, Carlos M.
    Lopez-Moreno, Rafael
    Vidal, Enric
    Gonzalez-Miranda, Ezequiel
    Perez-Castro, Miguel A.
    Garcia-Martinez, Sandra
    Bravo, Susana
    Fernandez-Borges, Natalia
    Geijo, Marivi
    D'Agostino, Claudia
    Garrido, Joseba
    Bian, Jifeng
    Koenig, Anna
    Uluca-Yazgi, Boran
    Sabate, Raimon
    Khaychuk, Vadim
    Vanni, Ilaria
    Telling, Glenn C.
    Heise, Henrike
    Nonno, Romolo
    Requena, Jesus R.
    Castilla, Joaquin
    PLOS PATHOGENS, 2019, 15 (10)
  • [25] Stress-protective signalling of prion protein is corrupted by scrapie prions
    Rambold, Angelika S.
    Mueller, Veronika
    Ron, Uri
    Ben-Tal, Nir
    Winklhofer, Konstanze F.
    Tatzelt, Joerg
    EMBO JOURNAL, 2008, 27 (14) : 1974 - 1984
  • [26] Structural conservation of prion strain specificities in recombinant prion protein fibrils in real-time quaking-induced conversion
    Sano, Kazunori
    Atarashi, Ryuichiro
    Nishida, Noriyuki
    PRION, 2015, 9 (04) : 237 - 243
  • [27] Role of prion protein glycosylation in replication of human prions by protein misfolding cyclic amplification
    Camacho, Manuel V.
    Telling, Glenn
    Kong, Qingzhong
    Gambetti, Pierluigi
    Notari, Silvio
    LABORATORY INVESTIGATION, 2019, 99 (11) : 1741 - 1748
  • [28] Therapeutic effect of peripheral administration of an anti-prion protein antibody on mice infected with prions
    Ohsawa, Natsuo
    Song, Chang-Hyun
    Suzuki, Akio
    Furuoka, Hidefumi
    Hasebe, Rie
    Horiuchi, Motohiro
    MICROBIOLOGY AND IMMUNOLOGY, 2013, 57 (04) : 288 - 297
  • [29] Structural characterization of POM6 Fab and mouse prion protein complex identifies key regions for prions conformational conversion
    Baral, Pravas Kumar
    Swayampakula, Mridula
    Aguzzi, Adriano
    James, Michael N. G.
    FEBS JOURNAL, 2018, 285 (09) : 1701 - 1714
  • [30] Conformational Properties of Prion Strains Can Be Transmitted to Recombinant Prion Protein Fibrils in Real-Time Quaking-Induced Conversion
    Sano, Kazunori
    Atarashi, Ryuichiro
    Ishibashi, Daisuke
    Nakagaki, Takehiro
    Satoh, Katsuya
    Nishida, Noriyuki
    JOURNAL OF VIROLOGY, 2014, 88 (20) : 11791 - 11801