The Mechanism of Toxicity in HET-S/HET-s Prion Incompatibility

被引:108
作者
Seuring, Carolin [1 ]
Greenwald, Jason [1 ]
Wasmer, Christian [1 ]
Wepf, Roger [2 ]
Saupe, Sven J. [3 ]
Meier, Beat H. [1 ]
Riek, Roland [1 ]
机构
[1] Swiss Fed Inst Technol, Phys Chem Lab, Zurich, Switzerland
[2] Electron Microscopy ETH Zurich EMEZ, Zurich, Switzerland
[3] Univ Bordeaux 2, CNRS, UMR 5095, Lab Genet Mol Champignons,Inst Biochim & Genet Ce, F-33076 Bordeaux, France
关键词
SOLID-STATE NMR; FUNGUS PODOSPORA-ANSERINA; VEGETATIVE INCOMPATIBILITY; HETEROKARYON INCOMPATIBILITY; AMYLOID FIBRILS; CELL-DEATH; PROTEIN; TOXIN; DISEASE; ASSIGNMENT;
D O I
10.1371/journal.pbio.1001451
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 HET-s protein from the filamentous fungus Podospora anserina is a prion involved in a cell death reaction termed heterokaryon incompatibility. This reaction is observed at the point of contact between two genetically distinct strains when one harbors a HET-s prion (in the form of amyloid aggregates) and the other expresses a soluble HET-S protein (96% identical to HET-s). How the HET-s prion interaction with HET-S brings about cell death remains unknown; however, it was recently shown that this interaction leads to a relocalization of HET-S from the cytoplasm to the cell periphery and that this change is associated with cell death. Here, we present detailed insights into this mechanism in which a non-toxic HET-s prion converts a soluble HET-S protein into an integral membrane protein that destabilizes membranes. We observed liposomal membrane defects of approximately 10 up to 60 nm in size in transmission electron microscopy images of freeze-fractured proteoliposomes that were formed in mixtures of HET-S and HET-s amyloids. In liposome leakage assays, HET-S has an innate ability to associate with and disrupt lipid membranes and that this activity is greatly enhanced when HET-S is exposed to HET-s amyloids. Solid-state nuclear magnetic resonance (NMR) analyses revealed that HET-s induces the prion-forming domain of HET-S to adopt the beta-solenoid fold (previously observed in HET-s) and this change disrupts the globular HeLo domain. These data indicate that upon interaction with a HET-s prion, the HET-S HeLo domain partially unfolds, thereby exposing a previously buried similar to 34-residue N-terminal transmembrane segment. The liberation of this segment targets HET-S to the membrane where it further oligomerizes, leading to a loss of membrane integrity. HET-S thus appears to display features that are reminiscent of pore-forming toxins.
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页数:18
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共 59 条
  • [31] Maslennikov Innokentiy, 2009, Journal of Structural and Functional Genomics, V10, P25, DOI 10.1007/s10969-009-9061-3
  • [32] Localization of HET-S to the Cell Periphery, Not to [Het-s] Aggregates, Is Associated with [Het-s]-HET-S Toxicity
    Mathur, Vidhu
    Seuring, Carolin
    Riek, Roland
    Saupe, Sven J.
    Liebman, Susan W.
    [J]. MOLECULAR AND CELLULAR BIOLOGY, 2012, 32 (01) : 139 - 153
  • [33] Elicitor-mediated oligomerization of the tobacco N disease resistance protein
    Mestre, P
    Baulcombe, DC
    [J]. PLANT CELL, 2006, 18 (02) : 491 - 501
  • [34] SnapShot: Pore-Forming Toxins
    Mueller, Marcus
    Ban, Nenad
    [J]. CELL, 2010, 142 (02) : 334 - U169
  • [35] The structure of a cytolytic α-helical toxin pore reveals its assembly mechanism
    Mueller, Marcus
    Grauschopf, Ulla
    Maier, Timm
    Glockshuber, Rudi
    Ban, Nenad
    [J]. NATURE, 2009, 459 (7247) : 726 - U135
  • [36] Osborn M J, 1974, Methods Enzymol, V31, P642
  • [37] A common toxin fold mediates microbial attack and plant defense
    Ottmann, Christian
    Luberacki, Borries
    Kuefner, Isabell
    Koch, Wolfgang
    Brunner, Frederic
    Weyand, Michael
    Mattinen, Laura
    Pirhonen, Minna
    Anderluh, Gregor
    Seitz, Hanns Ulrich
    Nuernberger, Thorsten
    Oecking, Claudia
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (25) : 10359 - 10364
  • [38] The fungus-specific HET domain mediates programmed cell death in Podospora anserina
    Paoletti, M.
    Clave, C.
    [J]. EUKARYOTIC CELL, 2007, 6 (11) : 2001 - 2008
  • [39] Fungal incompatibility: Evolutionary origin in pathogen defense?
    Paoletti, Mathieu
    Saupe, Sven J.
    [J]. BIOESSAYS, 2009, 31 (11) : 1201 - 1210
  • [40] STRUCTURE OF THE AEROMONAS TOXIN PROAEROLYSIN IN ITS WATER-SOLUBLE AND MEMBRANE-CHANNEL STATES
    PARKER, MW
    BUCKLEY, JT
    POSTMA, JPM
    TUCKER, AD
    LEONARD, K
    PATTUS, F
    TSERNOGLOU, D
    [J]. NATURE, 1994, 367 (6460) : 292 - 295