The Cytokine Release Inhibitory Drug CRID3 Targets ASC Oligomerisation in the NLRP3 and AIM2 Inflammasomes

被引:120
作者
Coll, Rebecca C. [1 ]
O'Neill, Luke A. J. [1 ]
机构
[1] Trinity Coll Dublin, Sch Biochem & Immunol, Dublin, Ireland
来源
PLOS ONE | 2011年 / 6卷 / 12期
基金
爱尔兰科学基金会;
关键词
TRANSFERASE OMEGA 1-1; SPECK-LIKE PROTEIN; CELL-DEATH; NALP3; INFLAMMASOME; INDEPENDENT ROLE; CYTOPLASMIC DNA; CARD ASC; ACTIVATION; CASPASE-1; IDENTIFICATION;
D O I
10.1371/journal.pone.0029539
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: The Inflammasomes are multi-protein complexes that regulate caspase-1 activation and the production of the pro-inflammatory cytokine IL-1 beta. Previous studies identified a class of diarylsulfonylurea containing compounds called Cytokine Release Inhibitory Drugs (CRIDs) that inhibited the post-translational processing of IL-1 beta. Further work identified Glutathione S-Transferase Omega 1 (GSTO1) as a possible target of these CRIDs. This study aimed to investigate the mechanism of the inhibitory activity of the CRID CP-456,773 (termed CRID3) in light of recent advances in the area of inflammasome activation, and to clarify the potential role of GSTO1 in the regulation of IL-1 beta production. Methodology and Results: In murine bone marrow derived macrophages, CRID3 inhibited IL-1 beta secretion and caspase 1 processing in response to stimulation of NLRP3 and AIM2 but not NLRC4. CRID3 also prevented AIM2 dependent pyroptosis in contrast to the NLRP3 inhibitors glyburide and parthenolide, which do not inhibit AIM2 activation. Confocal microscopy and Western blotting assays indicated that CRID3 inhibited the formation of ASC complexes or 'specks' in response to NLRP3 and AIM2 stimulation. Co-immunoprecipitation assays show that GSTO1 interacted with ASC. Significance: These results identify CRID3 as a novel inhibitor of the NLRP3 and AIM2 inflammasomes and provide an insight into the mechanism of action of this small molecule. In addition GSTO1 may be a component of the inflammasome that is required for ASC complex formation.
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页数:9
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共 39 条
  • [1] NALP3 forms an IL-lβ-Processing inflammasome with increased activity in Muckle-Wells autoinflammatory disorder
    Agostini, L
    Martinon, F
    Burns, K
    McDermott, MF
    Hawkins, PN
    Tschopp, J
    [J]. IMMUNITY, 2004, 20 (03) : 319 - 325
  • [2] Inflammasomes: current understanding and open questions
    Bauernfeind, Franz
    Ablasser, Andrea
    Bartok, Eva
    Kim, Sarah
    Schmid-Burgk, Jonathan
    Cavlar, Taner
    Hornung, Veit
    [J]. CELLULAR AND MOLECULAR LIFE SCIENCES, 2011, 68 (05) : 765 - 783
  • [3] Cutting Edge: NF-κB Activating Pattern Recognition and Cytokine Receptors License NLRP3 Inflammasome Activation by Regulating NLRP3 Expression
    Bauernfeind, Franz G.
    Horvath, Gabor
    Stutz, Andrea
    Alnemri, Emad S.
    MacDonald, Kelly
    Speert, David
    Fernandes-Alnemri, Teresa
    Wu, Jianghong
    Monks, Brian G.
    Fitzgerald, Katherine A.
    Hornung, Veit
    Latz, Eicke
    [J]. JOURNAL OF IMMUNOLOGY, 2009, 183 (02) : 787 - 791
  • [4] Identification, characterization, and crystal structure of the omega class glutathione transferases
    Board, PG
    Coggan, M
    Chelvanayagam, G
    Easteal, S
    Jermiin, LS
    Schulte, GK
    Danley, DE
    Hoth, LR
    Griffor, MC
    Kamath, AV
    Rosner, MH
    Chrunyk, BA
    Perregaux, DE
    Gabel, CA
    Geoghegan, KF
    Pandit, J
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (32) : 24798 - 24806
  • [5] Differential Requirement for Caspase-1 Autoproteolysis in Pathogen-Induced Cell Death and Cytokine Processing
    Broz, Petr
    von Moltke, Jakob
    Jones, Jonathan W.
    Vance, Russell E.
    Monack, Denise M.
    [J]. CELL HOST & MICROBE, 2010, 8 (06) : 471 - 483
  • [6] An orthogonal proteomic-genomic screen identifies AIM2 as a cytoplasmic DNA sensor for the inflammasome
    Buerckstuemmer, Tilmann
    Baumann, Christoph
    Blueml, Stephan
    Dixit, Evelyn
    Duernberger, Gerhard
    Jahn, Hannah
    Planyavsky, Melanie
    Bilban, Martin
    Colinge, Jacques
    Bennett, Keiryn L.
    Superti-Furga, Giulio
    [J]. NATURE IMMUNOLOGY, 2009, 10 (03) : 266 - 272
  • [7] Oxidative stress in Caenorhabditis elegans:: protective effects of the Omega class glutathione transferase (GSTO-1)
    Burmeister, Cora
    Lueersen, Kai
    Heinick, Alexander
    Hussein, Ayman
    Domagalski, Marzena
    Walter, Rolf D.
    Liebau, Eva
    [J]. FASEB JOURNAL, 2008, 22 (02) : 343 - 354
  • [8] Polymorphisms in Glutathione S-Transferase Omega-1 Gene and Increased Risk of Sporadic Alzheimer Disease
    Capurso, Cristiano
    Panza, Francesco
    Seripa, Davide
    Frisardi, Vincenza
    Imbimbo, Bruno P.
    Verdile, Gerardo
    Vendemiale, Gianluigi
    Pilotto, Alberto
    Solfrizzi, Vincenzo
    [J]. REJUVENATION RESEARCH, 2010, 13 (06) : 645 - 652
  • [9] S-glutathionylation uncouples eNOS and regulates its cellular and vascular function
    Chen, Chun-An
    Wang, Tse-Yao
    Varadharaj, Saradhadevi
    Reyes, Levy A.
    Hemann, Craig
    Talukder, M. A. Hassan
    Chen, Yeong-Renn
    Druhan, Lawrence J.
    Zweier, Jay L.
    [J]. NATURE, 2010, 468 (7327) : 1115 - U521
  • [10] Inflammasome-independent role of the apoptosis-associated speck-like protein containing CARD (ASC) in the adjuvant effect of MF59
    Ellebedy, Ali H.
    Lupfer, Christopher
    Ghoneim, Hazem E.
    DeBeauchamp, Jennifer
    Kanneganti, Thirumala-Devi
    Webby, Richard J.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2011, 108 (07) : 2927 - 2932