메뉴 건너뛰기




Volumn 111, Issue 45, 2014, Pages 16059-16064

Human NLRP3 Inflammasome senses multiple types of bacterial RNAs

Author keywords

Bacterial RNA; Innate immunity; Nlrp3 inflammasome; Primary macrophages; Single stranded rna

Indexed keywords

BACTERIAL RNA; CRYOPYRIN; DOUBLE STRANDED RNA; INFLAMMASOME; INTERLEUKIN 18; INTERLEUKIN 1BETA; MESSENGER RNA; PHORBOL 13 ACETATE 12 MYRISTATE; POLYINOSINIC POLYCYTIDYLIC ACID; POLYURIDYLIC ACID; RIBONUCLEASE III; RIBOSOME RNA; RNA 16S; RNA 23S; RNA 5S; TRANSFER RNA; CARRIER PROTEIN; IL1B PROTEIN, HUMAN; NLRP3 PROTEIN, HUMAN;

EID: 84909595118     PISSN: 00278424     EISSN: 10916490     Source Type: Journal    
DOI: 10.1073/pnas.1412487111     Document Type: Article
Times cited : (101)

References (35)
  • 1
    • 0036212849 scopus 로고    scopus 로고
    • Innate immune recognition
    • Janeway CA, Jr, Medzhitov R (2002) Innate immune recognition. Annu Rev Immunol 20(1):197-216.
    • (2002) Annu Rev Immunol , vol.20 , Issue.1 , pp. 197-216
    • Janeway, C.A.1    Medzhitov, R.2
  • 2
    • 78649526394 scopus 로고    scopus 로고
    • Sterile inflammation: Sensing and reacting to damage
    • Chen GY, Nunez G (2010) Sterile inflammation: Sensing and reacting to damage. Nat Rev Immunol 10(12):826-837.
    • (2010) Nat Rev Immunol , vol.10 , Issue.12 , pp. 826-837
    • Chen, G.Y.1    Nunez, G.2
  • 3
    • 78751560494 scopus 로고    scopus 로고
    • Pathogen recognition by the innate immune system
    • Kumar H, Kawai T, Akira S (2011) Pathogen recognition by the innate immune system. Int Rev Immunol 30(1):16-34.
    • (2011) Int Rev Immunol , vol.30 , Issue.1 , pp. 16-34
    • Kumar, H.1    Kawai, T.2    Akira, S.3
  • 4
    • 0026507126 scopus 로고
    • A novel heterodimeric cysteine protease is required for interleukin-1 beta processing in monocytes
    • Thornberry NA, et al. (1992) A novel heterodimeric cysteine protease is required for interleukin-1 beta processing in monocytes. Nature 356(6372):768-774.
    • (1992) Nature , vol.356 , Issue.6372 , pp. 768-774
    • Thornberry, N.A.1
  • 5
    • 0028169817 scopus 로고
    • IL-lbeta-converting enzyme is present in monocytic cells as an Inactive 45-kDa precursor
    • Ayala JM, et al. (1994) IL-lbeta-converting enzyme is present in monocytic cells as an Inactive 45-kDa precursor. J Immunol 153(6):2592-2599.
    • (1994) J Immunol , vol.153 , Issue.6 , pp. 2592-2599
    • Ayala, J.M.1
  • 6
    • 0031739525 scopus 로고    scopus 로고
    • Interleukin-1 beta, interleukin-18, and the interleukin-1 beta converting enzyme
    • Dinarello CA (1998) Interleukin-1 beta, interleukin-18, and the interleukin-1 beta converting enzyme. Ann N Y Acad Sci 856:1-11.
    • (1998) Ann N Y Acad Sci , vol.856 , pp. 1-11
    • Dinarello, C.A.1
  • 7
    • 60749104683 scopus 로고    scopus 로고
    • The inflammasome: A caspase-1-activation platform that regulates immune responses and disease pathogenesis
    • Franchi L, Eigenbrod T, Munoz-Planillo R, Nunez G (2009) The inflammasome: A caspase-1-activation platform that regulates immune responses and disease pathogenesis. Nat Immunol 10(3):241-247.
    • (2009) Nat Immunol , vol.10 , Issue.3 , pp. 241-247
    • Franchi, L.1    Eigenbrod, T.2    Munoz-Planillo, R.3    Nunez, G.4
  • 8
    • 63649145255 scopus 로고    scopus 로고
    • AIM2 activates the inflammasome and cell death in response to cytoplasmic DNA
    • Fernandes-Alnemri T, Yu J-W, Datta P, Wu J, Alnemri ES (2009) AIM2 activates the inflammasome and cell death in response to cytoplasmic DNA. Nature 458(7237):509-513.
    • (2009) Nature , vol.458 , Issue.7237 , pp. 509-513
    • Fernandes-Alnemri, T.1    Yu, J.-W.2    Datta, P.3    Wu, J.4    Alnemri, E.S.5
  • 9
    • 63649133278 scopus 로고    scopus 로고
    • AIM2 recognizes cytosolic dsDNA and forms a caspase-1-activating inflammasome with ASC
    • Hornung V, et al. (2009) AIM2 recognizes cytosolic dsDNA and forms a caspase-1-activating inflammasome with ASC. Nature 458(7237):514-518.
    • (2009) Nature , vol.458 , Issue.7237 , pp. 514-518
    • Hornung, V.1
  • 10
    • 60749136484 scopus 로고    scopus 로고
    • An orthogonal proteomic-genomic screen identifies AIM2 as a cytoplasmic DNA sensor for the inflammasome
    • Burckstummer T, et al. (2009) An orthogonal proteomic-genomic screen identifies AIM2 as a cytoplasmic DNA sensor for the inflammasome. Nat Immunol 10(3):266-272.
    • (2009) Nat Immunol , vol.10 , Issue.3 , pp. 266-272
    • Burckstummer, T.1
  • 11
    • 60749104535 scopus 로고    scopus 로고
    • HIN-200 proteins regulate caspase activation in response to foreign cytoplasmic DNA
    • Roberts TL, et al. (2009) HIN-200 proteins regulate caspase activation in response to foreign cytoplasmic DNA. Science 323(5917):1057-1060.
    • (2009) Science , vol.323 , Issue.5917 , pp. 1057-1060
    • Roberts, T.L.1
  • 12
    • 84880745984 scopus 로고    scopus 로고
    • The DHX33 RNA helicase senses cytosolic RNA and activates the NLRP3 inflammasome
    • Mitoma H, et al. (2013) The DHX33 RNA helicase senses cytosolic RNA and activates the NLRP3 inflammasome. Immunity 39(1):123-135.
    • (2013) Immunity , vol.39 , Issue.1 , pp. 123-135
    • Mitoma, H.1
  • 13
    • 32944462834 scopus 로고    scopus 로고
    • Bacterial RNA and small antiviral compounds activate caspase-1 through cryopyrin/Nalp3
    • Kanneganti T-D, et al. (2006) Bacterial RNA and small antiviral compounds activate caspase-1 through cryopyrin/Nalp3. Nature 440(7081):233-236.
    • (2006) Nature , vol.440 , Issue.7081 , pp. 233-236
    • Kanneganti, T.-D.1
  • 14
    • 33846014297 scopus 로고    scopus 로고
    • Critical role for Cryopyrin/Nalp3 in activation of caspase-1 in response to viral infection and double-stranded RNA
    • Kanneganti TD, et al. (2006) Critical role for Cryopyrin/Nalp3 in activation of caspase-1 in response to viral infection and double-stranded RNA. J Biol Chem 281(48):36560-36568.
    • (2006) J Biol Chem , vol.281 , Issue.48 , pp. 36560-36568
    • Kanneganti, T.D.1
  • 15
    • 64049111768 scopus 로고    scopus 로고
    • The NLRP3 inflammasome mediates in vivo innate immunity to influenza A virus through recognition of viral RNA
    • Allen IC, et al. (2009) The NLRP3 inflammasome mediates in vivo innate immunity to influenza A virus through recognition of viral RNA. Immunity 30(4):556-565.
    • (2009) Immunity , vol.30 , Issue.4 , pp. 556-565
    • Allen, I.C.1
  • 16
    • 79956215858 scopus 로고    scopus 로고
    • Escherichia coli heat-labile enterotoxin promotes protective Th17 responses against infection by driving innate IL-1 and IL-23 production
    • Brereton CF, et al. (2011) Escherichia coli heat-labile enterotoxin promotes protective Th17 responses against infection by driving innate IL-1 and IL-23 production. J Immunol 186(10):5896-5906.
    • (2011) J Immunol , vol.186 , Issue.10 , pp. 5896-5906
    • Brereton, C.F.1
  • 17
    • 78650859153 scopus 로고    scopus 로고
    • Macrophages recognize streptococci through bacterial single-stranded RNA
    • Deshmukh SD, et al. (2011) Macrophages recognize streptococci through bacterial single-stranded RNA. EMBO Rep 12(1):71-76.
    • (2011) EMBO Rep , vol.12 , Issue.1 , pp. 71-76
    • Deshmukh, S.D.1
  • 18
    • 79959242498 scopus 로고    scopus 로고
    • Detection of prokaryotic mRNA signifies microbial viability and promotes immunity
    • Sander LE, et al. (2011) Detection of prokaryotic mRNA signifies microbial viability and promotes immunity. Nature 474(7351):385-389.
    • (2011) Nature , vol.474 , Issue.7351 , pp. 385-389
    • Sander, L.E.1
  • 19
    • 34548027736 scopus 로고    scopus 로고
    • Activation of the NALP3 inflammasome is triggered by low intracellular potassium concentration
    • Petrilli V, et al. (2007) Activation of the NALP3 inflammasome is triggered by low intracellular potassium concentration. Cell Death Differ 14(9):1583-1589.
    • (2007) Cell Death Differ , vol.14 , Issue.9 , pp. 1583-1589
    • Petrilli, V.1
  • 20
    • 74049126045 scopus 로고    scopus 로고
    • Recognition of RNA virus by RIG-I results in activation of CARD9 and inflammasome signaling for interleukin 1 β production
    • Poeck H, et al. (2010) Recognition of RNA virus by RIG-I results in activation of CARD9 and inflammasome signaling for interleukin 1 β production. Nat Immunol 11(1):63-69.
    • (2010) Nat Immunol , vol.11 , Issue.1 , pp. 63-69
    • Poeck, H.1
  • 21
    • 78249269470 scopus 로고    scopus 로고
    • Activation of the NLRP3 inflammasome by intracellular poly I: C
    • Rajan JV, Warren SE, Miao EA, Aderem A (2010) Activation of the NLRP3 inflammasome by intracellular poly I: C. FEBS Lett 584(22):4627-4632.
    • (2010) FEBS Lett , vol.584 , Issue.22 , pp. 4627-4632
    • Rajan, J.V.1    Warren, S.E.2    Miao, E.A.3    Aderem, A.4
  • 22
    • 42149167357 scopus 로고    scopus 로고
    • TLR7 is involved in sequence-specific sensing of singlestranded RNAs in human macrophages
    • Gantier MP, et al. (2008) TLR7 is involved in sequence-specific sensing of singlestranded RNAs in human macrophages. J Immunol 180(4):2117-2124.
    • (2008) J Immunol , vol.180 , Issue.4 , pp. 2117-2124
    • Gantier, M.P.1
  • 23
    • 11844290125 scopus 로고    scopus 로고
    • Cutting edge: Species-specific TLR9-mediated recognition of CpG and non-CpG phosphorothioate-modified oligonucleotides
    • Roberts TL, Sweet MJ, Hume DA, Stacey KJ (2005) Cutting edge: Species-specific TLR9-mediated recognition of CpG and non-CpG phosphorothioate-modified oligonucleotides. J Immunol 174(2):605-608.
    • (2005) J Immunol , vol.174 , Issue.2 , pp. 605-608
    • Roberts, T.L.1    Sweet, M.J.2    Hume, D.A.3    Stacey, K.J.4
  • 24
    • 1542317578 scopus 로고    scopus 로고
    • Species-specific recognition of single-stranded RNA via toll-like receptor 7 and 8
    • Heil F, et al. (2004) Species-specific recognition of single-stranded RNA via toll-like receptor 7 and 8. Science 303(5663):1526-1529.
    • (2004) Science , vol.303 , Issue.5663 , pp. 1526-1529
    • Heil, F.1
  • 25
    • 84886945031 scopus 로고    scopus 로고
    • Bacteria evade immune recognition via TLR13 and binding of their 23S rRNA by MLS antibiotics by the same mechanisms
    • Hochrein H, Kirschning CJ (2013) Bacteria evade immune recognition via TLR13 and binding of their 23S rRNA by MLS antibiotics by the same mechanisms. OncoImmunology 2(3):e23141.
    • (2013) OncoImmunology , vol.2 , Issue.3 , pp. e23141
    • Hochrein, H.1    Kirschning, C.J.2
  • 26
    • 84866159316 scopus 로고    scopus 로고
    • Cutting edge: TLR13 is a receptor for bacterial RNA
    • Hidmark A, von Saint Paul A, Dalpke AH (2012) Cutting edge: TLR13 is a receptor for bacterial RNA. J Immunol 189(6):2717-2721.
    • (2012) J Immunol , vol.189 , Issue.6 , pp. 2717-2721
    • Hidmark, A.1    Von Paul, S.A.2    Dalpke, A.H.3
  • 27
    • 84865571191 scopus 로고    scopus 로고
    • TLR13 recognizes bacterial 23S rRNA devoid of erythromycin resistance-forming modification
    • Oldenburg M, et al. (2012) TLR13 recognizes bacterial 23S rRNA devoid of erythromycin resistance-forming modification. Science 337(6098):1111-1115.
    • (2012) Science , vol.337 , Issue.6098 , pp. 1111-1115
    • Oldenburg, M.1
  • 28
    • 84877579519 scopus 로고    scopus 로고
    • Sequence specific detection of bacterial 23S ribosomal RNA by TLR13
    • Li X-D, Chen ZJ (2012) Sequence specific detection of bacterial 23S ribosomal RNA by TLR13. eLife 1(e00102):e00102.
    • (2012) ELife , vol.1 , pp. e00102
    • Li, X.-D.1    Chen, Z.J.2
  • 29
    • 84883790050 scopus 로고    scopus 로고
    • Cytoplasmic LPS activates caspase-11: Implications in TLR4-independent endotoxic shock
    • Hagar JA, Powell DA, Aachoui Y, Ernst RK, Miao EA (2013) Cytoplasmic LPS activates caspase-11: Implications in TLR4-independent endotoxic shock. Science 341(6151):1250-1253.
    • (2013) Science , vol.341 , Issue.6151 , pp. 1250-1253
    • Hagar, J.A.1    Powell, D.A.2    Aachoui, Y.3    Ernst, R.K.4    Miao, E.A.5
  • 30
    • 84883775365 scopus 로고    scopus 로고
    • Noncanonical inflammasome activation by intracellular LPS independent of TLR4
    • Kayagaki N, et al. (2013) Noncanonical inflammasome activation by intracellular LPS independent of TLR4. Science 341(6151):1246-1249.
    • (2013) Science , vol.341 , Issue.6151 , pp. 1246-1249
    • Kayagaki, N.1
  • 31
    • 84878740998 scopus 로고    scopus 로고
    • Of inflammasomes and pathogens.sensing of microbes by the inflammasome
    • Bauernfeind F, Hornung V (2013) Of inflammasomes and pathogens.sensing of microbes by the inflammasome. EMBO Mol Med 5(6):814-826.
    • (2013) EMBO Mol Med , vol.5 , Issue.6 , pp. 814-826
    • Bauernfeind, F.1    Hornung, V.2
  • 32
    • 84860883878 scopus 로고    scopus 로고
    • DICER1 loss and Alu RNA induce age-related macular degeneration via the NLRP3 inflammasome and MyD88
    • Tarallo V, et al. (2012) DICER1 loss and Alu RNA induce age-related macular degeneration via the NLRP3 inflammasome and MyD88. Cell 149(4):847-859.
    • (2012) Cell , vol.149 , Issue.4 , pp. 847-859
    • Tarallo, V.1
  • 33
    • 46949097299 scopus 로고    scopus 로고
    • Length-dependent recognition of double-stranded ribonucleic acids by retinoic acid-inducible gene-I and melanoma differentiation-associated gene 5
    • Kato H, et al. (2008) Length-dependent recognition of double-stranded ribonucleic acids by retinoic acid-inducible gene-I and melanoma differentiation-associated gene 5. J Exp Med 205(7):1601-1610.
    • (2008) J Exp Med , vol.205 , Issue.7 , pp. 1601-1610
    • Kato, H.1
  • 34
    • 33746884630 scopus 로고    scopus 로고
    • Properties regulating the nature of the plasmacytoid dendritic cell response to Toll-like receptor 9 activation
    • Guiducci C, et al. (2006) Properties regulating the nature of the plasmacytoid dendritic cell response to Toll-like receptor 9 activation. J Exp Med 203(8):1999-2008.
    • (2006) J Exp Med , vol.203 , Issue.8 , pp. 1999-2008
    • Guiducci, C.1
  • 35
    • 17844380477 scopus 로고    scopus 로고
    • Spatiotemporal regulation of MyD88-IRF-7 signalling for robust type-I interferon induction
    • Honda K, et al. (2005) Spatiotemporal regulation of MyD88-IRF-7 signalling for robust type-I interferon induction. Nature 434(7036):1035-1040.
    • (2005) Nature , vol.434 , Issue.7036 , pp. 1035-1040
    • Honda, K.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.