메뉴 건너뛰기




Volumn 187, Issue 11, 2011, Pages 6002-6010

Phagosomal degradation increases TLR access to bacterial ligands and enhances macrophage sensitivity to bacteria

Author keywords

[No Author keywords available]

Indexed keywords

CASPASE RECRUITMENT DOMAIN PROTEIN 15; CRYOPYRIN; CYTOCHALASIN D; GAMMA INTERFERON; INTERLEUKIN 6; LYSOZYME; MESSENGER RNA; MYELOID DIFFERENTIATION FACTOR 88; PEPTIDOGLYCAN; TOLL LIKE RECEPTOR 2; TOLL LIKE RECEPTOR 9; TUMOR NECROSIS FACTOR ALPHA; VANCOMYCIN;

EID: 82755190050     PISSN: 00221767     EISSN: 15506606     Source Type: Journal    
DOI: 10.4049/jimmunol.1100232     Document Type: Article
Times cited : (74)

References (25)
  • 1
    • 0033046220 scopus 로고    scopus 로고
    • Mechanisms of phagocytosis in macrophages
    • DOI 10.1146/annurev.immunol.17.1.593
    • Aderem, A., and D. M. Underhill. 1999. Mechanisms of phagocytosis in macrophages. Annu. Rev. Immunol. 17: 593-623. (Pubitemid 29241135)
    • (1999) Annual Review of Immunology , vol.17 , pp. 593-623
    • Aderem, A.1    Underhill, D.M.2
  • 2
    • 0036467393 scopus 로고    scopus 로고
    • Phagocytosis and innate immunity
    • DOI 10.1016/S0952-7915(01)00309-0
    • Greenberg, S., and S. Grinstein. 2002. Phagocytosis and innate immunity. Curr. Opin. Immunol. 14: 136-145. (Pubitemid 34085118)
    • (2002) Current Opinion in Immunology , vol.14 , Issue.1 , pp. 136-145
    • Greenberg, S.1    Grinstein, S.2
  • 3
    • 58049209832 scopus 로고    scopus 로고
    • Regulatory molecules required for nucleotidesensing Toll-like receptors
    • Saitoh, S., and K. Miyake. 2009. Regulatory molecules required for nucleotidesensing Toll-like receptors. Immunol. Rev. 227: 32-43.
    • (2009) Immunol. Rev. , vol.227 , pp. 32-43
    • Saitoh, S.1    Miyake, K.2
  • 4
    • 77951260924 scopus 로고    scopus 로고
    • The role of pattern-recognition receptors in innate immunity: Update on Toll-like receptors
    • Kawai, T., and S. Akira. 2010. The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors. Nat. Immunol. 11: 373-384.
    • (2010) Nat. Immunol. , vol.11 , pp. 373-384
    • Kawai, T.1    Akira, S.2
  • 5
    • 0033592748 scopus 로고    scopus 로고
    • The Toll-like receptor 2 is recruited to macrophage phagosomes and discriminates between pathogens
    • Underhill, D. M., A. Ozinsky, A. M. Hajjar, A. Stevens, C. B. Wilson, M. Bassetti, and A. Aderem. 1999. The Toll-like receptor 2 is recruited to macrophage phagosomes and discriminates between pathogens. Nature 401: 811-815.
    • (1999) Nature , vol.401 , pp. 811-815
    • Underhill, D.M.1    Ozinsky, A.2    Hajjar, A.M.3    Stevens, A.4    Wilson, C.B.5    Bassetti, M.6    Aderem, A.7
  • 6
    • 48549102504 scopus 로고    scopus 로고
    • NOD-like receptors (NLRs): Bona fide intracellular microbial sensors
    • Shaw, M. H., T. Reimer, Y. G. Kim, and G. Nuñez. 2008. NOD-like receptors (NLRs): bona fide intracellular microbial sensors. Curr. Opin. Immunol. 20: 377-382.
    • (2008) Curr. Opin. Immunol. , vol.20 , pp. 377-382
    • Shaw, M.H.1    Reimer, T.2    Kim, Y.G.3    Nuñez, G.4
  • 9
    • 64249166480 scopus 로고    scopus 로고
    • Clathrin- And dynamin-dependent endocytic pathway regulates muramyl dipeptide internalization and NOD2 activation
    • Marina-García, N., L. Franchi, Y. G. Kim, Y. Hu, D. E. Smith, G. J. Boons, and G. Núñez. 2009. Clathrin- and dynamin-dependent endocytic pathway regulates muramyl dipeptide internalization and NOD2 activation. J. Immunol. 182: 4321-4327.
    • (2009) J. Immunol. , vol.182 , pp. 4321-4327
    • Marina-García, N.1    Franchi, L.2    Kim, Y.G.3    Hu, Y.4    Smith, D.E.5    Boons, G.J.6    Núñez, G.7
  • 10
    • 0034669910 scopus 로고    scopus 로고
    • Cutting edge: TLR2-deficient and MyD88-deficient mice are highly susceptible to Staphylococcus aureus infection
    • Takeuchi, O., K. Hoshino, and S. Akira. 2000. Cutting edge: TLR2-deficient and MyD88-deficient mice are highly susceptible to Staphylococcus aureus infection. J. Immunol. 165: 5392-5396.
    • (2000) J. Immunol. , vol.165 , pp. 5392-5396
    • Takeuchi, O.1    Hoshino, K.2    Akira, S.3
  • 14
  • 15
    • 13444282403 scopus 로고    scopus 로고
    • Why are pathogenic staphylococci so lysozyme resistant? The peptidoglycan O-acetyltransferase OatA is the major determinant for lysozyme resistance of Staphylococcus aureus
    • DOI 10.1111/j.1365-2958.2004.04446.x
    • Bera, A., S. Herbert, A. Jakob, W. Vollmer, and F. Götz. 2005. Why are pathogenic staphylococci so lysozyme resistant? The peptidoglycan O-acetyltransferase OatA is the major determinant for lysozyme resistance of Staphylococcus aureus. Mol. Microbiol. 55: 778-787. (Pubitemid 40203693)
    • (2005) Molecular Microbiology , vol.55 , Issue.3 , pp. 778-787
    • Bera, A.1    Herbert, S.2    Jakob, A.3    Vollmer, W.4    Gotz, F.5
  • 16
    • 33747067166 scopus 로고    scopus 로고
    • A novel flow cytometric assay for measurement of in vivo pulmonary neutrophil phagocytosis
    • Vander Top, E. A., G. A. Perry, and M. J. Gentry-Nielsen. 2006. A novel flow cytometric assay for measurement of in vivo pulmonary neutrophil phagocytosis. BMC Microbiol. 6: 61.
    • (2006) BMC Microbiol. , vol.6 , pp. 61
    • Vander Top, E.A.1    Perry, G.A.2    Gentry-Nielsen, M.J.3
  • 17
    • 0038558249 scopus 로고    scopus 로고
    • Collaborative induction of inflammatory responses by dectin-1 and toll-like receptor 2
    • DOI 10.1084/jem.20021787
    • Gantner, B. N., R. M. Simmons, S. J. Canavera, S. Akira, and D. M. Underhill. 2003. Collaborative induction of inflammatory responses by dectin-1 and Tolllike receptor 2. J. Exp. Med. 197: 1107-1117. (Pubitemid 36570066)
    • (2003) Journal of Experimental Medicine , vol.197 , Issue.9 , pp. 1107-1117
    • Gantner, B.N.1    Simmons, R.M.2    Canavera, S.J.3    Akira, S.4    Underhill, D.M.5
  • 18
    • 0030829246 scopus 로고    scopus 로고
    • Inhibition of nitric oxide synthase (NOS) aggravates Staphylococcus aureus septicaemia and septic arthritis
    • Sakiniene, E., T. Bremell, and A. Tarkowski. 1997. Inhibition of nitric oxide synthase (NOS) aggravates Staphylococcus aureus septicaemia and septic arthritis. Clin. Exp. Immunol. 110: 370-377. (Pubitemid 27525266)
    • (1997) Clinical and Experimental Immunology , vol.110 , Issue.3 , pp. 370-377
    • Sakiniene, E.1    Bremell, T.2    Tarkowski, A.3
  • 19
    • 0031888612 scopus 로고    scopus 로고
    • Protective role of nitric oxide in Staphylococcus aureus infection in mice
    • Sasaki, S., T. Miura, S. Nishikawa, K. Yamada, M. Hirasue, and A. Nakane. 1998. Protective role of nitric oxide in Staphylococcus aureus infection in mice. Infect. Immun. 66: 1017-1022. (Pubitemid 28101141)
    • (1998) Infection and Immunity , vol.66 , Issue.3 , pp. 1017-1022
    • Sasaki, S.1    Miura, T.2    Nishikawa, S.3    Yamada, K.4    Hirasue, M.5    Nakane, A.6
  • 20
    • 33645789048 scopus 로고    scopus 로고
    • IFN-gamma enhances production of nitric oxide from macrophages via a mechanism that depends on nucleotide oligomerization domain-2
    • Tötemeyer, S., M. Sheppard, A. Lloyd, D. Roper, C. Dowson, D. Underhill, P. Murray, D. Maskell, and C. Bryant. 2006. IFN-gamma enhances production of nitric oxide from macrophages via a mechanism that depends on nucleotide oligomerization domain-2. J. Immunol. 176: 4804-4810.
    • (2006) J. Immunol. , vol.176 , pp. 4804-4810
    • Tötemeyer, S.1    Sheppard, M.2    Lloyd, A.3    Roper, D.4    Dowson, C.5    Underhill, D.6    Murray, P.7    Maskell, D.8    Bryant, C.9
  • 21
    • 0033574766 scopus 로고    scopus 로고
    • Deconstructing vancomycin
    • DOI 10.1126/science.284.5413.442
    • Walsh, C. 1999. Deconstructing vancomycin. Science 284: 442-443. (Pubitemid 29289605)
    • (1999) Science , vol.284 , Issue.5413 , pp. 442-443
    • Walsh, C.1
  • 22
    • 0031729229 scopus 로고    scopus 로고
    • The oxazolidinone linezolid inhibits initiation of protein synthesis in bacteria
    • Swaney, S. M., H. Aoki, M. C. Ganoza, and D. L. Shinabarger. 1998. The oxazolidinone linezolid inhibits initiation of protein synthesis in bacteria. Antimicrob. Agents Chemother. 42: 3251-3255. (Pubitemid 28553749)
    • (1998) Antimicrobial Agents and Chemotherapy , vol.42 , Issue.12 , pp. 3251-3255
    • Swaney, S.M.1    Aoki, H.2    Ganoza, M.C.3    Shinabarger, D.L.4
  • 23
    • 33846829441 scopus 로고    scopus 로고
    • Contribution of phagocytosis and intracellular sensing for cytokine production by Staphylococcus aureus-activated macrophages
    • DOI 10.1128/IAI.01199-06
    • Kapetanovic, R., M. A. Nahori, V. Balloy, C. Fitting, D. J. Philpott, J. M. Cavaillon, and M. Adib-Conquy. 2007. Contribution of phagocytosis and intracellular sensing for cytokine production by Staphylococcus aureus-activated macrophages. Infect. Immun. 75: 830-837. (Pubitemid 46203446)
    • (2007) Infection and Immunity , vol.75 , Issue.2 , pp. 830-837
    • Kapetanovic, R.1    Nahori, M.-A.2    Balloy, V.3    Fitting, C.4    Philpott, D.J.5    Cavaillon, J.-M.6    Adib-Conquy, M.7
  • 24
    • 77957827147 scopus 로고    scopus 로고
    • Natural Staphylococcus aureusderived peptidoglycan fragments activate NOD2 and act as potent costimulators of the innate immune system exclusively in the presence of TLR signals
    • Volz, T., M. Nega, J. Buschmann, S. Kaesler, E. Guenova, A. Peschel, M. Röcken, F. Götz, and T. Biedermann. 2010. Natural Staphylococcus aureusderived peptidoglycan fragments activate NOD2 and act as potent costimulators of the innate immune system exclusively in the presence of TLR signals. FASEB J. 24: 4089-4102.
    • (2010) FASEB J. , vol.24 , pp. 4089-4102
    • Volz, T.1    Nega, M.2    Buschmann, J.3    Kaesler, S.4    Guenova, E.5    Peschel, A.6    Röcken, M.7    Götz, F.8    Biedermann, T.9
  • 25
    • 0035140483 scopus 로고    scopus 로고
    • Evasion of host cell defense mechanisms by pathogenic bacteria
    • DOI 10.1016/S0952-7915(00)00179-5
    • Pieters, J. 2001. Evasion of host cell defense mechanisms by pathogenic bacteria. Curr. Opin. Immunol. 13: 37-44. (Pubitemid 32096958)
    • (2001) Current Opinion in Immunology , vol.13 , Issue.1 , pp. 37-44
    • Pieters, J.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.