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Immunology, Health & Disease

Inductive expression of the NOD1 signalling pathway in chickens infected with Salmonella pullorum

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Pages 242-250 | Received 13 Jul 2016, Accepted 13 Dec 2016, Published online: 17 Mar 2017

References

  • Barrow, P.A. & Freitas Neto, O.C. (2011) Pullorum disease and fowl typhoid–new thoughts on old diseases: a review. Avian Patholology, 40 (1): 1–13. doi:10.1080/03079457.2010.542575 ​​​​​​​​​
  • Bertin, J., Nir, W.J., Fischer, C.M., Tayber, O.V., Errada, P.R., Grant, J.R., Keilty, J.J., Gosselin, M.L., Robison, K.E., Wong, G.H., Glucksmann, M.A. & DiStefano, P.S. (1999) Human CARD4 protein is a novel CED-4/Apaf-1 cell death family member that activates NF-kappaB. Journal of Biological Chemistry, 274 (19): 12955–12958. doi:10.1074/jbc.274.19.12955
  • Brahma, B., Kumar, S., De, B.C., Mishra, P., Patra, M.C., Gaur, D., Chopra, M., Gautam, D., Mahanty, S., Malik, H., Malakar, D., Datta, T.K. & De, S. (2015) Comparative genomic analysis of buffalo (Bubalus bubalis) NOD1 and NOD2 receptors and their functional role in in-vitro cellular immune response. PLoS One, 10 (3): e0119178. doi:10.1371/journal.pone.0119178
  • Cardenas, I., Mulla, M.J., Myrtolli, K., Sfakianaki, A.K., Norwitz, E.R., Tadesse, S., Guller, S. & Abrahams, V.M. (2011) Nod1 activation by bacterial iE-DAP induces maternal-fetal inflammation and preterm labor. Journal of Immunology, 187 (2): 980–986. doi:10.4049/jimmunol.1100578
  • Chamaillard, M., Hashimoto, M., Horie, Y., Masumoto, J., Qiu, S., Saab, L., Ogura, Y., Kawasaki, A., Fukase, K., Kusumoto, S., Valvano, M.A., Foster, S.J., Mak, T.W., Nuñez, G. & Inohara, N. (2003) An essential role for NOD1 in host recognition of bacterial peptidoglycan containing diaminopimelic acid. Nature Immunology, 4 (7): 702–707. doi:10.1038/ni945
  • Chen, W.Q., Xu, Q.Q., Chang, M.X., Nie, P. & Peng, K.M. (2010) Molecular characterization and expression analysis of nuclear oligomerization domain proteins NOD1 and NOD2 in grass carp Ctenopharyngodon idella. Fish and Shellfish Immunology, 28 (1): 18–29. doi:10.1016/j.fsi.2009.09.012
  • Correa, R.G., Milutinovic, S. & Reed, J.C. (2012) Roles of NOD1 (NLRC1) and NOD2 (NLRC2) in innate immunity and inflammatory diseases. Bioscience Reports, 32 (6): 597–608. doi:10.1042/BSR20120055
  • Da Siliva Correia, J., Miranda, Y., Leonard, N., Hsu, J. & Ulevitch, R.J. (2007) Regulation of NOD1-mediated signaling pathways. Cell Death and Differentiation, 14 (4): 830–839. doi:10.1038/sj.cdd.4402070
  • Da Silva Correia, J., Miranda, Y., Austin-Brown, N., Hsu, J., Mathison, J., Xiang, R., Zhou, H., Li, Q., Han, J. & Ulevitch, R.J. (2006) NOD1-dependent control of tumor growth. Proceedings of the National Academy of Sciences of the United States of America, 103 (6): 1840–1845. doi:10.1073/pnas.0509228103
  • Franchi, L., Warner, N., Viani, K. & Nunz, G. (2009) Function of Nod-like receptors in microbial recognition and host defense. Immunological Reviews, 227 (1): 106–128. doi:10.1111/imr.2008.227.issue-1
  • Geddes, K., Rubino, S., Streutker, C., Cho, J.H., Magalhaes, J.G., Le Bourhis, L., Selvanantham, T., Girardin, S.E. & Philpott, D.J. (2010) Nod1 and Nod2 regulation of inflammation in the Salmonella colitis model. Infection and Immunity, 78 (12): 5107–5115. doi:10.1128/IAI.00759-10
  • Girardin, S.E., Boneca, I.G., Carneiro, L.A., Antignac, A., Jéehanno, M., Viala, J., Tedin, K., Taha, M.K., Labigne, A., Zähringer, U., Coyle, A.J., DiStefano, P.S., Bertin, J., Sansonetti, P.J. & Philpott, D.J. (2003) NOD1 detects a unique muropeptide from gram-negative bacterial peptidoglycan. Science, 300 (5625): 1584–1587. doi:10.1126/science.1084677
  • Hasegawa, M., Fujimoto, Y., Lucas, P.C., Nakano, H., Fukase, K., Nunez, G. & Inohara, N. (2008) A critical role of RICK/RIP2 polyubiquitination in Nod-induced NF-kappaB activation. EMBO Journal, 27: 373–383. doi:10.1038/sj.emboj.7601962
  • Ikeda, T., Honjo, K., Hirota, Y. & Onodera, T. (1993) Isolation of the chicken NF-kappa B p65 subunit-encoding cDNA and characterization of its products. Gene, 133 (2): 237–242. doi:10.1016/0378-1119(93)90645-J
  • Inohara, N., Del Peso, L., Koseki, T., Chen, S. & Nunez, G. (1998) RICK, a novel protein kinase containing a caspase recruitment domain, interacts with CLARP and regulates CD95-mediated apoptosis. Jounal of Biological Chemistry, 273 (20): 12296–12300. doi:10.1074/jbc.273.20.12296
  • Inohara, N., Koseki, T., Del Peso, L., Hu, Y., Yee, C., Chen, S., Carrio, R., Merino, J., Liu, D., Ni, J. & Nunez, G. (1999) NOD1, an Apaf-1-like activator of caspase-9 and nuclear factor-kappaB. Journal of Biological Chemistry, 274 (21): 14560–14567. doi:10.1074/jbc.274.21.14560
  • Inohara, N. & Nunez, G. (2003) NODs: intracellular proteins involved in inflammation and apoptosis. Nature Review Immunolology, 3 (5): 371–382. doi:10.1038/nri1086
  • Inohara, N., Chamaillard M., Mcdonald, C. & Nunez, G. (2005) NOD-LRR proteins: role in host-microbial interactions and inflammatory disease. Annual Review of Biochemistry, 74: 355–383. doi:10.1146/annurev.biochem.74.082803.133347
  • Jacobs, S.R. & Damania, B. (2012) NLRs, inflammasomes and viral infection. Journal of Leukocyte Biology, 92 (3): 469–477. doi:10.1189/jlb.0312132
  • Jia, H., Li, G., Li, J., Tian, Y., Wang, D., Shen, J., Tao, Z., Xu, J. & Lu, L. (2012) Cloning, expression and bioinformatics analysis of the duck TLR 4 gene. British Poultry Science, 53 (2): 190–197. doi:10.1080/00071668.2012.674208
  • Jiang, Y., Chen, C., Li, Z., Guo, W., Gegner, J.A., Lin, S. & Han, J. (1996) Characterization of the structure and function of a new mitogen-activated protein kinase (p38beta). Jounal of Biological Chemistry, 271 (30): 17920–17926. doi:10.1074/jbc.271.30.17920
  • Juarez, E., Carranza, C., Hernandez-Sánchez, F., Loyola, E., Escobedo, D., Leon-Contreras, J.C., Hernandez-Pando, R., Torres, M. & Sada, E. (2014) Nucleotide-oligomerizing domain-1 (NOD1) receptor activation induces pro-inflammatory responses and autophagy in human alveolar macrophages. BMC Pulmonary Medicine, 14: 152. doi:10.1186/1471-2466-14-152
  • Kaiser, P., Underwood, G. & Davison, F. (2003) Differential cytokine responses following Marek’s disease virus infection of chickens differing in resistance to Marek’s disease. Journal of Virology, 77 (1): 762–768. doi:10.1128/JVI.77.1.762-768.2003
  • Kawai, T. & Akira, S. (2009) The roles of TLRs, RLRs and NLRs in pathogen recognition. International Immunology, 21 (4): 317–337. doi:10.1093/intimm/dxp017
  • Kersse, K., Bertrand, M.J., Lamkanfi, M. & Vandenabeele, P. (2011) NOD-like receptors and the innate immune system: coping with danger, damage and death. Cytokine and Growth Factor Reviews, 22 (5–6): 257–276. doi:10.1016/j.cytogfr.2011.09.003
  • Kim, J.G., Lee, S.J. & Kagnoff, M.F. (2004) NOD1 is an essential signal transducer in intestinal epithelial cells infected with bacteria that avoid recognition by toll-like receptors. Infection and Immunity, 72 (3): 1487–1495. doi:10.1128/IAI.72.3.1487-1495.2004
  • Kim, M.L., Jeong, H.G., Kasper, C.A. & Arrieumerlou, C. (2010) IKKα contributes to canonical NF-kB activation downstream of NOD1-mediated peptidoglycan recognition. Plos One, 5 (10): e15371. doi:10.1371/journal.pone.0015371
  • Koizumi, Y., Toma, C., Higa, N., Nohara, T., Nakasone, N. & Suzuki, T. (2012) Inflammasome activation via intracellular NLRs triggered by bacterial infection. Cellular Microbiology, 14 (2): 149–154. doi:10.1111/cmi.2012.14.issue-2
  • Koppe, U., Suttorp, N. & Opitz, B. (2012) Recognition of Streptococcus pneumoniae by the innate immune system. Cellular Microbioliology, 14 (4): 460–466. doi:10.1111/j.1462-5822.2011.01746.x
  • Marriott, I., Rati, D.M., McCall, S.H. & Tranguch, S.L. (2005) Induction of NOD1 and NOD2 intracellular pattern recognition receptors in murine osteoblasts following bacterial challenge. Infection and Immunity, 73 (5): 2967–2973. doi:10.1128/IAI.73.5.2967-2973.2005
  • Masumoto, J., Yang, K., Varambally, S., Hasegawa, M., Tomlins, S.A., Qiu, S., Fujimoto, Y., Kawasaki, A., Foster, S.J., Horie, Y., Mak, T.W., Nunez, G., Chinnaiyan, A.M., Fukase, K. & Inohara, N. (2006) NOD1 acts as an intracellular receptor to stimulate chemokine production and neutrophil recruitment in vivo. Journal of Experimental Medicine, 203 (1): 203–213. doi:10.1084/jem.20051229
  • Mccarthy, J.V., Ni, J. & Dixit, V.M. (1998) RIP2 is a novel NF-kappaB-activating and cell death-inducing kinase. Jounal of Biological Chemistry, 273 (27): 16968–16975. doi:10.1074/jbc.273.27.16968
  • Mercier, B.C., Ventre, E., Fogeron, M.L., Debaud, A.L., Tomkowiak, M., Marv-El, J. & Bonnefoy, N. (2012) NOD1 cooperates with TLR2 to enhance T cell receptor-mediated activation in CD8 T cells. PLoS One, 7 (7): e42170. doi:10.1371/journal.pone.0042170
  • Kee Stra, A.M., Winter, M.G., Klein-Douwel, D., Xavier, M.N., Winter, S.E., Kim, A., Tsolis, R.M. & Baumler, A.J. (2011) A Salmonella virulence factor activates the NOD1/NOD2 signalling pathway. MBio, 2 (6): Pii:e00266-11.
  • Opitz, B., Puschel, A., Beermann, W., Hocke, A.C., Forster, S., Schmeck, B., Van Laak, V., Chakraborty, T., Suttorp, N. & Hippenstiel, S. (2006) Listeria monocytogenes activated p38 MAPK and induced IL-8 secretion in a nucleotide-binding oligomerization domain 1-dependent manner in endothelial cells. Journal of Immunology, 176 (1): 484–490. doi:10.4049/jimmunol.176.1.484
  • Pfaffl, M.W. (2001) A new mathematical model for relative quantification in real-time RT-PCR. Nucleic Acids Research, 29 (9): e45. doi:10.1093/nar/29.9.e45
  • Ramasamy, K.T., Verma, P. & Reddy, M.R. (2014) Toll-like receptors gene expression in the gastrointestinal tract of Salmonella serovar Pullorum-infected broiler chicken. Applied Biochemistry and Biotechnology, 173 (2): 356–364. doi:10.1007/s12010-014-0864-8
  • Robertson, S.J. & Girardin, S.E. (2013) Nod-like receptors in intestinal host defense: controlling pathogens, the microbiota, or both? Current Opinion in Gastroenterology, 29 (1): 15–22. doi:10.1097/MOG.0b013e32835a68ea
  • Rubino, S.J., Selvanantham, T., Girardin, S.E. & Philpott, D.J. (2012) Nod-like receptors in the control of intestinal inflammation. Current Opinion Immunology, 24 (4): 398–404. doi:10.1016/j.coi.2012.04.010
  • Stern, C.D. (2005) The chick; a great model system becomes even greater. Developmental Cell, 8 (1): 9–17. doi:10.1016/S1534-5807(04)00425-3
  • Swain, B., Basu, M. & Samanta, M. (2013) NOD1 and NOD2 receptors in mrigal (Cirrhinus mrigala): inductive expression and downstream signalling in ligand stimulation and bacterial infections. Journal of Biosciences, 38 (3): 533–548. doi:10.1007/s12038-013-9330-y
  • Tan, X., Li, W.W., Guo, J. & Zhou, J.Y. (2012) Down-regulation of NOD1 in neutrophils of periparturient dairy cows. Veterinary Immunology Immunopathology, 150 (1–2): 133–139. doi:10.1016/j.vetimm.2012.09.004
  • Ting, J.P. & Davis, B.K. (2005) CATERPILLER: a novel gene family important in immunity, cell death and diseases. Annual Review of Biochemistry, 23: 387–414.
  • Tohno, M., Shimazu, T., Aso, H., Uehara, A., Takada, H., Kawasaki, A., Fujimoto, Y., Fukase, K., Saito, T. & Kitazawa, H. (2008) Molecular cloning and functional characterization of porcine nucleotide-binding oligomerization domain-1 (NOD1) recognizing minimum agonists, meso-diaminopimelic acid and meso-lanthionine. Molecular Immunolgy, 45 (6): 1807–1817. doi:10.1016/j.molimm.2007.09.029
  • Travassos, L.H., Carneiro, L.A., Girardin, S.E., Boneca, I.G., Lemos, R., Bozza, M.T., Domingues, R.C., Coyle, A.J., Bertin, J., Philpott, D.J. & Plotkowski, M.C. (2005) NOD1 participates in the innate immune response to Pseudomonas aeruginosa. Journal of Biological Chemistry, 280 (44): 36714–36718. doi:10.1074/jbc.M501649200
  • Uehara, A., Sugawara, Y., Kurata, S., Fujimoto, Y., Fukase, K., Kusumoto, S., Satta, Y., Sasano, T., Sugawara, S. & Takada, H. (2005) Chemically synthesized pathogen-associated molecular patterns increase the expression of peptidoglycan recognition proteins via toll-like receptors, NOD1 and NOD2 in human oral epithelial cells. Cellular Microbiology, 7 (5): 675–686. doi:10.1111/cmi.2005.7.issue-5
  • Uehara, A., Fujimoto, Y., Fukase, K. & Takada, H. (2007) Various human epithelial cells express functional Toll-like receptors, NOD1 and NOD2 to produce anti-microbial peptides, but not proinflammatory cytokines. Molecular Immunology, 44 (12): 3100–3111. doi:10.1016/j.molimm.2007.02.007
  • Uematsu, S. & Akira, S. (2006) Innate immune recognition of viral infection. Uirusu, 56 (1): 1–8. doi:10.2222/jsv.56.1
  • Zhou, S., Yu, P., Guan, L., Xing, A., Liu, S., Xiong, Q. & Peng, B. (2013) NOD1 expression elicited by iE-DAP in first trimester human trophoblast cells and its potential role in infection-associated inflammation. European Journal of Obstetrics & Gynecolo- Gy and Reproductive Biology, 170 (2): 318–323. doi:10.1016/j.ejogrb.2013.04.011
  • Zilbauer, M., Dorrell, N., Elmi, A., Lindley, K.J., Schuller, S., Jones, H.E., Klein, N.J., Nunez, G., Wren, B.W. & Bajaj-Elliott, M. (2007) A major role for intestinal epithelial nucleotide oligomerization domain 1 (NOD1) in eliciting host bactericidal immune responses to Campylobacter jejuni. Cellular Microbiology, 9 (10): 2404–2416. doi:10.1111/j.1462-5822.2007.00969.x
  • Zimin, A.V., Delcher, A.L., Florea, L., Kelley, D.R., Schatz, M.C., Puiu, D., Hanrahan, F., Pertea, G., Van Tassell, C.P., Sonstegard, T.S., Marcais, G., Roberts, M., Subramanian, P., Yorke, J.A. & Salzberg, S.L. (2009) A whole- genome assembly of the domestic cow, Bos taurus. Genome Biology, 10 (4): R42. doi:10.1186/gb-2009-10-4-r42

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