Browse > Article
http://dx.doi.org/10.4110/in.2015.15.2.73

Caspase-1 Independent Viral Clearance and Adaptive Immunity Against Mucosal Respiratory Syncytial Virus Infection  

Shim, Ye Ri (Laboratory of Host Defenses, Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology)
Lee, Heung Kyu (Laboratory of Host Defenses, Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology)
Publication Information
IMMUNE NETWORK / v.15, no.2, 2015 , pp. 73-82 More about this Journal
Abstract
Respiratory syncytial virus (RSV) infection is recognized by the innate immune system through Toll like receptors (TLRs) and retinoic acid inducible gene I. These pathways lead to the activation of type I interferons and resistance to infection. In contrast to TLRs, very few studies have examined the role of NOD-like receptors in viral recognition and induction of adaptive immune responses to RSV. Caspase-1 plays an essential role in the immune response via the maturation of the proinflammatory cytokines IL-$1{\beta}$ and IL-18. However, the role of caspase-1 in RSV infection in vivo is unknown. We demonstrate that RSV infection induces IL-$1{\beta}$ secretion and that caspase-1 deficiency in bone marrow derived dendritic cells leads to defective IL-$1{\beta}$ production, while normal RSV viral clearance and T cell responses are observed in caspase-1 deficient mice following respiratory infection with RSV. The frequencies of IFN-${\gamma}$ producing or RSV specific T cells in lungs from caspase-1 deficient mice are not impaired. In addition, we demonstrate that caspase-1 deficient neonatal or young mice also exhibit normal immune responses. Furthermore, we find that IL-1R deficient mice infected with RSV exhibit normal Th1 and cytotoxic T lymphocytes (CTL) immune responses. Collectively, these results demonstrate that in contrast to TLR pathways, caspase-1 might not play a central role in the induction of Th1 and CTL immune responses to RSV.
Keywords
RSV; Caspase-1; IL-$1{\beta}$; Adaptive immunity;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 Takeuchi, R., H. Tsutsumi, M. Osaki, K. Haseyama, N. Mizue, and S. Chiba. 1998. Respiratory syncytial virus infection of human alveolar epithelial cells enhances interferon regulatory factor 1 and interleukin-1beta-converting enzyme gene expression but does not cause apoptosis. J. Virol. 72: 4498-4502.
2 Takeuchi, R., H. Tsutsumi, M. Osaki, S. Sone, S. Imai, and S. Chiba. 1998. Respiratory syncytial virus infection of neonatal monocytes stimulates synthesis of interferon regulatory factor 1 and interleukin-1beta (IL-1beta)-converting enzyme and secretion of IL-1beta. J. Virol. 72: 837-840.
3 Segovia, J., A. Sabbah, V. Mgbemena, S. Y. Tsai, T. H. Chang, M. T. Berton, I. R. Morris, I. C. Allen, J. P. Ting, and S. Bose. 2012. TLR2/MyD88/NF-kappaB pathway, reactive oxygen species, potassium efflux activates NLRP3/ASC inflammasome during respiratory syncytial virus infection. PLoS One 7: e29695.   DOI
4 Glaccum, M. B., K. L. Stocking, K. Charrier, J. L. Smith, C. R. Willis, C. Maliszewski, D. J. Livingston, J. J. Peschon, and P. J. Morrissey. 1997. Phenotypic and functional characterization of mice that lack the type I receptor for IL-1. J. Immunol. 159: 3364-3371.
5 Kim, S., D. H. Joo, J. B. Lee, B. S. Shim, I. S. Cheon, J. E. Jang, H. H. Song, K. H. Kim, M. K. Song, and J. Chang. 2012. Dual role of respiratory syncytial virus glycoprotein fragment as a mucosal immunogen and chemotactic adjuvant. PLoS One 7: e32226.   DOI
6 Dinarello, C. A. 1996. Biologic basis for interleukin-1 in disease. Blood 87: 2095-2147.
7 Weber, A., P. Wasiliew, and M. Kracht. 2010. Interleukin-1 (IL-1) pathway. Sci. Signal. 3: cm1.
8 Pang, I. K., and A. Iwasaki. 2011. Inflammasomes as mediators of immunity against influenza virus. Trends Immunol. 32: 34-41.   DOI
9 Taylor, G., E. J. Stott, M. Hughes, and A. P. Collins. 1984. Respiratory syncytial virus infection in mice. Infect. Immun. 43: 649-655.
10 Graham, B. S., L. A. Bunton, P. F. Wright, and D. T. Karzon. 1991. Role of T lymphocyte subsets in the pathogenesis of primary infection and rechallenge with respiratory syncytial virus in mice. J. Clin. Invest. 88: 1026-1033.   DOI
11 Ostler, T., W. Davidson, and S. Ehl. 2002. Virus clearance and immunopathology by $CD8^+$ T cells during infection with respiratory syncytial virus are mediated by IFN-${\gamma}$. Eur. J. Immunol. 32: 2117-2123.   DOI
12 Takeda, K., H. Tsutsui, T. Yoshimoto, O. Adachi, N. Yoshida, T. Kishimoto, H. Okamura, K. Nakanishi, and S. Akira. 1998. Defective NK cell activity and Th1 response in IL-18-deficient mice. Immunity 8: 383-390.   DOI
13 Ghayur, T., S. Banerjee, M. Hugunin, D. Butler, L. Herzog, A. Carter, L. Quintal, L. Sekut, R. Talanian, M. Paskind, W. Wong, R. Kamen, D. Tracey, and H. Allen. 1997. Caspase-1 processes IFN-${\gamma}$-inducing factor and regulates LPS-induced IFN-${\gamma}$ production. Nature 386: 619-623.   DOI
14 Adkins, B., C. Leclerc, and S. Marshall-Clarke. 2004. Neonatal adaptive immunity comes of age. Nat. Rev. Immunol. 4: 553-564.   DOI
15 Cormier, S. A., D. You, and S. Honnegowda. 2010. The use of a neonatal mouse model to study respiratory syncytial virus infections. Expert Rev. Anti. Infect. Ther. 8: 1371-1380.   DOI
16 Sollberger, G., G. E. Strittmatter, M. Garstkiewicz, J. Sand, and H. D. Beer. 2014. Caspase-1: the inflammasome and beyond. Innate. Immun. 20: 115-125.   DOI
17 Collins, P. L. 1991. The molecular biology of human respiratory syncytial virus (RSV) of the genus Pneumovirus. Springer. Plenum Press, New York. p. 103-162.
18 Collins, P. L., and B. S. Graham. 2008. Viral and host factors in human respiratory syncytial virus pathogenesis. J. Virol. 82: 2040-2055.   DOI
19 Falsey, A. R., P. A. Hennessey, M. A. Formica, C. Cox, and E. E. Walsh. 2005. Respiratory syncytial virus infection in elderly and high-risk adults. N. Engl. J. Med. 352: 1749-1759.   DOI
20 Case, C. L. 2011. Regulating caspase-1 during infection: roles of NLRs, AIM2, and ASC. Yale J. Biol. Med. 84: 333-343.
21 Kim, T. H., and H. K. Lee. 2014. Differential roles of lung dendritic cell subsets against respiratory virus infection. Immune Netw. 14: 128-137.   DOI
22 Dinarello, C. A. 2009. Immunological and inflammatory functions of the interleukin-1 family. Annu. Rev. Immunol. 27: 519-550.   DOI
23 Kim, T. H., and H. K. Lee. 2014. Innate immune recognition of respiratory syncytial virus infection. BMB Rrep. 47: 184-191.   DOI
24 Franchi, L., T. Eigenbrod, R. Munoz-Planillo, and G. Nunez. 2009. The inflammasome: a caspase-1-activation platform that regulates immune responses and disease pathogenesis. Nat. Immunol. 10: 241-247.
25 Arend, W. P., G. Palmer, and C. Gabay. 2008. IL-1, IL-18, and IL-33 families of cytokines. Immunol. Rev. 223: 20-38.   DOI
26 Allen, I. C., M. A. Scull, C. B. Moore, E. K. Holl, E. Elvania-TeKippe, D. J. Taxman, E. H. Guthrie, R. J. Pickles, and J. P. Ting. 2009. The NLRP3 inflammasome mediates in vivo innate immunity to influenza A virus through recognition of viral RNA. Immunity 30: 556-565.   DOI
27 Thomas, P. G., P. Dash, J. R. Aldridge, Jr., A. H. Ellebedy, C. Reynolds, A. J. Funk, W. J. Martin, M. Lamkanfi, R. J. Webby, K. L. Boyd, P. C. Doherty, and T. D. Kanneganti. 2009. The intracellular sensor NLRP3 mediates key innate and healing responses to influenza A virus via the regulation of caspase-1. Immunity 30: 566-575.   DOI
28 Miao, E. A., I. A. Leaf, P. M. Treuting, D. P. Mao, M. Dors, A. Sarkar, S. E. Warren, M. D. Wewers, and A. Aderem. 2010. Caspase-1-induced pyroptosis is an innate immune effector mechanism against intracellular bacteria. Nat. Immunol. 11: 1136-1142.   DOI
29 Ichinohe, T., H. K. Lee, Y. Ogura, R. Flavell, and A. Iwasaki. 2009. Inflammasome recognition of influenza virus is essential for adaptive immune responses. J. Exp. Med. 206: 79-87.   DOI
30 Ichinohe, T., I. K. Pang, and A. Iwasaki. 2010. Influenza virus activates inflammasomes via its intracellular M2 ion channel. Nat. Immunol. 11: 404-410.
31 Kuida, K., J. A. Lippke, G. Ku, M. W. Harding, D. J. Livingston, M. S. Su, and R. A. Flavell. 1995. Altered cytokine export and apoptosis in mice deficient in interleukin-1 beta converting enzyme. Science 267: 2000-2003.   DOI
32 Fang, R., K. Tsuchiya, I. Kawamura, Y. Shen, H. Hara, S. Sakai, T. Yamamoto, T. Fernandes-Alnemri, R. Yang, E. Hernandez-Cuellar, S. R. Dewamitta, Y. Xu, H. Qu, E. S. Alnemri, and M. Mitsuyama. 2011. Critical roles of ASC inflammasomes in caspase-1 activation and host innate resistance to Streptococcus pneumoniae infection. J. Immunol. 187: 4890-4899.   DOI