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Role of pathogen-derived cell wall carbohydrates and prostaglandin E2 in immune response and suppression of fish immunity by the oomycete Saprolegnia parasitica.
Belmonte, Rodrigo; Wang, Tiehui; Duncan, Gary J; Skaar, Ida; Mélida, Hugo; Bulone, Vincent; van West, Pieter; Secombes, Christopher J.
Afiliação
  • Belmonte R; Scottish Fish Immunology Research Centre, Institute of Biological and Environmental Sciences, University of Aberdeen, Aberdeen, United Kingdom Aberdeen Oomycete Laboratory, Institute of Medical Sciences, University of Aberdeen, Aberdeen, United Kingdom.
  • Wang T; Scottish Fish Immunology Research Centre, Institute of Biological and Environmental Sciences, University of Aberdeen, Aberdeen, United Kingdom.
  • Duncan GJ; Mass Spectrometry Group, Rowett Institute of Nutrition and Health, University of Aberdeen, Aberdeen, United Kingdom.
  • Skaar I; Norwegian Veterinary Institute, Oslo, Norway.
  • Mélida H; Division of Glycoscience, School of Biotechnology, Royal Institute of Technology, Stockholm, Sweden.
  • Bulone V; Division of Glycoscience, School of Biotechnology, Royal Institute of Technology, Stockholm, Sweden.
  • van West P; Aberdeen Oomycete Laboratory, Institute of Medical Sciences, University of Aberdeen, Aberdeen, United Kingdom.
  • Secombes CJ; Scottish Fish Immunology Research Centre, Institute of Biological and Environmental Sciences, University of Aberdeen, Aberdeen, United Kingdom c.secombes@abdn.ac.uk.
Infect Immun ; 82(11): 4518-29, 2014 Nov.
Article em En | MEDLINE | ID: mdl-25114122
ABSTRACT
Saprolegnia parasitica is a freshwater oomycete that is capable of infecting several species of fin fish. Saprolegniosis, the disease caused by this microbe, has a substantial impact on Atlantic salmon aquaculture. No sustainable treatment against saprolegniosis is available, and little is known regarding the host response. In this study, we examined the immune response of Atlantic salmon to S. parasitica infection and to its cell wall carbohydrates. Saprolegnia triggers a strong inflammatory response in its host (i.e., induction of interleukin-1ß1 [IL-1ß1], IL-6, and tumor necrosis factor alpha), while severely suppressing the expression of genes associated with adaptive immunity in fish, through downregulation of T-helper cell cytokines, antigen presentation machinery, and immunoglobulins. Oomycete cell wall carbohydrates were recognized by fish leukocytes, triggering upregulation of genes involved in the inflammatory response, similar to what is observed during infection. Our data suggest that S. parasitica is capable of producing prostaglandin [corrected] E2 (PGE2) in vitro, a metabolite not previously shown to be produced by oomycetes, and two proteins with homology to vertebrate enzymes known to play a role in prostaglandin biosynthesis have been identified in the oomycete genome. Exogenous PGE2 was shown to increase the inflammatory response in fish leukocytes incubated with cell wall carbohydrates while suppressing genes involved in cellular immunity (gamma interferon [IFN-γ] and the IFN-γ-inducible protein [γ-IP]). Inhibition of S. parasitica zoospore germination and mycelial growth by two cyclooxygenase inhibitors (aspirin and indomethacin) also suggests that prostaglandins may be involved in oomycete development.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Carboidratos / Dinoprostona / Parede Celular / Oncorhynchus mykiss / Salmo salar / Saprolegnia / Doenças dos Peixes / Infecções Idioma: En Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Carboidratos / Dinoprostona / Parede Celular / Oncorhynchus mykiss / Salmo salar / Saprolegnia / Doenças dos Peixes / Infecções Idioma: En Ano de publicação: 2014 Tipo de documento: Article