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1.
Genes (Basel) ; 10(7)2019 06 26.
Artigo em Inglês | MEDLINE | ID: mdl-31248009

RESUMO

Sponges, which are in close contact with numerous bacteria in prey/predator, symbiotic and pathogenic relationships, must provide an appropriate response in such situations. This starts with a discriminating recognition of the partner either by a physical contact or through secreted molecules or both. We investigated the expression of the Toll-like receptor, Caspase 3/7, Tumor Necrosis Factor receptor-associated factor 6, Bcl-2 homology protein-2 and macrophage expressed genes of axenic sponge cells in the presence of a symbiotic bacterium (Endozoicomonas sp. Hex311), a pathogen bacterium (Pseudoalteromonas sp. 1A1), their exoproducts and lipopolysaccharides. The vast majority of answers are in line with what could be observed with the symbiotic bacterium. The pathogenic bacterium seems to profit from the eukaryotic cell: suppression of the production of the antibacterial compound, inhibition of the apoptosis caspase-dependent pathway, deregulation of bacterial recognition. This work contributes new scientific knowledge in the field of immunology and apoptosis in early branching metazoan harboring within its tissue and cells a large number of symbiotic bacteria.


Assuntos
Gammaproteobacteria/fisiologia , Pseudoalteromonas/fisiologia , Suberites/imunologia , Suberites/microbiologia , Simbiose , Animais , Apoptose/efeitos dos fármacos , Caspase 3/metabolismo , Caspase 7/metabolismo , Gammaproteobacteria/efeitos dos fármacos , Gammaproteobacteria/metabolismo , Imunidade , Lipopolissacarídeos/farmacologia , Macrófagos/imunologia , Proteínas Proto-Oncogênicas c-bcl-2/metabolismo , Pseudoalteromonas/efeitos dos fármacos , Pseudoalteromonas/metabolismo , Pseudoalteromonas/patogenicidade , Suberites/genética , Receptores Toll-Like/metabolismo , Peptídeos e Proteínas Associados a Receptores de Fatores de Necrose Tumoral/metabolismo
2.
Mar Drugs ; 13(8): 4985-5006, 2015 Aug 07.
Artigo em Inglês | MEDLINE | ID: mdl-26262625

RESUMO

Marine sponges harbor a rich bacterioflora with which they maintain close relationships. However, the way these animals make the distinction between bacteria which are consumed to meet their metabolic needs and opportunistic and commensal bacteria which are hosted is not elucidated. Among the elements participating in this discrimination, bacterial cell wall components such as lipopolysaccharides (LPS) could play a role. In the present study, we investigated the LPS chemical structure of two bacteria associated with the sponge Suberites domuncula: a commensal Endozoicomonas sp. and an opportunistic Pseudoalteromonas sp. Electrophoretic patterns indicated different LPS structures for these bacteria. The immunomodulatory lipid A was isolated after mild acetic acid hydrolysis. The electrospray ionization ion-trap mass spectra revealed monophosphorylated molecules corresponding to tetra- and pentaacylated structures with common structural features between the two strains. Despite peculiar structural characteristics, none of these two LPS influenced the expression of the macrophage-expressed gene S. domuncula unlike the Escherichia coli ones. Further research will have to include a larger number of genes to understand how this animal can distinguish between LPS with resembling structures and discriminate between bacteria associated with it.


Assuntos
Bactérias/imunologia , Lipopolissacarídeos/imunologia , Poríferos/imunologia , Poríferos/microbiologia , Suberites/imunologia , Suberites/microbiologia , Ácido Acético/imunologia , Animais , Parede Celular/imunologia , Expressão Gênica/imunologia , Hidrólise , Lipídeo A/imunologia , Macrófagos/imunologia , Filogenia
3.
J Biol Chem ; 280(30): 27949-59, 2005 Jul 29.
Artigo em Inglês | MEDLINE | ID: mdl-15923643

RESUMO

Sponges (phylum Porifera) are the phylogenetically oldest metazoa; as filter feeders, they are abundantly exposed to marine microorganisms. Here we present data indicating that the demosponge Suberites domuncula is provided with a recognition system for gram-negative bacteria. The lipopolysaccharide (LPS)-interacting protein was identified as a receptor on the sponge cell surface, which recognizes the bacterial endotoxin LPS. The cDNA was isolated, and the protein (Mr 49,937) was expressed. During binding to LPS, the protein dimerizes and interacts with MyD88, which was also identified and cloned. The sponge MyD88 (Mr 28,441) is composed of two protein interaction domains, a Toll/interleukin-1 receptor domain (found in MyD88 and in Toll-like receptors) and a death domain (present in MyD88 and interleukin-1 receptor-associated kinase). Northern blot experiments and in situ hybridization studies showed that after LPS treatment, the level of the LPS-interacting protein remains unchanged, whereas MyD88 is strongly up-regulated. A perforin-like molecule (Mr 74,171), the macrophage-expressed protein, was identified as an executing molecule of this pathway. This gene is highly expressed after LPS treatment, especially at the surfaces of the animals. The recombinant protein possesses biological activity and eliminates gram-negative bacteria; it is inactive against gram-positive bacteria. These data indicate that S. domuncula is provided with an innate immune system against gram-negative bacteria; the ligand LPS (a pathogen-associated molecular pattern) is recognized by the pattern recognition receptor (LPS-interacting protein), which interacts with MyD88. A signal transduction is established, which results in an elevated expression of MyD88 as well as of the macrophage-expressed protein as an executing protein.


Assuntos
Antígenos de Diferenciação/química , Glicoproteínas de Membrana/química , Receptores Imunológicos/química , Suberites/imunologia , Suberites/microbiologia , Proteínas Adaptadoras de Transdução de Sinal , Sequência de Aminoácidos , Animais , Northern Blotting , Western Blotting , Clonagem Molecular , Reagentes de Ligações Cruzadas/farmacologia , DNA Complementar/metabolismo , Dimerização , Fluoresceína-5-Isotiocianato/farmacologia , Biblioteca Gênica , Imuno-Histoquímica , Imunoprecipitação , Hibridização In Situ , Ligantes , Lipopolissacarídeos/química , Macrófagos/metabolismo , Modelos Biológicos , Dados de Sequência Molecular , Fator 88 de Diferenciação Mieloide , Perforina , Filogenia , Proteínas Citotóxicas Formadoras de Poros , Ligação Proteica , Estrutura Terciária de Proteína , RNA/química , Proteínas Recombinantes/química , Homologia de Sequência de Aminoácidos , Transdução de Sinais , Suberites/metabolismo , Regulação para Cima
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