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1.
PLoS Negl Trop Dis ; 14(10): e0008706, 2020 10.
Article de Anglais | MEDLINE | ID: mdl-33095767

RÉSUMÉ

Prostaglandins (PGs) are immuno-active lipids that mediate the immune response in invertebrates and vertebrates. In insects, PGs play a role on different physiological processes such as reproduction, ion transport and regulation of cellular immunity. However, it is unclear whether PGs play a role in invertebrate's humoral immunity, and, if so, which immune signaling pathways would be modulated by PGs. Here, we show that Aedes aegypti gut microbiota and Gram-negative bacteria challenge induces prostaglandin production sensitive to an irreversible inhibitor of the vertebrate cyclooxygenase, acetylsalicylic acid (ASA). ASA treatment reduced PG synthesis and is associated with decreased expression of components of the Toll and IMD immune pathways, thereby rendering mosquitoes more susceptible to both bacterial and viral infections. We also shown that a cytosolic phospholipase (PLAc), one of the upstream regulators of PG synthesis, is induced by the microbiota in the midgut after blood feeding. The knockdown of the PLAc decreased prostaglandin production and enhanced the replication of Dengue in the midgut. We conclude that in Ae. aegypti, PGs control the amplitude of the immune response to guarantee an efficient pathogen clearance.


Sujet(s)
Aedes/virologie , Virus de la dengue/physiologie , Immunité humorale , Prostaglandines/métabolisme , Aedes/immunologie , Animaux , Lignée cellulaire , Virus de la dengue/immunologie , Femelle , Régulation de l'expression des gènes codant pour des enzymes , Interactions hôte-pathogène , Phospholipases A2/génétique , Phospholipases A2/métabolisme , Prostaglandines/génétique
2.
PLoS One ; 7(10): e48170, 2012.
Article de Anglais | MEDLINE | ID: mdl-23118944

RÉSUMÉ

Phytomonas species are plant parasites of the family Trypanosomatidae, which are transmitted by phytophagous insects. Some Phytomonas species cause major agricultural damages. The hemipteran Oncopeltus fasciatus is natural and experimental host for several species of trypanosomatids, including Phytomonas spp. The invasion of the insect vectors' salivary glands is one of the most important events for the life cycle of Phytomonas species. In the present study, we show the binding of Phytomonas serpens at the external face of O. fasciatus salivary glands by means of scanning electron microscopy and the in vitro interaction of living parasites with total proteins from the salivary glands in ligand blotting assays. This binding occurs primarily through an interaction with a 130 kDa salivary gland protein. The mass spectrometry of the trypsin-digest of this protein matched 23% of human laminin-5 ß3 chain precursor sequence by 16 digested peptides. A protein sequence search through the transcriptome of O. fasciatus embryo showed a partial sequence with 51% similarity to human laminin ß3 subunit. Anti-human laminin-5 ß3 chain polyclonal antibodies recognized the 130 kDa protein by immunoblotting. The association of parasites with the salivary glands was strongly inhibited by human laminin-5, by the purified 130 kDa insect protein, and by polyclonal antibodies raised against the human laminin-5 ß3 chain. This is the first report demonstrating that a laminin-like molecule from the salivary gland of O. fasciatus acts as a receptor for Phytomonas binding. The results presented in this investigation are important findings that will support further studies that aim at developing new approaches to prevent the transmission of Phytomonas species from insects to plants and vice-versa.


Sujet(s)
Heteroptera/parasitologie , Protéines d'insecte/métabolisme , Vecteurs insectes/parasitologie , Laminine/métabolisme , Glandes salivaires/métabolisme , Trypanosomatina/physiologie , Séquence d'acides aminés , Animaux , Anticorps/pharmacologie , Molécules d'adhérence cellulaire/immunologie , Molécules d'adhérence cellulaire/pharmacologie , Interactions hôte-parasite/effets des médicaments et des substances chimiques , Humains , Protéines d'insecte/antagonistes et inhibiteurs , Protéines d'insecte/composition chimique , Laminine/antagonistes et inhibiteurs , Laminine/composition chimique , Données de séquences moléculaires , Maladies des plantes/parasitologie , Liaison aux protéines , Glandes salivaires/parasitologie , Glandes salivaires/ultrastructure , Alignement de séquences , Similitude de séquences d'acides aminés , Kalinin
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