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AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis

The sialotranscriptomes of Aedes aegypti revealed a transcript overexpressed in female salivary glands that codes a mature 7.8 kDa peptide. The peptide, specific to the Aedes genus, has a unique sequence, presents a putative secretory nature and its function is unknown. Here, we confirmed that the p...

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Autores principales: Lara, Priscila G., Esteves, Eliane, Sales-Campos, Helioswilton, Assis, Josiane B., Henrique, Maressa O., Barros, Michele S., Neto, Leila S., Silva, Pedro I., Martins, Joilson O., Cardoso, Cristina R. B., Ribeiro, José M. C., Sá-Nunes, Anderson
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8327214/
https://www.ncbi.nlm.nih.gov/pubmed/34349757
http://dx.doi.org/10.3389/fimmu.2021.681671
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author Lara, Priscila G.
Esteves, Eliane
Sales-Campos, Helioswilton
Assis, Josiane B.
Henrique, Maressa O.
Barros, Michele S.
Neto, Leila S.
Silva, Pedro I.
Martins, Joilson O.
Cardoso, Cristina R. B.
Ribeiro, José M. C.
Sá-Nunes, Anderson
author_facet Lara, Priscila G.
Esteves, Eliane
Sales-Campos, Helioswilton
Assis, Josiane B.
Henrique, Maressa O.
Barros, Michele S.
Neto, Leila S.
Silva, Pedro I.
Martins, Joilson O.
Cardoso, Cristina R. B.
Ribeiro, José M. C.
Sá-Nunes, Anderson
author_sort Lara, Priscila G.
collection PubMed
description The sialotranscriptomes of Aedes aegypti revealed a transcript overexpressed in female salivary glands that codes a mature 7.8 kDa peptide. The peptide, specific to the Aedes genus, has a unique sequence, presents a putative secretory nature and its function is unknown. Here, we confirmed that the peptide is highly expressed in the salivary glands of female mosquitoes when compared to the salivary glands of males, and its secretion in mosquito saliva is able to sensitize the vertebrate host by inducing the production of specific antibodies. The synthetic version of the peptide downmodulated nitric oxide production by activated peritoneal murine macrophages. The fractionation of a Ae. aegypti salivary preparation revealed that the fractions containing the naturally secreted peptide reproduced the nitric oxide downmodulation. The synthetic peptide also selectively interfered with cytokine production by murine macrophages, inhibiting the production of IL-6, IL-12p40 and CCL2 without affecting TNF-α or IL-10 production. Likewise, intracellular proteins associated with macrophage activation were also distinctively modulated: while iNOS and NF-κB p65 expression were diminished, IκBα and p38 MAPK expression did not change in the presence of the peptide. The anti-inflammatory properties of the synthetic peptide were tested in vivo on a dextran sulfate sodium-induced colitis model. The therapeutic administration of the Ae. aegypti peptide reduced the leukocytosis, macrophage activity and nitric oxide levels in the gut, as well as the expression of cytokines associated with the disease, resulting in amelioration of its clinical signs. Given its biological properties in vitro and in vivo, the molecule was termed Ae des-specific MOdulatory PEptide (AeMOPE-1). Thus, AeMOPE-1 is a novel mosquito-derived immunobiologic with potential to treat immune-mediated disorders.
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spelling pubmed-83272142021-08-03 AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis Lara, Priscila G. Esteves, Eliane Sales-Campos, Helioswilton Assis, Josiane B. Henrique, Maressa O. Barros, Michele S. Neto, Leila S. Silva, Pedro I. Martins, Joilson O. Cardoso, Cristina R. B. Ribeiro, José M. C. Sá-Nunes, Anderson Front Immunol Immunology The sialotranscriptomes of Aedes aegypti revealed a transcript overexpressed in female salivary glands that codes a mature 7.8 kDa peptide. The peptide, specific to the Aedes genus, has a unique sequence, presents a putative secretory nature and its function is unknown. Here, we confirmed that the peptide is highly expressed in the salivary glands of female mosquitoes when compared to the salivary glands of males, and its secretion in mosquito saliva is able to sensitize the vertebrate host by inducing the production of specific antibodies. The synthetic version of the peptide downmodulated nitric oxide production by activated peritoneal murine macrophages. The fractionation of a Ae. aegypti salivary preparation revealed that the fractions containing the naturally secreted peptide reproduced the nitric oxide downmodulation. The synthetic peptide also selectively interfered with cytokine production by murine macrophages, inhibiting the production of IL-6, IL-12p40 and CCL2 without affecting TNF-α or IL-10 production. Likewise, intracellular proteins associated with macrophage activation were also distinctively modulated: while iNOS and NF-κB p65 expression were diminished, IκBα and p38 MAPK expression did not change in the presence of the peptide. The anti-inflammatory properties of the synthetic peptide were tested in vivo on a dextran sulfate sodium-induced colitis model. The therapeutic administration of the Ae. aegypti peptide reduced the leukocytosis, macrophage activity and nitric oxide levels in the gut, as well as the expression of cytokines associated with the disease, resulting in amelioration of its clinical signs. Given its biological properties in vitro and in vivo, the molecule was termed Ae des-specific MOdulatory PEptide (AeMOPE-1). Thus, AeMOPE-1 is a novel mosquito-derived immunobiologic with potential to treat immune-mediated disorders. Frontiers Media S.A. 2021-07-19 /pmc/articles/PMC8327214/ /pubmed/34349757 http://dx.doi.org/10.3389/fimmu.2021.681671 Text en Copyright © 2021 Lara, Esteves, Sales-Campos, Assis, Henrique, Barros, Neto, Silva, Martins, Cardoso, Ribeiro and Sá-Nunes https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Lara, Priscila G.
Esteves, Eliane
Sales-Campos, Helioswilton
Assis, Josiane B.
Henrique, Maressa O.
Barros, Michele S.
Neto, Leila S.
Silva, Pedro I.
Martins, Joilson O.
Cardoso, Cristina R. B.
Ribeiro, José M. C.
Sá-Nunes, Anderson
AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis
title AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis
title_full AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis
title_fullStr AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis
title_full_unstemmed AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis
title_short AeMOPE-1, a Novel Salivary Peptide From Aedes aegypti, Selectively Modulates Activation of Murine Macrophages and Ameliorates Experimental Colitis
title_sort aemope-1, a novel salivary peptide from aedes aegypti, selectively modulates activation of murine macrophages and ameliorates experimental colitis
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8327214/
https://www.ncbi.nlm.nih.gov/pubmed/34349757
http://dx.doi.org/10.3389/fimmu.2021.681671
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