A pathogenic nematode targets recognition proteins to avoid insect defenses.

Steinernemacarpocapsae is a nematode pathogenic in a wide variety of insect species. The great pathogenicity of this nematode has been ascribed to its ability to overcome the host immune response; however, little is known about the mechanisms involved in this process. The analysis of an expressed se...

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Main Authors: Duarte Toubarro, Mónica Martinez Avila, Rafael Montiel, Nelson Simões
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3787073?pdf=render
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spelling doaj-3256d364c61b4e6d815ef9390a7209762020-11-25T01:26:06ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0189e7569110.1371/journal.pone.0075691A pathogenic nematode targets recognition proteins to avoid insect defenses.Duarte ToubarroMónica Martinez AvilaRafael MontielNelson SimõesSteinernemacarpocapsae is a nematode pathogenic in a wide variety of insect species. The great pathogenicity of this nematode has been ascribed to its ability to overcome the host immune response; however, little is known about the mechanisms involved in this process. The analysis of an expressed sequence tags (EST) library in the nematode during the infective phase was performed and a highly abundant contig homologous to serine protease inhibitors was identified. In this work, we show that this contig is part of a 641-bp cDNA that encodes a BPTI-Kunitz family inhibitor (Sc-KU-4), which is up-regulated in the parasite during invasion and installation. Recombinant Sc-KU-4 protein was produced in Escherichia coli and shown to inhibit chymotrypsin and elastase activities in a dose-dependent manner by a competitive mechanism with Ki values of 1.8 nM and 2.6 nM, respectively. Sc-KU-4 also inhibited trypsin and thrombin activities to a lesser extent. Studies of the mode of action of Sc-KU-4 and its effects on insect defenses suggest that although Sc-KU-4 did not inhibit the activation of hemocytes or the formation of clotting fibers, it did inhibit hemocyte aggregation and the entrapment of foreign particles by fibers. Moreover, Sc-KU-4 avoided encapsulation and the deposition of clotting materials, which usually occurs in response to foreign particles. We show by protein-protein interaction that Sc-KU-4 targets recognition proteins of insect immune system such as masquerade-like and serine protease-like homologs. The interaction of Sc-KU-4 with these proteins explains the ability of the nematode to overcome host reactions and its large pathogenic spectrum, once these immune proteins are well conserved in insects. The discovery of this inhibitor targeting insect recognition proteins opens new avenues for the development of S. carpocapsae as a biological control agent and provides a new tool to study host-pathogen interactions.http://europepmc.org/articles/PMC3787073?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Duarte Toubarro
Mónica Martinez Avila
Rafael Montiel
Nelson Simões
spellingShingle Duarte Toubarro
Mónica Martinez Avila
Rafael Montiel
Nelson Simões
A pathogenic nematode targets recognition proteins to avoid insect defenses.
PLoS ONE
author_facet Duarte Toubarro
Mónica Martinez Avila
Rafael Montiel
Nelson Simões
author_sort Duarte Toubarro
title A pathogenic nematode targets recognition proteins to avoid insect defenses.
title_short A pathogenic nematode targets recognition proteins to avoid insect defenses.
title_full A pathogenic nematode targets recognition proteins to avoid insect defenses.
title_fullStr A pathogenic nematode targets recognition proteins to avoid insect defenses.
title_full_unstemmed A pathogenic nematode targets recognition proteins to avoid insect defenses.
title_sort pathogenic nematode targets recognition proteins to avoid insect defenses.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Steinernemacarpocapsae is a nematode pathogenic in a wide variety of insect species. The great pathogenicity of this nematode has been ascribed to its ability to overcome the host immune response; however, little is known about the mechanisms involved in this process. The analysis of an expressed sequence tags (EST) library in the nematode during the infective phase was performed and a highly abundant contig homologous to serine protease inhibitors was identified. In this work, we show that this contig is part of a 641-bp cDNA that encodes a BPTI-Kunitz family inhibitor (Sc-KU-4), which is up-regulated in the parasite during invasion and installation. Recombinant Sc-KU-4 protein was produced in Escherichia coli and shown to inhibit chymotrypsin and elastase activities in a dose-dependent manner by a competitive mechanism with Ki values of 1.8 nM and 2.6 nM, respectively. Sc-KU-4 also inhibited trypsin and thrombin activities to a lesser extent. Studies of the mode of action of Sc-KU-4 and its effects on insect defenses suggest that although Sc-KU-4 did not inhibit the activation of hemocytes or the formation of clotting fibers, it did inhibit hemocyte aggregation and the entrapment of foreign particles by fibers. Moreover, Sc-KU-4 avoided encapsulation and the deposition of clotting materials, which usually occurs in response to foreign particles. We show by protein-protein interaction that Sc-KU-4 targets recognition proteins of insect immune system such as masquerade-like and serine protease-like homologs. The interaction of Sc-KU-4 with these proteins explains the ability of the nematode to overcome host reactions and its large pathogenic spectrum, once these immune proteins are well conserved in insects. The discovery of this inhibitor targeting insect recognition proteins opens new avenues for the development of S. carpocapsae as a biological control agent and provides a new tool to study host-pathogen interactions.
url http://europepmc.org/articles/PMC3787073?pdf=render
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