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A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System

Steinernema carpocapsae is an entomopathogenic nematode widely used for the control of insect pests due to its virulence, which is mainly attributed to the ability the parasitic stage has to overcome insect defences. To identify the mechanisms underlying such a characteristic, we studied a novel ser...

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Autores principales: Toubarro, Duarte, Avila, Mónica M., Hao, YouJin, Balasubramanian, Natesan, Jing, Yingjun, Montiel, Rafael, Faria, Tiago Q., Brito, Rui M., Simões, Nelson
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3712955/
https://www.ncbi.nlm.nih.gov/pubmed/23874900
http://dx.doi.org/10.1371/journal.pone.0069161
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author Toubarro, Duarte
Avila, Mónica M.
Hao, YouJin
Balasubramanian, Natesan
Jing, Yingjun
Montiel, Rafael
Faria, Tiago Q.
Brito, Rui M.
Simões, Nelson
author_facet Toubarro, Duarte
Avila, Mónica M.
Hao, YouJin
Balasubramanian, Natesan
Jing, Yingjun
Montiel, Rafael
Faria, Tiago Q.
Brito, Rui M.
Simões, Nelson
author_sort Toubarro, Duarte
collection PubMed
description Steinernema carpocapsae is an entomopathogenic nematode widely used for the control of insect pests due to its virulence, which is mainly attributed to the ability the parasitic stage has to overcome insect defences. To identify the mechanisms underlying such a characteristic, we studied a novel serpin-like inhibitor (sc-srp-6) that was detected in a transcriptome analysis. Recombinant Sc-SRP-6 produced in Escherichia coli had a native fold of serpins belonging to the α-1-peptidase family and exhibited inhibitory activity against trypsin and α-chymotrypsin with Ki of 0.42×10(−7 )M and 1.22×10(−7) M, respectively. Functional analysis revealed that Sc-SRP-6 inhibits insect digestive enzymes, thus preventing the hydrolysis of ingested particles. Moreover, Sc-SRP-6 impaired the formation of hard clots at the injury site, a major insect defence mechanism against invasive pathogens. Sc-SRP-6 does not prevent the formation of clot fibres and the activation of prophenoloxidases but impairs the incorporation of the melanin into the clot. Binding assays showed a complex formation between Sc-SRP-6 and three proteins in the hemolymph of lepidopteran required for clotting, apolipophorin, hexamerin and trypsin-like, although the catalytic inhibition occurred exclusively in trypsin-like. This data allowed the conclusion that Sc-SRP-6 promotes nematode virulence by inhibiting insect gut juices and by impairing immune clot reaction.
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spelling pubmed-37129552013-07-19 A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System Toubarro, Duarte Avila, Mónica M. Hao, YouJin Balasubramanian, Natesan Jing, Yingjun Montiel, Rafael Faria, Tiago Q. Brito, Rui M. Simões, Nelson PLoS One Research Article Steinernema carpocapsae is an entomopathogenic nematode widely used for the control of insect pests due to its virulence, which is mainly attributed to the ability the parasitic stage has to overcome insect defences. To identify the mechanisms underlying such a characteristic, we studied a novel serpin-like inhibitor (sc-srp-6) that was detected in a transcriptome analysis. Recombinant Sc-SRP-6 produced in Escherichia coli had a native fold of serpins belonging to the α-1-peptidase family and exhibited inhibitory activity against trypsin and α-chymotrypsin with Ki of 0.42×10(−7 )M and 1.22×10(−7) M, respectively. Functional analysis revealed that Sc-SRP-6 inhibits insect digestive enzymes, thus preventing the hydrolysis of ingested particles. Moreover, Sc-SRP-6 impaired the formation of hard clots at the injury site, a major insect defence mechanism against invasive pathogens. Sc-SRP-6 does not prevent the formation of clot fibres and the activation of prophenoloxidases but impairs the incorporation of the melanin into the clot. Binding assays showed a complex formation between Sc-SRP-6 and three proteins in the hemolymph of lepidopteran required for clotting, apolipophorin, hexamerin and trypsin-like, although the catalytic inhibition occurred exclusively in trypsin-like. This data allowed the conclusion that Sc-SRP-6 promotes nematode virulence by inhibiting insect gut juices and by impairing immune clot reaction. Public Library of Science 2013-07-16 /pmc/articles/PMC3712955/ /pubmed/23874900 http://dx.doi.org/10.1371/journal.pone.0069161 Text en © 2013 Toubarro et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Toubarro, Duarte
Avila, Mónica M.
Hao, YouJin
Balasubramanian, Natesan
Jing, Yingjun
Montiel, Rafael
Faria, Tiago Q.
Brito, Rui M.
Simões, Nelson
A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System
title A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System
title_full A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System
title_fullStr A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System
title_full_unstemmed A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System
title_short A Serpin Released by an Entomopathogen Impairs Clot Formation in Insect Defense System
title_sort serpin released by an entomopathogen impairs clot formation in insect defense system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3712955/
https://www.ncbi.nlm.nih.gov/pubmed/23874900
http://dx.doi.org/10.1371/journal.pone.0069161
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