The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.

Serine protease cascades regulate important insect immune responses namely melanization and Toll pathway activation. An important component of these cascades are clip-domain serine protease homologs (cSPHs), which are non-catalytic, but essential for activating the enzyme prophenoloxidase (PPO) in t...

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Main Authors: Layla El Moussawi, Johnny Nakhleh, Layla Kamareddine, Mike A Osta
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-11-01
Series:PLoS Pathogens
Online Access:https://doi.org/10.1371/journal.ppat.1008194
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spelling doaj-b0af7f43e4694f16bf3fff18d8b500af2021-04-21T17:14:08ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742019-11-011511e100819410.1371/journal.ppat.1008194The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.Layla El MoussawiJohnny NakhlehLayla KamareddineMike A OstaSerine protease cascades regulate important insect immune responses namely melanization and Toll pathway activation. An important component of these cascades are clip-domain serine protease homologs (cSPHs), which are non-catalytic, but essential for activating the enzyme prophenoloxidase (PPO) in the melanization response during septic infections. The activation of cSPHs requires their proteolytic cleavage, yet factors that control their activation and the complexity of their interactions within these cascades remain unclear. Here, we report the identification of CLIPA28 as a novel immune-related cSPH in the malaria vector Anopheles gambiae. Functional genetic analysis using RNA interference (RNAi) revealed that CLIPA28 is essential for the melanization of Plasmodium berghei parasites in refractory mosquitoes, and for mosquito resistance to fungal infections. We further show, using combined biochemical and genetic approaches, that CLIPA28 is member of a network of at least four cSPHs, whereby members are activated in a hierarchical manner following septic infections. Depletion of the complement-like protein TEP1 abolished the activation of this network after septic infections, whereas, depletion of the serine protease inhibitor 2 (SRPN2) triggered enhanced network activation, even in naïve mosquitoes, culminating in a dramatic reduction in cSPHs hemolymph levels, which paralleled that of PPO. Our data suggest that cSPHs are engaged in complex and multilayered interactions within serine protease cascades that regulate melanization, and identify TEP1 and SRPN2 as two master regulators of the cSPH network.https://doi.org/10.1371/journal.ppat.1008194
collection DOAJ
language English
format Article
sources DOAJ
author Layla El Moussawi
Johnny Nakhleh
Layla Kamareddine
Mike A Osta
spellingShingle Layla El Moussawi
Johnny Nakhleh
Layla Kamareddine
Mike A Osta
The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.
PLoS Pathogens
author_facet Layla El Moussawi
Johnny Nakhleh
Layla Kamareddine
Mike A Osta
author_sort Layla El Moussawi
title The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.
title_short The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.
title_full The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.
title_fullStr The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.
title_full_unstemmed The mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.
title_sort mosquito melanization response requires hierarchical activation of non-catalytic clip domain serine protease homologs.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2019-11-01
description Serine protease cascades regulate important insect immune responses namely melanization and Toll pathway activation. An important component of these cascades are clip-domain serine protease homologs (cSPHs), which are non-catalytic, but essential for activating the enzyme prophenoloxidase (PPO) in the melanization response during septic infections. The activation of cSPHs requires their proteolytic cleavage, yet factors that control their activation and the complexity of their interactions within these cascades remain unclear. Here, we report the identification of CLIPA28 as a novel immune-related cSPH in the malaria vector Anopheles gambiae. Functional genetic analysis using RNA interference (RNAi) revealed that CLIPA28 is essential for the melanization of Plasmodium berghei parasites in refractory mosquitoes, and for mosquito resistance to fungal infections. We further show, using combined biochemical and genetic approaches, that CLIPA28 is member of a network of at least four cSPHs, whereby members are activated in a hierarchical manner following septic infections. Depletion of the complement-like protein TEP1 abolished the activation of this network after septic infections, whereas, depletion of the serine protease inhibitor 2 (SRPN2) triggered enhanced network activation, even in naïve mosquitoes, culminating in a dramatic reduction in cSPHs hemolymph levels, which paralleled that of PPO. Our data suggest that cSPHs are engaged in complex and multilayered interactions within serine protease cascades that regulate melanization, and identify TEP1 and SRPN2 as two master regulators of the cSPH network.
url https://doi.org/10.1371/journal.ppat.1008194
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