The serine protease homolog CLIPA14 modulates the intensity of the immune response in the mosquito Anopheles gambiae

dc.contributor.authorNakhleh, Johnny
dc.contributor.authorChristophides, George K.
dc.contributor.authorOsta, Mike A.
dc.contributor.authorO’Neill, Luke A.
dc.contributor.departmentDepartment of Biology
dc.contributor.facultyFaculty of Arts and Sciences (FAS)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:20:40Z
dc.date.available2025-01-24T11:20:40Z
dc.date.issued2017
dc.description.abstractClip domain serine protease homologs (SPHs) arepositive and negative regulators of Anopheles gambiae immune responses mediated by the complement-like protein TEP1 against Plasmodium malaria parasites and other microbial infections. We have previously reported that the SPH CLIPA2 is a negative regulator of the TEP1-mediated response by showing that CLIPA2 knockdown (kd) enhances mosquito resistance to infections with fungi, bacteria, and Plasmodium parasites. Here, we identify another SPH, CLIPA14, as a novel regulator of mosquito immunity. We found that CLIPA14 is a hemolymph protein that is rapidly cleaved following a systemic infection. CLIPA14 kd mosquitoes elicited a potent melanization response against Plasmodium berghei ookinetes and exhibited significantly increased resistance to Plasmodium infections as well as to systemic and oral bacterial infections. The activity of the enzyme phenoloxidase, which initiates melanin biosynthesis, dramatically increasedinthe hemolymph of CLIPA14 kd mosquitoes in response to systemic bacterial infections. Ookinete melanization and hemolymph phenoloxidase activity were further increased after cosilencing CLIPA14 and CLIPA2, suggesting that these two SPHs act in concert to control the melanization response. Interestingly, CLIPA14 RNAi phenotypes and its infection-induced cleavage were abolished in a TEP1 loss-of-function background. Our results suggest that a complex network of SPHs functions downstream of TEP1 to regulate the melanization reaction. © 2017 by The American Society for Biochemistry and Molecular Biology, Inc.
dc.identifier.doihttps://doi.org/10.1074/jbc.M117.797787
dc.identifier.eid2-s2.0-85033235701
dc.identifier.pmid28928218
dc.identifier.urihttp://hdl.handle.net/10938/25089
dc.language.isoen
dc.publisherAmerican Society for Biochemistry and Molecular Biology Inc.
dc.relation.ispartofJournal of Biological Chemistry
dc.sourceScopus
dc.subjectAnimals
dc.subjectAnimals, genetically modified
dc.subjectAnopheles
dc.subjectEnzyme activation
dc.subjectEscherichia coli
dc.subjectFemale
dc.subjectGene knockdown techniques
dc.subjectHemolymph
dc.subjectImmunity, innate
dc.subjectInsect proteins
dc.subjectIsoenzymes
dc.subjectMelanins
dc.subjectMonophenol monooxygenase
dc.subjectPlasmodium berghei
dc.subjectProteolysis
dc.subjectRna interference
dc.subjectSerine endopeptidases
dc.subjectSerratia marcescens
dc.subjectStaphylococcus aureus
dc.subjectSurvival analysis
dc.subjectUp-regulation
dc.subjectAmino acids
dc.subjectBiochemistry
dc.subjectBlood
dc.subjectComplex networks
dc.subjectEnzyme activity
dc.subjectMelanin
dc.subjectProtein clipa14
dc.subjectSerine proteinase
dc.subjectUnclassified drug
dc.subjectInsect protein
dc.subjectIsoenzyme
dc.subjectTep1 protein, anopheles gambiae
dc.subjectTrypsin-like serine protease
dc.subjectBacterial infections
dc.subjectMalaria parasite
dc.subjectMelanin biosynthesis
dc.subjectMelanization reaction
dc.subjectMicrobial infections
dc.subjectNegative regulators
dc.subjectPlasmodium parasites
dc.subjectSerine protease
dc.subjectAnopheles gambiae
dc.subjectArticle
dc.subjectBacterial infection
dc.subjectBiosynthesis
dc.subjectClipa14 genbe
dc.subjectClipa2 gene
dc.subjectControlled study
dc.subjectGene
dc.subjectGene silencing
dc.subjectImmune response
dc.subjectImmunomodulation
dc.subjectInfection resistance
dc.subjectNonhuman
dc.subjectPlasmodium
dc.subjectPriority journal
dc.subjectProtein cleavage
dc.subjectAnimal
dc.subjectAntagonists and inhibitors
dc.subjectChemistry
dc.subjectGenetics
dc.subjectGrowth, development and aging
dc.subjectImmunology
dc.subjectInnate immunity
dc.subjectIsolation and purification
dc.subjectMetabolism
dc.subjectMicrobiology
dc.subjectParasitology
dc.subjectProtein degradation
dc.subjectTransgenic animal
dc.subjectUpregulation
dc.subjectVeterinary
dc.subjectImmune system
dc.titleThe serine protease homolog CLIPA14 modulates the intensity of the immune response in the mosquito Anopheles gambiae
dc.typeArticle

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