0000000000617997

AUTHOR

David L. Moyes

0000-0002-1657-918x

showing 4 related works from this author

Oral and Vaginal Epithelial Cell Lines Bind and Transfer Cell-Free Infectious HIV-1 to Permissive Cells but Are Not Productively Infected

2014

The majority of HIV-1 infections worldwide are acquired via mucosal surfaces. However, unlike the vaginal mucosa, the issue of whether the oral mucosa can act as a portal of entry for HIV-1 infection remains controversial. To address potential differences with regard to the fate of HIV-1 after exposure to oral and vaginal epithelium, we utilized two epithelial cell lines representative of buccal (TR146) and pharyngeal (FaDu) sites of the oral cavity and compared them with a cell line derived from vaginal epithelium (A431) in order to determine (i) HIV-1 receptor gene and protein expression, (ii) whether HIV-1 genome integration into epithelial cells occurs, (iii) whether productive viral in…

Sexual transmissionTranscription GeneticVirus IntegrationScienceReceptors Cell SurfaceGenome ViralBiologyMicrobiologyCXCR4EpitheliumVirusCell LineFlow cytometryViral ProteinsImmunodeficiency VirusesmedicineHumansRNA MessengerOral mucosaMicrobial PathogensMultidisciplinarymedicine.diagnostic_testQMouth MucosaRBiology and Life SciencesHIVCorrectionEpithelial CellsVirologyMolecular biologyEpitheliumBiological Tissuemedicine.anatomical_structureGene Expression RegulationTranscytosisMedical MicrobiologyCell cultureViral PathogensDNA ViralVaginaHIV-1MedicineFemaleAnatomyResearch Article
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Evaluation of the Role of Candida albicans Agglutinin-Like Sequence (Als) Proteins in Human Oral Epithelial Cell Interactions

2012

The fungus C. albicans uses adhesins to interact with human epithelial surfaces in the processes of colonization and pathogenesis. The C. albicans ALS (agglutinin-like sequence) gene family encodes eight large cell-surface glycoproteins (Als1-Als7 and Als9) that have adhesive function. This study utilized C. albicans Δals mutant strains to investigate the role of the Als family in oral epithelial cell adhesion and damage, cytokine induction and activation of a MAPK-based (MKP1/c-Fos) signaling pathway that discriminates between yeast and hyphae. Of the eight Δals mutants tested, only the Δals3 strain showed significant reductions in oral epithelial cell adhesion and damage, and cytokine pro…

MAPK/ERK pathwaySciencemedicine.medical_treatmentImmunologyBlotting WesternMycologyMicrobiologyFungal ProteinsMolecular Cell BiologymedicineGeneticsHumansPhosphorylationCandida albicansCell damageBiologyMultidisciplinarybiologyQRImmunityMouth MucosaDual Specificity Phosphatase 1Epithelial Cellsbiology.organism_classificationmedicine.diseaseCorpus albicansSignaling CascadesCell biologyBacterial adhesinCytokineImmune SystemMedicineCytokinesSignal transductionCellular TypesCandidalysinCell Adhesion MoleculesProto-Oncogene Proteins c-fosResearch ArticleDevelopmental BiologySignal Transduction
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Oral epithelial cells orchestrate innate type 17 responses to Candida albicans through the virulence factor candidalysin

2017

Candida albicans is a dimorphic commensal fungus that causes severe oral infections in immunodeficient patients. Invasion of C. albicans hyphae into oral epithelium is an essential virulence trait. Interleukin-17 (IL-17) signaling is required for both innate and adaptive immunity to C. albicans. During the innate response, IL-17 is produced by γδ T cells and a poorly understood population of innate-acting CD4+ αβ T cell receptor (TCRαβ)+ cells, but only the TCRαβ+ cells expand during acute infection. Confirming the innate nature of these cells, the TCR was not detectably activated during the primary response, as evidenced by Nur77eGFP mice that report antigen-specific signaling through the …

0301 basic medicineInnate immune systembiologyVirulence FactorsImmunologyPattern recognition receptorEpithelial CellsInflammationGeneral Medicinebiology.organism_classificationAcquired immune systemArticleCorpus albicansMicrobiologyFungal Proteins03 medical and health sciences030104 developmental biology0302 clinical medicineImmunityCandida albicansmedicinemedicine.symptomCandida albicansCandidalysin030215 immunologyScience Immunology
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Candida albicans Yeast and Hyphae are Discriminated by MAPK Signaling in Vaginal Epithelial Cells

2011

We previously reported that a bi-phasic innate immune MAPK response, constituting activation of the mitogen-activated protein kinase (MAPK) phosphatase MKP1 and c-Fos transcription factor, discriminates between the yeast and hyphal forms of Candida albicans in oral epithelial cells (ECs). Since the vast majority of mucosal Candida infections are vaginal, we sought to determine whether a similar bi-phasic MAPK-based immune response was activated by C. albicans in vaginal ECs. Here, we demonstrate that vaginal ECs orchestrate an innate response to C. albicans via NF-κB and MAPK signaling pathways. However, unlike in oral ECs, the first MAPK response, defined by c-Jun transcription factor acti…

MAPK/ERK pathwaylcsh:MedicineYeast and Fungal ModelsPathogenesisSignal transductionMolecular cell biologyCandida albicansGranulocyte Colony-Stimulating FactorCandida albicanslcsh:ScienceImmune Response0303 health sciencesMultidisciplinarybiologyCandidiasisNF-kappa BSignaling cascadesObstetrics and GynecologyCorpus albicansInnate ImmunityHost-Pathogen InteractionInfectious DiseasesVaginaCytokinesMedicineFemaleSignal transductionCandidalysinResearch ArticleMAPK signaling cascadesMAP Kinase Signaling SystemUrologyImmunologySexually Transmitted DiseasesHyphaeMycologyMicrobiologyMicrobiologyImmune Activation03 medical and health sciencesModel OrganismsHumansTranscription factorBiology030304 developmental biologyInnate immune systemChemokine CCL20030306 microbiologyGenitourinary InfectionsInterleukin-6lcsh:RImmunityFungiMouth MucosaImmune DefenseEpithelial Cellsbiology.organism_classificationImmunity InnateCCL20Immune Systemlcsh:QClinical ImmunologyPLoS ONE
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