Search results for " IAP"

showing 6 items of 6 documents

dsRNA induces apoptosis through an atypical death complex associating TLR3 to caspase-8

2012

Toll-like receptor 3 (TLR3) is a pattern-recognition receptor known to initiate an innate immune response when stimulated by double-stranded RNA (dsRNA). Components of TLR3 signaling, including TIR domain-containing adapter inducing IFN-α (TRIF), have been demonstrated to contribute to dsRNA-induced cell death through caspase-8 and receptor interacting protein (RIP)1 in various human cancer cells. We provide here a detailed analysis of the caspase-8 activating machinery triggered in response to Poly(I:C) dsRNA. Engagement of TLR3 by dsRNA in both type I and type II lung cancer cells induces the formation of an atypical caspase-8-containing complex that is devoid of classical death receptors…

Ubiquitin-Protein LigasesvirusesApoptosischemical and pharmacologic phenomenaInhibitor of Apoptosis ProteinsCell Line TumorHumansFADDMolecular BiologyRNA Double-StrandedDeath domainCaspase 8Original PaperbiologyUbiquitinationRNA-Binding Proteinshemic and immune systemsMDA5Cell BiologyTNF Receptor-Associated Factor 2Fas receptorTRADDBaculoviral IAP Repeat-Containing 3 ProteinTNF Receptor-Associated Death Domain ProteinToll-Like Receptor 3Cell biologyNuclear Pore Complex ProteinsUbiquitin ligase complexDeath-inducing signaling complexTLR3biology.proteinSignal TransductionCell Death & Differentiation
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Regulation of Apoptosis by Inhibitors of Apoptosis (IAPs).

2013

Abstract Inhibitors of Apoptosis (IAPs) are a family of proteins with various biological functions including regulation of innate immunity and inflammation, cell proliferation, cell migration and apoptosis. They are characterized by the presence of at least one N-terminal baculoviral IAP repeat (BIR) domain involved in protein-protein interaction. Most of them also contain a C-terminal RING domain conferring an E3-ubiquitin ligase activity. In drosophila, IAPs are essential to ensure cell survival, preventing the uncontrolled activation of the apoptotic protease caspases. In mammals, IAPs can also regulate apoptosis through controlling caspase activity and caspase-activating platform format…

musculoskeletal diseasesvirusesReviewIAP antagonistsXIAPLigase activityDIAP1lcsh:QH301-705.5CaspaseInhibitor of apoptosis domainbiologyCell growthapoptosisapoptosomeGeneral MedicineCell biologyXIAPbody regionslcsh:Biology (General)caspasesApoptosisRIPcIAPsbiology.proteinKeywordsDIAP1Baculoviral IAP repeat-containing protein 3Apoptosomebiological phenomena cell phenomena and immunityCells
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Immune escape of AKT overexpressing ovarian cancer cells

2012

Platinum-resistance is the most crucial problem for treatment of ovarian cancer. There is a clinical need for new treatment strategies which overcome platinum resistance. As survival is strongly influenced by immunological parameters, immunotherapeutic strategies appear promising. Therefore a better understanding of the interaction between ovarian tumour cells and cells of the immune system is a necessary prerequisite. In the present study we aimed to enlighten the interactions between platinum resistant and platinum sensitive ovarian cancer cells and natural-killer (NK)-cells. Modified FATAL assay was used for determining the killing efficiency of NK-cells for the parental A2780 cells and …

Cancer Researchendocrine system diseasesUbiquitin-Protein LigasesCellApoptosisBiologymedicine.disease_causeInhibitor of Apoptosis ProteinsImmune systemCell Line TumormedicineHumansPlatinumOvarian NeoplasmsCancerCell cyclemedicine.diseaseBaculoviral IAP Repeat-Containing 3 Proteinfemale genital diseases and pregnancy complicationsGene Expression Regulation NeoplasticKiller Cells Naturalmedicine.anatomical_structureOncologyDrug Resistance NeoplasmCell cultureApoptosisCancer researchFemaleOvarian cancerCarcinogenesisProto-Oncogene Proteins c-aktInternational Journal of Oncology
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Preface: phytoplankton responses to human impacts at different scales

2012

Settore BIO/07 - ECOLOGIASettore BIO/03 - Botanica Ambientale E Applicata16th Workshop of the IAP
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Regulation of Anti-Apoptotic SOD2 and BIRC3 in Periodontal Cells and Tissues.

2021

Made available in DSpace on 2021-06-25T10:49:07Z (GMT). No. of bitstreams: 0 Previous issue date: 2021-01-02 Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP) Deutscher Akademischer Austauschdienst Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) Deutsche Forschungsgemeinschaft The aim of the study was to clarify whether orthodontic forces and periodontitis interact with respect to the anti-apoptotic molecules superoxide dismutase 2 (SOD2) and baculoviral IAP repeat-containing protein 3 (BIRC3). SOD2, BIRC3, and the apoptotic markers caspases 3 (CASP3) and 9 (CASP9) were analyzed in gingiva from periodontally healthy and periodontitis subjects by real-time PCR…

Periodontium0301 basic medicineGingivaApoptosislcsh:ChemistryGingivitis0302 clinical medicineskin and connective tissue diseases610 Medicine &amp; healthperiodontitislcsh:QH301-705.5Cells CulturedSpectroscopybiologyCaspase 3General MedicineGingivitisBaculoviral IAP Repeat-Containing 3 ProteinCaspase 93. Good healthComputer Science Applicationsorthodontic tooth movementHost-Pathogen Interactionscardiovascular systemmedicine.symptomgingivitismedicine.medical_specialtySOD2610 Medicine & healthArticleCatalysisInorganic ChemistrySuperoxide dismutase03 medical and health sciencesstomatognathic systemOrthodontic tooth movementInternal medicinemedicineAnimalsHumansPeriodontal fiberddc:610Physical and Theoretical ChemistryPeriodontitisMolecular BiologyPeriodontitisFusobacterium nucleatumSuperoxide Dismutasebusiness.industry<i>Fusobacterium nucleatum</i>periodontal ligamentOrganic Chemistry030206 dentistryPeriodontiumFibroblastsmedicine.diseasebiology.organism_classificationRatsstomatognathic diseases030104 developmental biologyEndocrinologyGene Expression Regulationlcsh:Biology (General)lcsh:QD1-999Apoptosisbiology.proteinFusobacterium nucleatumbusinessperiodontiumPeriodontal ligament
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Patterns of Innate or Acquired Resistance to Anticancer Drugs: Our Experience to Overcome It

2021

Drug resistance, which is often of a multiple type, can be defined as the ability of cancer cells to obtain resistance to both conventional and novel chemotherapy agents. It remains a major problem to solve in cancer therapy. The mechanisms of resistance are multifactorial, and in our cellular models of acute myeloid leukemia, hepatocellular carcinoma, and triple-negative breast cancer, it involves the NF-κB pathway. In our opinion, multitarget molecules can be considered as privileged compounds capable of attacking and reversing the resistant phenotype. In the phenomena of both innate and acquired drug resistance that we have been studying since 1998 to today and up to 2016 under the guida…

Cancer ResearchAntineoplastic AgentsApoptosisPhosphatidylethanolamine Binding ProteinDrug resistanceMetastasisBreast cancerdrug resistance P-glycoprotein IAP NF-κBNeoplasmsHumansMedicineATP Binding Cassette Transporter Subfamily B Member 1Transcription factorYY1 Transcription FactorP-glycoproteinbiologybusiness.industryKinaseNF-kappa BMyeloid leukemiamedicine.diseaseDrug Resistance NeoplasmCancer cellSettore BIO/14 - Farmacologiabiology.proteinCancer researchbusinessCritical Reviews™ in Oncogenesis
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