Search results for "CFTR"

showing 10 items of 22 documents

Caffeine boosts Ataluren's readthrough activity

2019

Abstract The readthrough of nonsense mutations by small molecules like Ataluren is considered a novel therapeutic approach to overcome the gene defect in several genetic diseases as cystic fibrosis (CF). This pharmacological approach suppresses translation termination at premature termination codons (PTCs readthrough) thus restoring the expression of a functional protein. However, readthrough might be limited by the nonsense-mediated mRNA decay (NMD), a cell process that reduces the amount/level of PTCs containing mRNAs. Here we investigate the combined action of Ataluren and caffeine to enhance the readthrough of PTCs. IB3.1 CF cells with a nonsense mutation were treated with caffeine to a…

0301 basic medicineMolecular biologymedia_common.quotation_subjectCellNonsenseNonsense mutationMRNA DecaySettore BIO/11 - Biologia MolecolareBiochemistryCystic fibrosisArticleCystic fibrosisCFTR gene03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCaffeinemedicinelcsh:Social sciences (General)Settore BIO/06 - Anatomia Comparata E Citologialcsh:Science (General)media_commonMessenger RNAMultidisciplinaryNonsense mutationNonsense mutationsPTC readthroughAtaluren/PTC124Settore CHIM/06 - Chimica Organicamedicine.diseaseCell biologyAtalurenSettore BIO/18 - Genetica030104 developmental biologymedicine.anatomical_structurechemistryCystic fibrosilcsh:H1-99Caffeine030217 neurology & neurosurgerylcsh:Q1-390Heliyon
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Exploring the readthrough of nonsense mutations by non-acidic Ataluren analogues selected by ligand-based virtual screening

2016

Abstract Ataluren, also known as PTC124, is a 5-(fluorophenyl)-1,2,4-oxadiazolyl-benzoic acid suggested to suppress nonsense mutations by readthrough of premature stop codons in the mRNA. Potential interaction of PTC124 with mRNA has been recently studied by molecular dynamics simulations highlighting the importance of H-bonding and stacking π−π interactions. A series of non-acidic analogues of PTC124 were selected from a large database via a ligand-based virtual screening approach. Eight of them were synthesized and tested for their readthrough activity using the Fluc reporter harboring the UGA premature stop codon. The most active compound was further tested for suppression of the UGA non…

0301 basic medicineNonsense mutationDrug Evaluation PreclinicalMolecular ConformationCystic Fibrosis Transmembrane Conductance RegulatorMolecular Dynamics SimulationOxadiazolemedicine.disease_causeCftr geneCFTR gene03 medical and health scienceschemistry.chemical_compoundDrug DiscoverymedicineHumansRNA MessengerPharmacologyGeneticsOxadiazolesMessenger RNAVirtual screeningMutationNonsense mutationChemistryDrug Discovery3003 Pharmaceutical ScienceOrganic ChemistryGeneral MedicineLigand (biochemistry)PTCs readthroughMolecular biologyStop codonAtaluren030104 developmental biologyCodon NonsenseCystic fibrosiHeLa CellsEuropean Journal of Medicinal Chemistry
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Multicenter validation study for the certification of a CFTR gene scanning method using next generation sequencing technology.

2018

AbstractBackground:Many European laboratories offer molecular genetic analysis of theCFTRgene using a wide range of methods to identify mutations causative of cystic fibrosis (CF) and CFTR-related disorders (CFTR-RDs). Next-generation sequencing (NGS) strategies are widely used in diagnostic practice, and CE marking is now required for most in vitro diagnostic (IVD) tests in Europe. The aim of this multicenter study, which involved three European laboratories specialized in CF molecular analysis, was to evaluate the performance of Multiplicom’s CFTR MASTR Dx kit to obtain CE-IVD certification.Methods:A total of 164 samples, previously analyzed with well-established “reference” methods for t…

0301 basic medicineValidation studycongenital hereditary and neonatal diseases and abnormalitiesCertification[SDV]Life Sciences [q-bio]Clinical BiochemistrySequencing dataCFTR molecular diagnosiCystic Fibrosis Transmembrane Conductance RegulatorComputational biology030105 genetics & heredityBiologyCFTR molecular diagnosisDNA sequencingIn vitro diagnosticCftr genecystic fibrosis03 medical and health sciencesHumanscystic fibrosiCE-IVD certificationBiochemistry (medical)Reproducibility of ResultsIllumina miseqSequence Analysis DNAGeneral MedicineMolecular analysisEurope030104 developmental biologyMulticenter studycomparative sequencing analysicomparative sequencing analysisMutationnext-generation sequencingMultiplex Polymerase Chain Reaction
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Furocoumarins as multi-target agents in the treatment of cystic fibrosis.

2019

Multi-target molecular entities, offer a path to progress both in understanding causes of disease and in defining effective small molecule treatments. Coumarin and its derivatives belong to an important group of natural compounds with diverse biological properties. They are found in vegetables and plants for which literature reports thousands of publications for the great variety of biological applications among which the photoprotective effects, thus being considered multi-targeting agents. Their furan condensed analogues constitute the family of furocoumarins, less represented in the literature, endowed with photosensitizing properties and often used for the treatment of skin diseases suc…

Cystic FibrosisFurocoumarinComputational biologyCystic fibrosisStructure-Activity RelationshipMulti targetCoumarinsBiological propertyFurocoumarinsDrug DiscoverymedicineCystic fibrosis (CF)HumansCFTR modulatorPharmacologyDose-Response Relationship DrugMolecular StructureChemistryOrganic ChemistryGeneral Medicinemedicine.diseaseCFTR modulatorsMulti-target agentsSmall moleculeFurocoumarinsCFTR modulators; Cystic fibrosis (CF); Furocoumarins; Multi-target agentsEuropean journal of medicinal chemistry
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Enhancement of premature stop codon readthrough in the CFTR gene by Ataluren (PTC124) derivatives.

2015

Abstract Premature stop codons are the result of nonsense mutations occurring within the coding sequence of a gene. These mutations lead to the synthesis of a truncated protein and are responsible for several genetic diseases. A potential pharmacological approach to treat these diseases is to promote the translational readthrough of premature stop codons by small molecules aiming to restore the full-length protein. The compound PTC124 (Ataluren) was reported to promote the readthrough of the premature UGA stop codon, although its activity was questioned. The potential interaction of PTC124 with mutated mRNA was recently suggested by molecular dynamics (MD) studies highlighting the importanc…

Cystic FibrosisNonsense mutationPeptide Chain Elongation TranslationalCystic Fibrosis Transmembrane Conductance RegulatorSettore BIO/11 - Biologia MolecolareMolecular Dynamics SimulationCFTR genechemistry.chemical_compoundStructure-Activity RelationshipPlasmidDrug DiscoveryTumor Cells CulturedCoding regionHumansGreen fluorescent proteinGenePharmacologyGeneticsMessenger RNAOxadiazolesNonsense mutationDose-Response Relationship DrugMolecular StructureDrug Discovery3003 Pharmaceutical ScienceOrganic ChemistryTranslational readthroughSettore CHIM/06 - Chimica OrganicaGeneral MedicinePTCs readthroughStop codonAtalurenSettore BIO/18 - GeneticachemistrySettore CHIM/03 - Chimica Generale E InorganicaCodon NonsenseCystic fibrosiMutationFluorinated oxadiazoleHeLa CellsEuropean journal of medicinal chemistry
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HETEROCYCLIC COMPOUNDS AND MEDICAL USE THEREOF

2019

The present invention relates to heterocyclic nitrogen compounds, use thereof as a medicament and pharmaceutical compositions thereof. Furthermore, the invention provides combinations of compounds of general formula (I) with therapeutic agents, such as correctors, potentiators and amplifiers of dysfunctional proteins.

Cystic fibrosiCFTR correctorCystic fibrosis transmembrane conductance regulatorCFTRSettore CHIM/08 - Chimica FarmaceuticaF508del-CFTR
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Identification of a new molecule with readthrough activity to rescue CFTR protein function

In Cystic fibrosis (CF) disease nonsense mutations in the CFTR gene cause absence of the CFTR protein expression and a more severe form of the disease. About 10% of patient affected by CF show a nonsense mutation. A potential treatment of this alteration is to promote translational readthrough of premature termination codons (PTCs) by translational readthrough inducing drugs such as Ataluren. In this context we aimed to compare the 1,2,4-oxadiazole core of Ataluren with a slightly different scaffold, the 1,3,4oxadiazole core. By a validated protocol consisting of computational screening, synthesis and biological tests we identified, a new small molecule with 1,3,4-oxadiazole core (2a/NV2445…

Cystic fibrosis CFTR readthrough oxadiazoles
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Extensive molecular analysis of patients bearing CFTR-related disorders.

2012

Cystic fibrosis transmembrane conductance regulator (CFTR)–related disorders (CFTR-RDs) may present with pancreatic sufficiency, normal sweat test results, and better outcome. The detection rate of mutations is lower in CFTR-RD than in classic CF: mutations may be located in genes encoding proteins that interact with CFTR or support channel activity. We tested the whole CFTR coding regions in 99 CFTR-RD patients, looking for gene mutations in solute carrier (SLC) 26A and in epithelial Na channel (ENaC) in 33 patients who had unidentified mutations. CFTR analysis revealed 28 mutations, some of which are rare. Of these mutations, RT-PCR demonstrated that the novel 1525-1delG impairs exon 10 s…

Epithelial sodium channelcongenital hereditary and neonatal diseases and abnormalitiesCystic fibrosis CFTR SLC26A SCNNCystic FibrosisAnion Transport ProteinsDNA Mutational Analysismolecular analysiCystic Fibrosis Transmembrane Conductance RegulatorGene mutationPathology and Forensic Medicinecongenital bilateral absence of vasa deferentesExonGene Frequencydisseminated bronchiectasiscongenital bilateral absence of vasa deferenteHumansTrypsinmolecular analysisEpithelial Sodium ChannelsGeneCells CulturedGenetic Association StudiesGeneticsbiologydisseminated bronchiectasiEpithelial Cellsrespiratory systemrecurrent pancreatitidigestive system diseasesCystic fibrosis transmembrane conductance regulatorrespiratory tract diseasesSolute carrier familyCFTR related disordersTrypsin Inhibitor Kazal PancreaticCase-Control StudiesRNA splicingMutationbiology.proteinMolecular MedicineCFTR related disorderSLC26 familyCarrier ProteinsNa channel ENaCMinigenerecurrent pancreatitis
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A novel approach to CFTR mutation testing by pyrosequencing-based assay panels adapted to ethnicities.

2009

Abstract Background: Cystic fibrosis (CF) is a common autosomal recessive genetic disorder caused by a variety of sequence alterations in the CFTR gene [cystic fibrosis transmembrane conductance regulator (ATP-binding cassette sub-family C, member 7)]. Because the relative prevalence of mutations strongly depends on the ethnic background, first-level testing of CF as defined by recent consensus recommendations ought to be adaptable to the ethnicity of patients. Methods: We therefore developed and implemented a diagnostic approach to first-level testing for CF based on published mutation frequencies and Pyrosequencing (PSQ) technology that we complemented with standard procedures of mutation…

Geneticsmedicine.diagnostic_testbiologyBase SequenceCystic FibrosisGenetic Carrier ScreeningBiochemistry (medical)Clinical BiochemistryGenetic disorderCystic Fibrosis Transmembrane Conductance RegulatorSequence Analysis DNAmedicine.diseaseCystic fibrosisPolymerase Chain ReactionCystic fibrosis transmembrane conductance regulatorCftr mutationCase-Control StudiesMutation (genetic algorithm)Mutationmedicinebiology.proteinPyrosequencingHumansGenotypingSweat testClinical chemistry
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Identificazionee caratterizzazione di mutazioni in regioni regolatorie del gene malattia della fibrosi cistica

2013

Mutation epidemiology is crucial for cystic fibrosis (CF) diagnosis and counselling. ~6%-7% of alleles from CF patients do not bear mutations in the coding regions of the Cystic Fibrosis Transmembrane Regulator (CFTR) disease gene. In these patients, mutations may be present in non-coding, regulatory regions of the gene as i) intronic regions (particularly in high conserved sequences), ii) the promoter region or iii) the area at the 3’ of the gene, which is the target of microRNA regulation. We studied these regions by gene sequencing in a group of CF patients with one or both unidentified mutations after the analysis of CFTR coding regions, and in a group of CF patients with a different cl…

Medical Laboratory TechnologySettore BIO/12 - Biochimica Clinica E Biologia Molecolare ClinicaClinical BiochemistryBiochemistry (medical)Fibrosi cistica gene CFTR.
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