Search results for "Guanine-Quadruplexes"

showing 5 items of 5 documents

2019

By using all atom molecular dynamics simulations, we studied the behavior of human DNA telomere sequences in guanine quadruplex (G4) conformation and in the presence of oxidative lesions, namely abasic sites. In particular, we evidenced that while removing one guanine base induces a significant alteration and destabilization of the involved leaflet, human telomere oligomers tend, in most cases, to maintain at least a partial quadruplex structure, eventually by replacing the empty site with undamaged guanines of different leaflets. This study shows that (i) the disruption of the quadruplex leaflets induces the release of at least one of the potassium cations embedded in the quadruplex channe…

0301 basic medicineHuman dnaPhysiologyGuanineClinical BiochemistryCell BiologyOxidative phosphorylation010402 general chemistryElectrostatics01 natural sciencesBiochemistryDNA sequencing0104 chemical sciencesTelomere03 medical and health sciencesMolecular dynamicschemistry.chemical_compound030104 developmental biologychemistryBiophysicsheterocyclic compoundsGuanine-QuadruplexesMolecular BiologyAntioxidants
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Forever Young: Structural Stability of Telomeric Guanine Quadruplexes in the Presence of Oxidative DNA Lesions**

2021

International audience; Human telomeric DNA, in G-quadruplex (G4) conformation, is characterized by a remarkable structural stability that confers it the capacity to resist to oxidative stress producing one or even clustered 8-oxoguanine (8oxoG) lesions. We present a combined experimental/computational investigation, by using circular dichroism in aqueous solutions, cellular immunofluorescence assays and molecular dynamics simulations, that identifies the crucial role of the stability of G4s to oxidative lesions, related also to their biological role as inhibitors of telomerase, an enzyme overexpressed in most cancers associated to oxidative stress.

Circular dichroismTelomeraseOxidative phosphorylation010402 general chemistryImmunofluorescencemedicine.disease_cause01 natural scienceselectronic circular dichroismCatalysis[SPI.AUTO]Engineering Sciences [physics]/Automaticchemistry.chemical_compoundmedicineHumansimmunofluorescenceTelomerasechemistry.chemical_classificationmedicine.diagnostic_test010405 organic chemistryCircular DichroismOrganic ChemistryDNAGeneral ChemistryTelomeremolecular dynamics0104 chemical sciences3. Good healthG-QuadruplexesOxidative StressEnzymeBiochemistrychemistrySettore CHIM/03 - Chimica Generale E InorganicaGuanine quadruplexesNucleic Acid Conformationoxidative DNA lesionsGuanine-QuadruplexesDNAOxidative stress
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Role of RNA Guanine Quadruplexes in Favoring the Dimerization of SARS Unique Domain in Coronaviruses

2020

ABSTRACTCoronaviruses may produce severe acute respiratory syndrome (SARS). As a matter of fact, a new SARS-type virus, SARS-CoV-2, is responsible of a global pandemic in 2020 with unprecedented sanitary and economic consequences for most countries. In the present contribution we study, by all-atom equilibrium and enhanced sampling molecular dynamics simulations, the interaction between the SARS Unique Domain and RNA guanine quadruplexes, a process involved in eluding the defensive response of the host thus favoring viral infection of human cells. Our results evidence two stable binding modes involving an interaction site spanning either the protein dimer interface or only one monomer. The …

Models Molecular0301 basic medicineLetterSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)DimerPneumonia ViralCoronaviruProtein dimerMolecular Dynamics SimulationViral infection01 natural sciencesVirusBetacoronavirus03 medical and health scienceschemistry.chemical_compound0302 clinical medicine0103 physical sciencesG-QuadruplexeHumans[CHIM]Chemical SciencesGeneral Materials Science030212 general & internal medicinePhysical and Theoretical ChemistryPandemicsEconomic consequences030304 developmental biology0303 health sciences010304 chemical physicsBetacoronaviruSARS-CoV-2ChemistryCoronavirus InfectionRational designCOVID-19RNASpike Glycoprotein3. Good healthG-Quadruplexes030104 developmental biologySettore CHIM/03 - Chimica Generale E InorganicaSpike Glycoprotein CoronavirusBiophysicsRNA ViralCoronavirus InfectionsGuanine-QuadruplexesDimerizationProtein Binding
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The Right Answer for the Right Electrostatics: Force Field Methods Are Able to Describe Relative Energies of DNA Guanine Quadruplexes

2014

Different force fields and approximate density functional theory were applied in order to study the rotamer space of the telomeric G-quadruplex DNA. While some force fields show an erratic behavior when it comes to the reproduction of the higher-order DNA conformer space, OPLS and MMFF implementations are able to reproduce the experimentally known energy order. The stabilizing effect of the AA (anti−anti) versus SA (syn−anti) conformer is analyzed applying mechanical bond strength descriptors (compliance constants). The fact that we observe the correct energy order using appropriate force fields is in contrast with results previously reported, which suggested the general inappropriateness o…

OPLSMechanical bondChemistrycomputer.software_genreElectrostaticsForce field (chemistry)Computer Science Applicationschemistry.chemical_compoundClassical mechanicsSettore CHIM/03 - Chimica Generale E InorganicaDFT calculations Molecular mechanics calculations G-quadruplex DNADensity functional theoryData miningPhysical and Theoretical ChemistryGuanine-QuadruplexescomputerConformational isomerismDNAJournal of Chemical Theory and Computation
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Structure and dynamics of RNA guanine quadruplexes in SARS-CoV-2 genome. Original strategies against emerging viruses

2021

Guanine quadruplexes (G4) structures in viral genome have a key role in modulating viruses’ biological activity. While several DNA G4 structures have been experimentally resolved, RNA G4s are definitely less explored. We report the first calculated G4 structure of the RG-1 RNA sequence of SARS-CoV-2 genome, obtained by using a multiscale approach combining quantum and classical molecular modelling and corroborated by the excellent agreement between the corresponding calculated and experimental circular dichroism spectra. We prove the stability of RG-1 G4 arrangement as well as its interaction with G4 ligands potentially inhibiting viral protein translation.

chemistry.chemical_compoundchemistryViral proteinSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)RNA SequencemedicineRNATranslation (biology)Computational biologyGuanine-Quadruplexesmedicine.disease_causeGenomeDNA
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