Search results for "G-quadruplex"

showing 7 items of 97 documents

A Push-Pull Mechanism Helps Design Highly Competent G-Quadruplex-DNA Catalysts

2021

International audience; Massive efforts are currently being invested to improve the performance, versatility, and scope of applications of nucleic acid catalysts. G-quadruplex (G4)/hemin DNAzymes are of particular interest owing to their structural programmability and chemical robustness. However, optimized catalytic efficiency is still bottleneck and the activation mechanism is unclear. Herein, we have designed a series of parallel G4s with different proximal cytosine (dC) derivatives to fine-tune the hemin-binding pocket for G4-DNAzymes. Combining theoretical and experimental methods, we have assessed the dependence of catalytic enhancement on the electronic properties of proximal dCs and…

[SDV.BIO]Life Sciences [q-bio]/BiotechnologyDNAzymeDeoxyribozyme010402 general chemistryG-quadruplex01 natural sciencesCatalysischemistry.chemical_compoundPush–pull mechanismG-quadruplex010405 organic chemistryChemistryMechanism (biology)Robustness (evolution)[CHIM.CATA] Chemical Sciences/CatalysisGeneral Chemistry[CHIM.CATA]Chemical Sciences/CatalysisCombinatorial chemistry0104 chemical sciences[SDV.BIO] Life Sciences [q-bio]/Biotechnology[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistry[CHIM.THEO] Chemical Sciences/Theoretical and/or physical chemistryNucleic acidHeminDNAHeminElectron density
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The noncovalent dimerization of a G-quadruplex/hemin DNAzyme improves its biocatalytic properties.

2020

While many protein enzymes exert their functions through multimerization, which improves both selectivity and activity, this has not yet been demonstrated for other naturally occurring catalysts. Here, we report a multimerization effect applied to catalytic DNAs (or DNAzymes) and demonstrate that the enzymatic efficiency of G-quadruplexes (GQs) in interaction with the hemin cofactor is remarkably enhanced by homodimerization. The resulting non-covalent dimeric GQ–DNAzyme system provides hemin with a structurally defined active site in which both the cofactor (hemin) and the oxidant (H2O2) are activated. This new biocatalytic system efficiently performs peroxidase- and peroxygenase-type biot…

[SDV.BIO]Life Sciences [q-bio]/BiotechnologyDeoxyribozyme010402 general chemistryG-quadruplex01 natural sciencesCofactor03 medical and health scienceschemistry.chemical_compoundheterocyclic compounds030304 developmental biologychemistry.chemical_classification0303 health sciencesbiologyChemistryActive siteGeneral Chemistry[CHIM.CATA]Chemical Sciences/CatalysisCombinatorial chemistry[SDE.ES]Environmental Sciences/Environmental and Society0104 chemical sciencesChemistryEnzymebiology.proteinSelectivityPeroxidaseHeminChemical science
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Intragenic G-quadruplex structure formed in the human CD133 and its biological and translational relevance.

2016

Cancer stem cells (CSCs) have been identified in several solid malignancies and are now emerging as a plausible target for drug discovery. Beside the questionable existence of CSCs specific markers, the expression of CD133 was reported to be responsible for conferring CSC aggressiveness. Here, we identified two G-rich sequences localized within the introns 3 and 7 of the CD133 gene able to form G-quadruplex (G4) structures, bound and stabilized by small molecules. We further showed that treatment of patient-derived colon CSCs with G4-interacting agents triggers alternative splicing that dramatically impairs the expression of CD133. Interestingly, this is strongly associated with a loss of C…

cancer stem cells0301 basic medicineDNA damageSettore BIO/11 - Biologia MolecolareTumor initiationBiologyG-quadruplex03 medical and health sciencesCancer stem cellAntigens CDCell Line TumorG-QuadruplexeGeneticsHumansNeoplasm InvasivenessAC133 AntigenGeneGlycoproteinsCell ProliferationSettore MED/04 - Patologia GeneraleNeoplasm InvasiveneG-quadruplexProtein BiosynthesiDrug discoveryGene regulation Chromatin and EpigeneticsAlternative splicingIntroncd133Molecular biologyG-QuadruplexesGene Expression Regulation Neoplastic030104 developmental biologyCell Transformation NeoplasticDrug Resistance NeoplasmProtein BiosynthesisPeptideNeoplastic Stem CellsCancer researchNeoplastic Stem CellSettore MED/46 - Scienze Tecniche Di Medicina Di LaboratorioGlycoproteinPeptidesHuman
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Cluster dirhenium(III) cis-dicarboxylates with α-amino acids ligands as mighty selective G4s binders.

2021

The synthesis of four dirhenium(III) cis-dicarboxylates with the α-amino acids residues Asp (I), Glu (II), Phe (III) and Tyr (IV) is presented. The G-quadruplex stabilization potential was evaluated by fluorescence resonance energy transfer - melting analysis. All derivatives show specific binding to c-kit1 quadruplex, while II and IV have also strong stabilization activity to HTelo21 quadruplex. At the same time, the compounds do not show any stabilization activity for ds26 DNA, which suggests unique mechanisms of molecular DNA recognition for these complexes.

chemistry.chemical_classificationMolecular StructureStereochemistrychemistry.chemical_elementDNARheniumG-quadruplexLigandsBiochemistryAmino acidInorganic ChemistryG-Quadruplexeschemistry.chemical_compoundFörster resonance energy transferRheniumchemistryCoordination ComplexesCluster (physics)Fluorescence Resonance Energy TransferHumansheterocyclic compoundsAmino AcidsDNADna recognitionJournal of inorganic biochemistry
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Design of guanidinium porphyrins as potential G-quadruplex ligands

2012

We report herein an easy and smooth synthesis of two novel tetra-meso-substituted porphyrins bearing terminal guanidinium functionalities. These two guanidine derivatives are the porphyrin-based analogs of ZnPC , a closely related phthalocyanine-based molecule with four guanidinium arms already reported as an efficient G-quadruplex ligand.

chemistry.chemical_compoundchemistryStereochemistryLigandPhthalocyanineMoleculeGeneral ChemistryG-quadruplexPorphyrinGuanidine derivativesJournal of Porphyrins and Phthalocyanines
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“One Ring to Bind Them All”—Part II: Identification of Promising G-Quadruplex Ligands by Screening of Cyclophane-Type Macrocycles

2010

A collection of 26 polyammonium cyclophane-type macrocycles with a large structural diversity has been screened for G-quadruplex recognition. A two-step selection procedure based on the FRET-melting assay was carried out enabling identification of macrocycles of high affinity (ΔT1/2up to30°C) and high selectivity for the human telomeric G-quadruplex. The four selected hits possess sophisticated architectures, more particularly the presence of a pendant side-arm as well as the existence of a particular topological arrangement appear to be strong determinants of quadruplex binding. These compounds are thus likely to create multiple contacts with the target that may be at the origin of their h…

lcsh:QH426-470Article SubjectHigh selectivityStructural diversityBiology010402 general chemistryRing (chemistry)G-quadruplexBioinformatics01 natural sciencesBiochemistrylcsh:Biochemistry03 medical and health scienceschemistry.chemical_compound[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular Biology[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biologylcsh:QD415-436Molecular Biology030304 developmental biology0303 health sciencesCombinatorial chemistry0104 chemical scienceslcsh:GeneticschemistryIdentification (biology)CyclophaneResearch ArticleJournal of Nucleic Acids
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Quinoline anticancer agents active on DNA and DNA-interacting proteins: From classical to emerging therapeutic targets.

2021

Quinoline is one of the most important and versatile nitrogen heterocycles embodied in several biologically active molecules. Within the numerous quinolines developed as antiproliferative agents, this review is focused on compounds interfering with DNA structure or with proteins/enzymes involved in the regulation of double helix functional processes. In this light, a special focus is given to the quinoline compounds, acting with classical/well-known mechanisms of action (DNA intercalators or Topoisomerase inhibitors). In particular, the quinoline drugs amsacrine and camptothecin (CPT) have been studied as key lead compounds for the development of new agents with improved PK and tolerability…

medicine.drug_classAntineoplastic Agents01 natural sciences03 medical and health scienceschemistry.chemical_compoundDrug DiscoverymedicineHumansAmsacrine030304 developmental biologyCell ProliferationPharmacology0303 health sciencesDNA Intercalators G-quadruplex Topoisomerase Epigenetic targets Antiproliferative compounds SAR studiesbiologyMolecular Structure010405 organic chemistryTopoisomeraseOrganic ChemistryQuinolineGeneral MedicineDNA NeoplasmSettore CHIM/08 - Chimica Farmaceutica0104 chemical sciencesDNA-Binding ProteinsG-QuadruplexesHistonechemistryBiochemistrybiology.proteinQuinolinesHistone deacetylaseCamptothecinDNATopoisomerase inhibitormedicine.drugEuropean journal of medicinal chemistry
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