Search results for "CYSTEINE"

showing 10 items of 550 documents

Asymmetric Disulfanylbenzamides as Irreversible and Selective Inhibitors of Staphylococcus aureus Sortase A

2020

Abstract Staphylococcus aureus is one of the most frequent causes of nosocomial and community‐acquired infections, with drug‐resistant strains being responsible for tens of thousands of deaths per year. S. aureus sortase A inhibitors are designed to interfere with virulence determinants. We have identified disulfanylbenzamides as a new class of potent inhibitors against sortase A that act by covalent modification of the active‐site cysteine. A broad series of derivatives were synthesized to derive structure‐activity relationships (SAR). In vitro and in silico methods allowed the experimentally observed binding affinities and selectivities to be rationalized. The most active compounds were f…

Staphylococcus aureusmedicine.drug_classdrug designAntibioticsVirulenceMicrobial Sensitivity Testsmedicine.disease_cause01 natural sciencesBiochemistrybiofilmMicrobiology570 Life sciencesStructure-Activity RelationshipBacterial ProteinsAntibioticssortase ADrug DiscoverymedicineGeneral Pharmacology Toxicology and PharmaceuticsEnzyme InhibitorsCytotoxicityPharmacologyFull PaperDose-Response Relationship DrugMolecular Structure010405 organic chemistryChemistryOrganic ChemistryBiofilmFull PapersAminoacyltransferasesIn vitro0104 chemical sciencesAnti-Bacterial Agents010404 medicinal & biomolecular chemistryCysteine EndopeptidasesStaphylococcus aureusSortase Addc:540BenzamidesMolecular MedicineCysteine570 BiowissenschaftenChemmedchem
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Rethinking Cysteine Protective Groups:S-Alkylsulfonyl-l-Cysteines for Chemoselective Disulfide Formation

2016

The ability to reversibly cross-link proteins and peptides grants the amino acid cysteine its unique role in nature as well as in peptide chemistry. We report a novel class of S-alkylsulfonyl-l-cysteines and N-carboxy anhydrides (NCA) thereof for peptide synthesis. The S-alkylsulfonyl group is stable against amines and thus enables its use under Fmoc chemistry conditions and the controlled polymerization of the corresponding NCAs yielding well-defined homo- as well as block co-polymers. Yet, thiols react immediately with the S-alkylsulfonyl group forming asymmetric disulfides. Therefore, we introduce the first reactive cysteine derivative for efficient and chemoselective disulfide formation…

Stereochemistry010402 general chemistryCleavage (embryo)01 natural sciencesRing-opening polymerizationCatalysisAnhydridesPolymerizationchemistry.chemical_compoundPeptide synthesisCysteineDisulfidesSulfhydryl CompoundsAmineschemistry.chemical_classification010405 organic chemistryOrganic ChemistryGeneral Chemistry0104 chemical sciencesAmino acidchemistryPolymerizationDrug deliveryPeptidesDerivative (chemistry)CysteineChemistry - A European Journal
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2020

Electrophilic (het)arenes can undergo reactions with nucleophiles yielding π- or Meisenheimer (σ-) complexes or the products of the SNAr addition/elimination reactions. Such building blocks have only rarely been employed for the design of enzyme inhibitors. Herein, we demonstrate the combination of a peptidic recognition sequence with such electrophilic (het)arenes to generate highly active inhibitors of disease-relevant proteases. We further elucidate an unexpected mode of action for the trypanosomal protease rhodesain using NMR spectroscopy and mass spectrometry, enzyme kinetics and various types of simulations. After hydrolysis of an ester function in the recognition sequence of a weakly…

StereochemistryCarboxylic acidmedicine.medical_treatmentPharmaceutical Science010402 general chemistry01 natural sciencesAnalytical ChemistryNucleophileNucleophilic aromatic substitutionDrug DiscoverymedicineEnzyme kineticsPhysical and Theoretical Chemistrychemistry.chemical_classificationProteasebiology010405 organic chemistryOrganic ChemistryActive siteCysteine proteaseMeisenheimer complex0104 chemical scienceschemistryChemistry (miscellaneous)biology.proteinMolecular MedicineMolecules
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Putative identification of an amphipathic alpha-helical sequence in hemolysin of Escherichia coli (HlyA) involved in transmembrane pore formation.

2008

Abstract Escherichia coli hemolysin is a pore-forming protein belonging to the RTX toxin family. Cysteine scanning mutagenesis was performed to characterize the putative pore-forming domain of the molecule. A single cysteine residue was introduced at 48 positions within the sequence spanning residues 170–400 and labeled with the polarity-sensitive dye badan. Spectrofluorimetric analyses indicated that several amino acids in this domain are inserted into the lipid bilayer during pore formation. An amphipathic α-helix spanning residues 272–298 was identified that may line the aqueous pore. The importance of this sequence was highlighted by the introduction of two prolines at positions 284 and…

StereochemistryClinical BiochemistryAmino Acid MotifsPorinsmedicine.disease_causeBiochemistryProtein Structure SecondaryHemolysin ProteinsCell Line TumormedicineAnimalsHumansLipid bilayerMolecular BiologyEscherichia colichemistry.chemical_classificationEscherichia coli ProteinsRTX toxinMutagenesisErythrocyte MembraneHemolysinTransmembrane proteinAmino acidchemistryMutant ProteinsRabbitsCysteineBiological chemistry
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Triplet of cysteines – Coordinational riddle?

2020

Polythiol binding of metal ions plays crucial role in the proper functioning of cysteine-rich proteins that are responsible for metal homeostasis and defending processes against metal toxicity (including heavy metals detoxification). The coordination properties of cysteine residues involved in specific sequencional patterns in proteins (like those present in e.g. metallothioneins) are interesting not only from a chemical point of view but may also lead to a better understanding of the purpose and allocation of metal ions in various biomolecules. In this study, the interaction of Zn2+, Cd2+ and Ni2+ ions with four peptides containing cysteine triplet motif were studied by potentiometric and …

StereochemistryMetal ions in aqueous solutionMetal toxicity010402 general chemistry01 natural sciencesBiochemistryInorganic ChemistryMetalResidue (chemistry)chemistry.chemical_compoundCoordination ComplexesNickelAmideHumansCysteinechemistry.chemical_classification010405 organic chemistryBiomoleculePeptide Fragments0104 chemical sciencesZincchemistryvisual_artThiolvisual_art.visual_art_mediumMetallothioneinCadmiumCysteineJournal of Inorganic Biochemistry
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Coupling of the heme and an internal disulfide bond in human neuroglobin

2004

Neuroglobin displays a hexacoordination His-Fe-His in the absence of external ligands such as oxygen. The observed oxygen affinity therefore depends on the binding rates of both oxygen and the competing distal histidine. Furthermore, the binding properties depend on the presence of an internal disulfide bond. In the case of human neuroglobin, cysteines at positions CD7 and D5 are sufficiently close to form an internal disulfide bond. For cytoglobin, the cysteine residues at positions A7 and GH4 may also form a disulfide bond. Mass spectrometry, ligand binding, and thiol accessibility studies were used to study the role influence of these disulfide bonds. Mutation of specific cysteines, or r…

StereochemistryNeuroglobinGeneral Physics and Astronomychemistry.chemical_elementNerve Tissue ProteinsHemeOxygenMass Spectrometrychemistry.chemical_compoundStructural BiologyHumansGeneral Materials ScienceCysteineDisulfidesHemeHistidinechemistry.chemical_classificationCytoglobinCell BiologyGlobinsOxygenchemistryBiochemistryNeuroglobinThiolOxygen bindingCysteineMicron
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Presentation of insulin and insulin A chain peptides to mouse T cells: involvement of cysteine residues.

1991

The requirements for insulin presentation and recognition by A alpha b A beta b- and A alpha b A beta k-restricted mouse T cells were studied using a variety of derivatives of the insulin A chain. It was found that A chain peptides with irreversibly blocked Cys residues are non-stimulatory for the T cells. This suggests that at least one of the Cys residues is essential for recognition. On the other hand, all A chain peptides containing Cys residues modified in a way reversible by reaction with thiols are stimulatory yet differ in antigenic potency. All these A chain derivatives including a 14 amino acid fragment require uptake by antigen presenting cells (APC) for efficient presentation. D…

Swinemedicine.medical_treatmentT-LymphocytesImmunologyAntigen presentationReceptors Antigen T-CellAntigen-Presenting CellsPeptideMice Inbred StrainsIn Vitro TechniquesCell LineEpitopesMiceAntigenmedicineAnimalsInsulinCysteineAntigen-presenting cellMolecular Biologychemistry.chemical_classificationChemistryInsulinT-cell receptorHistocompatibility Antigens Class IIChloroquineAmino acidBiochemistryCattleInterleukin-3PeptidesCysteineMolecular immunology
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Regulation of B cell homeostasis and activation by the tumor suppressor gene CYLD

2007

B cell homeostasis is regulated by multiple signaling processes, including nuclear factor-kappaB (NF-kappaB), BAFF-, and B cell receptor signaling. Conditional disruption of genes involved in these pathways has shed light on the mechanisms governing signaling from the cell surface to the nucleus. We describe a novel mouse strain that expresses solely and excessively a naturally occurring splice variant of CYLD (CYLD(ex7/8) mice), which is a deubiquitinating enzyme that is integral to NF-kappaB signaling. This shorter CYLD protein lacks the TRAF2 and NEMO binding sites present in full-length CYLD. A dramatic expansion of mature B lymphocyte populations in all peripheral lymphoid organs occur…

TRAF2Tumor suppressor geneImmunologyCellBiologyArticleDeubiquitinating Enzyme CYLDMiceB cell homeostasismedicineAnimalsHomeostasisImmunology and AllergyB-cell activating factorEmbryonic Stem CellsSequence DeletionB-LymphocytesRELBGenetic VariationExonsArticlesFibroblastsDeubiquitinating Enzyme CYLDAlternative SplicingCysteine Endopeptidasesmedicine.anatomical_structureProtein BiosynthesisCancer researchSignal transductionSignal TransductionJournal of Experimental Medicine
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Hematopoietic stem cell quiescence and function are controlled by the CYLD–TRAF2–p38MAPK pathway

2015

Tesio at al. identify a novel pathway controlled by the tumor suppressor and deubiquitinase cylindromatosis (CYLD), which is involved in the regulation of hematopoietic stem cell quiescence and repopulation potential.

TRAF2Tumor suppressor geneMAP Kinase Signaling SystemImmunologyRegulatorBiologyp38 Mitogen-Activated Protein KinasesArticleMicemedicineAnimalsImmunology and AllergyMice KnockoutRegulation of gene expressionNF-kappa BHematopoietic stem cellCell BiologyHematopoietic Stem CellsTNF Receptor-Associated Factor 2PhenotypeDeubiquitinating Enzyme CYLDCell biologyCysteine EndopeptidasesHaematopoiesismedicine.anatomical_structureGene Expression RegulationMutationStem cellJournal of Experimental Medicine
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Kti12, a PSTK-like tRNA dependent ATPase essential for tRNA modification by Elongator

2019

Abstract Posttranscriptional RNA modifications occur in all domains of life. Modifications of anticodon bases are of particular importance for ribosomal decoding and proteome homeostasis. The Elongator complex modifies uridines in the wobble position and is highly conserved in eukaryotes. Despite recent insights into Elongator's architecture, the structure and function of its regulatory factor Kti12 have remained elusive. Here, we present the crystal structure of Kti12′s nucleotide hydrolase domain trapped in a transition state of ATP hydrolysis. The structure reveals striking similarities to an O-phosphoseryl-tRNA kinase involved in the selenocysteine pathway. Both proteins employ similar …

TRNA modificationSaccharomyces cerevisiae ProteinsProtein ConformationWobble base pairSaccharomyces cerevisiaeBiologyChaetomiumCrystallography X-Ray03 medical and health scienceschemistry.chemical_compound0302 clinical medicineRNA TransferATP hydrolysisGeneticsRNA and RNA-protein complexesAnticodonRNA Processing Post-TranscriptionalUridine030304 developmental biologyAdaptor Proteins Signal TransducingAdenosine Triphosphatases0303 health sciencesSelenocysteineRNATRNA bindingCell biologychemistryTransfer RNASelenocysteine incorporationCarrier ProteinsRibosomes030217 neurology & neurosurgery
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