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Showing 1 to 4 of 4 for “"thiol-reactivity"”.

  1. The Development of a Fragment-Based in silico Profiler for the Prediction of Thiol Reactivity and Toxicity

    … (chemical experiments e.g. determination of reactivity) and in silico (computational) approaches. Importantly, it is envisaged that data from all these alternative sources will be required for the prediction of the animal-based endpoints used in regulatory toxicology. One of the key …

    liverpool-jm Repository record for The Development of a Fragment-Based in silico Profiler for the Prediction of Thiol Reactivity and Toxicity (opens in a new tab)

  2. Development of biophysical and Mass Spectrometry Assays for APOBEC3 cytosine deaminases: discovery and validation of cnvalent and non-covalent ligands

    … developed for the detection of non-specific thiol binding of covalent compounds. The assay, termed ALARM MSPS (A La Assay to detect Reactive Molecules via Mass Spectrometry Peptide Sequencing), can be utilized to measure any covalent compound and its non-specific protein thiol reactivity

    umn Repository record for Development of biophysical and Mass Spectrometry Assays for APOBEC3 cytosine deaminases: discovery and validation of cnvalent and non-covalent ligands (opens in a new tab)

  3. The Mechanism of N10-Formyltetrahydrofolate Synthetase. Use of Human Thymidylate Synthase Variants to Characterize Asymmetric Ligand Binding and to Identify Novel Allosteric Inhibitors.

    … of the catalytic Cys195, correlating to thiol reactivity of the residue. Additionally, this active mutant allows for the diffusion of drug candidates and the monitoring of their mode of interaction with the hTS target. It also allows for the diffusion and determination of the mode of …

    south-carolina Repository record for The Mechanism of N10-Formyltetrahydrofolate Synthetase. Use of Human Thymidylate Synthase Variants to Characterize Asymmetric Ligand Binding and to Identify Novel Allosteric Inhibitors. (opens in a new tab)

  4. Thiol-Based Misfolding: Linking Redox Balance to Cytosolic Proteostasis

    … proteins are especially at risk as the thiol side chain is subject to oxidation, adduction and chelation by thiol-reactive compounds. All of these thiol-modifiers have been demonstrated to induce the heat shock response and recruit protein chaperones to sites of presumed protein …

    uthsc Repository record for Thiol-Based Misfolding: Linking Redox Balance to Cytosolic Proteostasis (opens in a new tab)