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#covalentinhibitor — Public Fediverse posts

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  1. Interesting paper by the groups of Bradley Pentelute and Aaron Nile in Chemical Science.

    They developed an on-resin, intermolecular Heck reaction to diversify acrylamides for covalent hit discovery using covalent peptide-encoded libraries (coPELs).

    pubs.rsc.org/sc/article/doi/10

    #Chemistry #ChemBio #DrugDiscovery #CovalentInhibitor

  2. Interesting paper by the groups of Bradley Pentelute and Aaron Nile in Chemical Science.

    They developed an on-resin, intermolecular Heck reaction to diversify acrylamides for covalent hit discovery using covalent peptide-encoded libraries (coPELs).

    pubs.rsc.org/sc/article/doi/10

    #Chemistry #ChemBio #DrugDiscovery #CovalentInhibitor

  3. Interesting paper by the groups of Bradley Pentelute and Aaron Nile in Chemical Science.

    They developed an on-resin, intermolecular Heck reaction to diversify acrylamides for covalent hit discovery using covalent peptide-encoded libraries (coPELs).

    pubs.rsc.org/sc/article/doi/10

    #Chemistry #ChemBio #DrugDiscovery #CovalentInhibitor

  4. Interesting paper by the groups of Bradley Pentelute and Aaron Nile in Chemical Science.

    They developed an on-resin, intermolecular Heck reaction to diversify acrylamides for covalent hit discovery using covalent peptide-encoded libraries (coPELs).

    pubs.rsc.org/sc/article/doi/10

    #Chemistry #ChemBio #DrugDiscovery #CovalentInhibitor

  5. Interesting paper by the groups of Bradley Pentelute and Aaron Nile in Chemical Science.

    They developed an on-resin, intermolecular Heck reaction to diversify acrylamides for covalent hit discovery using covalent peptide-encoded libraries (coPELs).

    pubs.rsc.org/sc/article/doi/10

    #Chemistry #ChemBio #DrugDiscovery #CovalentInhibitor

  6. Interesting ChemRxiv preprint by the group of Katrin Rittinger. They use enantiomeric pairs of covalent inhibitors to profile ligandable cysteines in the proteome. Interesting use of machine learning to predict new compounds that can add most to the ligandable space.

    doi.org/10.26434/chemrxiv.1500

    #ChemicalProbes #ChemicalProteomics #ProteoProbes #Chemistry #ChemBio #Ligandability #Cysteine #CovalentInhibitor

  7. Interesting ChemRxiv preprint by the group of Katrin Rittinger. They use enantiomeric pairs of covalent inhibitors to profile ligandable cysteines in the proteome. Interesting use of machine learning to predict new compounds that can add most to the ligandable space.

    doi.org/10.26434/chemrxiv.1500

    #ChemicalProbes #ChemicalProteomics #ProteoProbes #Chemistry #ChemBio #Ligandability #Cysteine #CovalentInhibitor

  8. Interesting ChemRxiv preprint by the group of Katrin Rittinger. They use enantiomeric pairs of covalent inhibitors to profile ligandable cysteines in the proteome. Interesting use of machine learning to predict new compounds that can add most to the ligandable space.

    doi.org/10.26434/chemrxiv.1500

    #ChemicalProbes #ChemicalProteomics #ProteoProbes #Chemistry #ChemBio #Ligandability #Cysteine #CovalentInhibitor

  9. Interesting ChemRxiv preprint by the group of Katrin Rittinger. They use enantiomeric pairs of covalent inhibitors to profile ligandable cysteines in the proteome. Interesting use of machine learning to predict new compounds that can add most to the ligandable space.

    doi.org/10.26434/chemrxiv.1500

    #ChemicalProbes #ChemicalProteomics #ProteoProbes #Chemistry #ChemBio #Ligandability #Cysteine #CovalentInhibitor

  10. Interesting ChemRxiv preprint by the group of Katrin Rittinger. They use enantiomeric pairs of covalent inhibitors to profile ligandable cysteines in the proteome. Interesting use of machine learning to predict new compounds that can add most to the ligandable space.

    doi.org/10.26434/chemrxiv.1500

    #ChemicalProbes #ChemicalProteomics #ProteoProbes #Chemistry #ChemBio #Ligandability #Cysteine #CovalentInhibitor

  11. Great talk by Phillip Yesley from the group of Wim Velema at #Lunteren2026.

    He discussed the use of mutational profiling to find covalent ligands for structured #RNA using acyl imidazoles as the reactive group.

    onlinelibrary.wiley.com/doi/10
    #Chemistry #ChemBio #Covalent #CovalentInhibitor

  12. Great talk by Phillip Yesley from the group of Wim Velema at #Lunteren2026.

    He discussed the use of mutational profiling to find covalent ligands for structured #RNA using acyl imidazoles as the reactive group.

    onlinelibrary.wiley.com/doi/10
    #Chemistry #ChemBio #Covalent #CovalentInhibitor

  13. Great talk by Phillip Yesley from the group of Wim Velema at #Lunteren2026.

    He discussed the use of mutational profiling to find covalent ligands for structured #RNA using acyl imidazoles as the reactive group.

    onlinelibrary.wiley.com/doi/10
    #Chemistry #ChemBio #Covalent #CovalentInhibitor

  14. Great talk by Phillip Yesley from the group of Wim Velema at #Lunteren2026.

    He discussed the use of mutational profiling to find covalent ligands for structured #RNA using acyl imidazoles as the reactive group.

    onlinelibrary.wiley.com/doi/10
    #Chemistry #ChemBio #Covalent #CovalentInhibitor

  15. Very happy that Marnix Roseboom represented our group of the @LED3hub with a very well-attended talk at #NWOCHAINS. He reported on his #PhD work on developing #ChemoProteomics technologies to study #CovalentInhibitor target engagement at arginines.

    #Chemistry #ChemBio #ProudPI

  16. Very happy that Marnix Roseboom represented our group of the @LED3hub with a very well-attended talk at #NWOCHAINS. He reported on his #PhD work on developing #ChemoProteomics technologies to study #CovalentInhibitor target engagement at arginines.

    #Chemistry #ChemBio #ProudPI

  17. Very happy that Marnix Roseboom represented our group of the @LED3hub with a very well-attended talk at #NWOCHAINS. He reported on his #PhD work on developing #ChemoProteomics technologies to study #CovalentInhibitor target engagement at arginines.

    #Chemistry #ChemBio #ProudPI

  18. Very happy that Marnix Roseboom represented our group of the @LED3hub with a very well-attended talk at #NWOCHAINS. He reported on his #PhD work on developing #ChemoProteomics technologies to study #CovalentInhibitor target engagement at arginines.

    #Chemistry #ChemBio #ProudPI