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#proteinproteininteractions — Public Fediverse posts

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  1. Computational Structural Biologist
    Bindbridge

    Bindbridge is advancing sustainable agriculture through AI-powered molecular glue discovery. We are looking for a Computational Structural Biologist!

    See the full job description on jobRxiv: jobrxiv.org/job/bindbridge-277

    ...
    jobrxiv.org/job/bindbridge-277

  2. 🚀 What if we could precisely target the CAPON–nNOS axis — a pathway long considered undruggable?

    🔗 Targeting CAPON to modulate the CAPON–NOS Axis: a computational approach. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #DrugDiscovery #ComputationalBiology #AlzheimersResearch #Neuroscience #ProteinProteinInteractions #VirtualScreening #MolecularDynamics #AIinDrugDiscovery

  3. 🚀 What if we could precisely target the CAPON–nNOS axis — a pathway long considered undruggable?

    🔗 Targeting CAPON to modulate the CAPON–NOS Axis: a computational approach. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #DrugDiscovery #ComputationalBiology #AlzheimersResearch #Neuroscience #ProteinProteinInteractions #VirtualScreening #MolecularDynamics #AIinDrugDiscovery

  4. 🚀 What if we could precisely target the CAPON–nNOS axis — a pathway long considered undruggable?

    🔗 Targeting CAPON to modulate the CAPON–NOS Axis: a computational approach. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #DrugDiscovery #ComputationalBiology #AlzheimersResearch #Neuroscience #ProteinProteinInteractions #VirtualScreening #MolecularDynamics #AIinDrugDiscovery

  5. 🚀 What if we could precisely target the CAPON–nNOS axis — a pathway long considered undruggable?

    🔗 Targeting CAPON to modulate the CAPON–NOS Axis: a computational approach. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #DrugDiscovery #ComputationalBiology #AlzheimersResearch #Neuroscience #ProteinProteinInteractions #VirtualScreening #MolecularDynamics #AIinDrugDiscovery

  6. 💡 AI can predict protein structures — but can it predict how they behave?

    🔗 AlphaFold3 prediction of protein-protein complex: Is it ready for thermodynamic analysis?. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.10

    📚 CSBJ: csbj.org/

    #AlphaFold3 #ProteinDesign #MolecularModeling #ComputationalBiology #StructuralBiology #Thermodynamics #ProteinProteinInteractions #Bioinformatics

  7. 💡 AI can predict protein structures — but can it predict how they behave?

    🔗 AlphaFold3 prediction of protein-protein complex: Is it ready for thermodynamic analysis?. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.10

    📚 CSBJ: csbj.org/

    #AlphaFold3 #ProteinDesign #MolecularModeling #ComputationalBiology #StructuralBiology #Thermodynamics #ProteinProteinInteractions #Bioinformatics

  8. 💡 AI can predict protein structures — but can it predict how they behave?

    🔗 AlphaFold3 prediction of protein-protein complex: Is it ready for thermodynamic analysis?. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.10

    📚 CSBJ: csbj.org/

    #AlphaFold3 #ProteinDesign #MolecularModeling #ComputationalBiology #StructuralBiology #Thermodynamics #ProteinProteinInteractions #Bioinformatics

  9. 💡 AI can predict protein structures — but can it predict how they behave?

    🔗 AlphaFold3 prediction of protein-protein complex: Is it ready for thermodynamic analysis?. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.10

    📚 CSBJ: csbj.org/

    #AlphaFold3 #ProteinDesign #MolecularModeling #ComputationalBiology #StructuralBiology #Thermodynamics #ProteinProteinInteractions #Bioinformatics

  10. Huang Tan et al. describe their new Ti-TAN #plasmid toolbox for TurboID-based proximity labeling assays in N. benthamiana. Read the full paper here!
    #PlantScience #OpenAccess #proteinproteininteractions #TurboID
    onlinelibrary.wiley.com/doi/10

  11. Huang Tan et al. describe their new Ti-TAN #plasmid toolbox for TurboID-based proximity labeling assays in N. benthamiana. Read the full paper here!
    #PlantScience #OpenAccess #proteinproteininteractions #TurboID
    onlinelibrary.wiley.com/doi/10

  12. A new proteomic workflow establishing interdependencies between protein #phosphorylation & complex formation is applied to the signal integrator & Hippo pathway effector YAP1 ➡️ bit.ly/3mJ4W0t
    Matthias Gstaiger @eth_en
    #proteomics #interactome #ProteinProteinInteractions #CellSignaling

  13. A new proteomic workflow establishing interdependencies between protein #phosphorylation & complex formation is applied to the signal integrator & Hippo pathway effector YAP1 ➡️ bit.ly/3mJ4W0t
    Matthias Gstaiger @eth_en
    #proteomics #interactome #ProteinProteinInteractions #CellSignaling

  14. A new proteomic workflow establishing interdependencies between protein #phosphorylation & complex formation is applied to the signal integrator & Hippo pathway effector YAP1 ➡️ bit.ly/3mJ4W0t
    Matthias Gstaiger @eth_en
    #proteomics #interactome #ProteinProteinInteractions #CellSignaling

  15. News &Views by
    P Kastritis on the recent study from the Rappsilber lab identifying bacterial PPIs in their cellular context by combining whole-cell crosslinking, co-fractionation #massspectrometry & AI-based PPI structure prediction ➡️bit.ly/3FfcIVY
    #proteomics #ProteinProteinInteractions #SystemsBiology #Alphafold

  16. News &Views by
    P Kastritis on the recent study from the Rappsilber lab identifying bacterial PPIs in their cellular context by combining whole-cell crosslinking, co-fractionation #massspectrometry & AI-based PPI structure prediction ➡️bit.ly/3FfcIVY
    #proteomics #ProteinProteinInteractions #SystemsBiology #Alphafold

  17. News &Views by
    P Kastritis on the recent study from the Rappsilber lab identifying bacterial PPIs in their cellular context by combining whole-cell crosslinking, co-fractionation #massspectrometry & AI-based PPI structure prediction ➡️bit.ly/3FfcIVY
    #proteomics #ProteinProteinInteractions #SystemsBiology #Alphafold

  18. An integrative approach using crosslinking #massspectrometry (MS), co-fractionation MS & #Alphafold-Multimer discovers new protein complexes & their topologies in B.subtillis ➡️ bit.ly/3kpjocU
    from Juri Rappsilber (TU Berlin), Jörg Stülke (Uni Goettingen)
    #proteomics #SystemsBiology #ProteinProteinInteractions

  19. An integrative approach using crosslinking #massspectrometry (MS), co-fractionation MS & #Alphafold-Multimer discovers new protein complexes & their topologies in B.subtillis ➡️ bit.ly/3kpjocU
    from Juri Rappsilber (TU Berlin), Jörg Stülke (Uni Goettingen)
    #proteomics #SystemsBiology #ProteinProteinInteractions

  20. An integrative approach using crosslinking #massspectrometry (MS), co-fractionation MS & #Alphafold-Multimer discovers new protein complexes & their topologies in B.subtillis ➡️ bit.ly/3kpjocU
    from Juri Rappsilber (TU Berlin), Jörg Stülke (Uni Goettingen)
    #proteomics #SystemsBiology #ProteinProteinInteractions

  21. An integrative approach using crosslinking #massspectrometry (MS), co-fractionation MS & #Alphafold-Multimer discovers new protein complexes & their topologies in B.subtillis ➡️ bit.ly/3kpjocU
    from Juri Rappsilber (TU Berlin), Jörg Stülke (Uni Goettingen)
    #proteomics #SystemsBiology #ProteinProteinInteractions

  22. ABOLISH: an optimised biotin-ligation method for discovering stable & transient #ProteinProteinInteractions in yeast ➡️ embopress.org/doi/full/10.1525
    from Maya Schuldiner's lab, Weizmann Institute
    #SystemsBiology #Scerevisiae

  23. ABOLISH: an optimised biotin-ligation method for discovering stable & transient #ProteinProteinInteractions in yeast ➡️ bit.ly/3ktzuBT
    from Maya Schuldiner's lab, Weizmann Institute
    #SystemsBiology #Scerevisiae

  24. ABOLISH: an optimised biotin-ligation method for discovering stable & transient #ProteinProteinInteractions in yeast ➡️ embopress.org/doi/full/10.1525
    from Maya Schuldiner's lab, Weizmann Institute
    #SystemsBiology #Scerevisiae

  25. ABOLISH: an optimised biotin-ligation method for discovering stable & transient #ProteinProteinInteractions in yeast ➡️ embopress.org/doi/full/10.1525
    from Maya Schuldiner's lab, Weizmann Institute
    #SystemsBiology #Scerevisiae