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#membraneproteins — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #membraneproteins, aggregated by home.social.

  1. 🧩 What if the diverse functions of a single protein all trace back to one structural superfamily?

    🔗 Evolutionary and structural bioinformatics identifies GPR89 as a conserved member of the LIMR protein superfamily. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #StructuralBiology #ComputationalBiology #MolecularEvolution #ProteinScience #Genomics #Proteomics #AlphaFold #MembraneProteins #Genetics #Bioinformatics

  2. 🧩 What if the diverse functions of a single protein all trace back to one structural superfamily?

    🔗 Evolutionary and structural bioinformatics identifies GPR89 as a conserved member of the LIMR protein superfamily. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #StructuralBiology #ComputationalBiology #MolecularEvolution #ProteinScience #Genomics #Proteomics #AlphaFold #MembraneProteins #Genetics #Bioinformatics

  3. 🧩 What if the diverse functions of a single protein all trace back to one structural superfamily?

    🔗 Evolutionary and structural bioinformatics identifies GPR89 as a conserved member of the LIMR protein superfamily. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #StructuralBiology #ComputationalBiology #MolecularEvolution #ProteinScience #Genomics #Proteomics #AlphaFold #MembraneProteins #Genetics #Bioinformatics

  4. 🧩 What if the diverse functions of a single protein all trace back to one structural superfamily?

    🔗 Evolutionary and structural bioinformatics identifies GPR89 as a conserved member of the LIMR protein superfamily. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.11

    📚 CSBJ: csbj.org/

    #StructuralBiology #ComputationalBiology #MolecularEvolution #ProteinScience #Genomics #Proteomics #AlphaFold #MembraneProteins #Genetics #Bioinformatics

  5. 🔬 Could a tiny imbalance in ATP binding be the key to drug resistance in cancer?

    🔗 Nucleotide asymmetry and flexible linker dynamics modulate drug efflux cycle of P-glycoprotein, A computational study. Computational and Structural Biotechnology Journal, DOI: doi.org/10.1016/j.csbj.2025.10

    📚 CSBJ: csbj.org/

    #DrugResistance #MolecularDynamics #StructuralBiology #MembraneProteins #CancerResearch #Pharmacology #DrugDiscovery #ChemotherapyResistance #ProteinDynamics #Pgp #ABCB1 #Biophysics

  6. Exploring ML + MD for membrane proteins: moving beyond manual inspection to detect events, change-points, and metastable states in long trajectories. Faster clustering, better patterns, fewer blind spots. Anyone pairing k-means with HELM or similar for refinement? 🤔

    #MolecularDynamics #MachineLearning #Bioinformatics #MembraneProteins

    is.gd/5Ycb2P

  7. Nabla Bio: Revolutionizing Antibody Design Through Target Engineering

    In a world saturated with antibody design startups, Nabla Bio emerges with a groundbreaking approach that focuses on engineering drug targets rather than the antibodies themselves. By tackling the cha...

    news.lavx.hu/article/nabla-bio

    #news #tech #NablaBio #MembraneProteins #AntibodyEngineering

  8. 📝 Call for Papers: Special Issue on "Mechanistic insights into membrane protein dynamics and allostery: implications in drug discovery"

    🔗Link to the 'Call for Papers': csbj.org/allostery

    📊 Guest Editor:

    🌟Prithviraj Nandigrami, Albert Einstein College of Medicine, USA

    #membraneproteins #proteindynamics #proteinstructure #drugdiscovery #transmembranesignaling #molecularsimulation #therapeuticmolecules

  9. Rock around the clock! Classic from Jonathan Ashmore. Eduardo Perozo tells us about prestin at the Dynion @dfg_public Symposium in Jena #MembraneProteins #hearing #electromotility

    ucl.ac.uk/ear/research/ashmore

  10. How is aggregation of #MembraneProteins regulated? @rachel_kandel @Neal_Lab &co show that yeast derlin Dfm1 has a #chaperone-like function that affects solubility of ER-resident misfolded membrane proteins #aging #neurodegeneration #PLOSBiology plos.io/3DaKk6u

  11. How is aggregation of #MembraneProteins regulated? @rachel_kandel @Neal_Lab &co show that yeast derlin Dfm1 has a #chaperone-like function that affects solubility of ER-resident misfolded membrane proteins #aging #neurodegeneration #PLOSBiology plos.io/3DaKk6u

  12. How is aggregation of #MembraneProteins regulated? @rachel_kandel @Neal_Lab &co show that yeast derlin Dfm1 has a #chaperone-like function that affects solubility of ER-resident misfolded membrane proteins #aging #neurodegeneration #PLOSBiology plos.io/3DaKk6u