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Protein dynamics

  • Fast Pressure-Jump All-Atom Simulations and Experiments Reveal Site-Specific Protein Dehydration-Folding Dynamics

    Fast Pressure-Jump All-Atom Simulations and Experiments Reveal Site-Specific Protein Dehydration-Folding Dynamics

  • Studying Backbone Torsional Dynamics of Intrinsically Disordered Proteins Using fluorescence Depolarization Kinetics

    Studying Backbone Torsional Dynamics of Intrinsically Disordered Proteins Using fluorescence Depolarization Kinetics

  • Linking Predictions of Protein Structure and Disorder Through Molecular Simulation

    Linking Predictions of Protein Structure and Disorder Through Molecular Simulation

  • The Conformation of Serum Albumin in Solution: a Combined Phosphorescence Depolarization-Hydrodynamic Modeling Study

    The Conformation of Serum Albumin in Solution: a Combined Phosphorescence Depolarization-Hydrodynamic Modeling Study

  • Numerical Evaluation of Protein Global Vibrations at Terahertz Frequencies by Means of Elastic Lattice Models †

    Numerical Evaluation of Protein Global Vibrations at Terahertz Frequencies by Means of Elastic Lattice Models †

  • Dynamics of Proteins in Solution Biophysics

    Dynamics of Proteins in Solution Biophysics

  • Comparisons of Protein Dynamics from Experimental Structure

    Comparisons of Protein Dynamics from Experimental Structure

  • Nucleolar Proteome Dynamics Analysis

    Nucleolar Proteome Dynamics Analysis

  • Fluorescence Methods to Study Protein Dynamics in Living Cells

    Fluorescence Methods to Study Protein Dynamics in Living Cells

  • Protein Dynamics and Entropy: Implications for Protein-Ligand Binding

    Protein Dynamics and Entropy: Implications for Protein-Ligand Binding

  • Protein Dynamics 11/16/16 and 11/18/16

    Protein Dynamics 11/16/16 and 11/18/16

  • Proteomics of Phosphorylation and Protein Dynamics During Fertilization

    Proteomics of Phosphorylation and Protein Dynamics During Fertilization

  • Proteins Are Not Rigid Structures: Protein Dynamics, Conformational Variability, and Thermodynamic Stability

    Proteins Are Not Rigid Structures: Protein Dynamics, Conformational Variability, and Thermodynamic Stability

  • Protein Dynamics: from Structure to Function

    Protein Dynamics: from Structure to Function

  • Protein Dynamics Intro from Rigid Structures to Motions on Energy

    Protein Dynamics Intro from Rigid Structures to Motions on Energy

  • High-Resolution Mass Spectrometry for in Vivo Proteome Dynamics Using Heavy Water Metabolic Labeling

    High-Resolution Mass Spectrometry for in Vivo Proteome Dynamics Using Heavy Water Metabolic Labeling

  • Mass Spectrometry-Based Structural Analysis of Photosynthetic Protein Assemblies Yue Lu Washington University in St

    Mass Spectrometry-Based Structural Analysis of Photosynthetic Protein Assemblies Yue Lu Washington University in St

  • Exploring the Ph-Induced Functional Phase Space of Human Serum Albumin by EPR Spectroscopy

    Exploring the Ph-Induced Functional Phase Space of Human Serum Albumin by EPR Spectroscopy

Top View
  • Modelling Intrinsically Disordered Protein Dynamics As Networks of Transient Secondary Structure
  • Protein Dynamics: from Molecules, to Interactions, to Biology
  • Machine Learning for Protein Folding and Dynamics
  • Network Analysis of Protein Dynamics
  • Studying Protein Dynamics in Living Cells
  • Perturbation Waves in Proteins and Protein Networks: Applications of Percolation and Game Theories in Signaling and Drug Design
  • A Consensus View of Protein Dynamics
  • Intrinsically Disordered Proteins in Crowded Milieu: When Chaos Prevails Within the Cellular Gumbo
  • Protein Tertiary Structure and the Myoglobin Phase Diagram Alexander Begun1, Alexander Molochkov1 & Antti J
  • Generative Adversarial Learning of Protein Tertiary Structures
  • How Fast Are the Motions of Tertiary-Structure Elements in Proteins?
  • Perspectives in Photosynthesis Proceedings of the Twenty-Second Jerusalem Symposium on Quantum Chemistry and Biochemistry Held in Jerusalem, Israel, May 15-18,1989
  • Molecular Dynamics Simulations Reveal Canonical Conformations in Different Pmhc/TCR Interactions
  • Phycobiliprotein Lyases: Structure of Reconstitution Products And
  • The Anti-Inflammatory Protein TNIP1 Is Intrinsically Disordered With
  • Nanopores – a Versatile Tool to Study Protein Dynamics
  • Protein Sequence-Structure-Dynamics-Function Relationships: the Close Association of Dynamics with Protein Function Sambit Kumar Mishra Iowa State University
  • Protein Dynamics and Function from Solution State NMR Spectroscopy


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