Description

Book Synopsis

 Advanced computational methods in protein simulations.- Enhanced sampling and free energy calculations in protein simulations.- Design of protein structure and function.- Artificial intelligence in protein structure prediction.- Optimized methods for site identification in proteins.- Machine Learning tools for Peptide Protein Interaction Prediction.- Simulating Protein Ligand Binding with Neural Network Potentials.- Prediction of protein complex structures using protein protein interaction data.- Advances in X ray crystallography and cryo EM structural studies of

protein structure and function.- Fluorescence microscopy methods for studying dynamics of fluorescent proteins in vivo.- Nanoscale fluorescence imaging of proteins.- Multiplexed protein imaging methods.- Determining protein structure by combining protein chemistry with mass spectrometry.- NMR spectroscopy techniques as a tool for characterizing the interactions in protein-protein complexes.- Electrophysiology tools in the study of ion channel proteins.

Unlocking Protein StructureFunction Relationships

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    Order before 4pm today for delivery by Mon 15 Jun 2026.

    A Hardback by Avia Rosenhouse-Dantsker

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      View other formats and editions of Unlocking Protein StructureFunction Relationships by Avia Rosenhouse-Dantsker

      Publisher: Springer
      Publication Date: 20/12/2025
      ISBN13: 9783032075109, 978-3032075109
      ISBN10:

      Description

      Book Synopsis

       Advanced computational methods in protein simulations.- Enhanced sampling and free energy calculations in protein simulations.- Design of protein structure and function.- Artificial intelligence in protein structure prediction.- Optimized methods for site identification in proteins.- Machine Learning tools for Peptide Protein Interaction Prediction.- Simulating Protein Ligand Binding with Neural Network Potentials.- Prediction of protein complex structures using protein protein interaction data.- Advances in X ray crystallography and cryo EM structural studies of

      protein structure and function.- Fluorescence microscopy methods for studying dynamics of fluorescent proteins in vivo.- Nanoscale fluorescence imaging of proteins.- Multiplexed protein imaging methods.- Determining protein structure by combining protein chemistry with mass spectrometry.- NMR spectroscopy techniques as a tool for characterizing the interactions in protein-protein complexes.- Electrophysiology tools in the study of ion channel proteins.

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