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Illustrated Handbook of Structural Bioinformatics

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Free Download Illustrated Handbook of Structural Bioinformatics
by Samira Bührer
English | 2024 | ISBN: 9781984690265 | 305 Pages | True PDF | 19 MB​

Structural bioinformatics is an interdisciplinary field that combines the principles of biology, chemistry, and computer science to study the three-dimensional structures of biological molecules such as proteins, DNA, and RNA. This field is essential in understanding the functions and interactions of these molecules and their role in various biological processes. One of the main techniques used in structural bioinformatics is protein structure prediction. This involves using computational methods to predict the three-dimensional structure of a protein based on its amino acid sequence. These predictions can then be validated using experimental techniques such as X-ray crystallography or nuclear magnetic resonance (NMR) spectroscopy. Another important aspect of structural bioinformatics is protein structure analysis. This involves studying the structure of a protein and its interactions with other molecules, such as ligands or other proteins. This information can be used to understand the function of the protein and to design new drugs or therapies. Structural bioinformatics also plays a crucial role in drug discovery and design. By studying the structure of a target protein, researchers can identify potential binding sites for drug molecules and design drugs that can specifically target and interact with these sites.
The Illustrated Handbook of Structural Bioinformatics is a comprehensive guide that provides an in-depth overview of this complex and rapidly evolving field. This handbook covers a wide range of topics, including protein structure prediction, protein-ligand interactions, and molecular dynamics simulations. It also includes detailed illustrations and diagrams to help readers visualize the concepts and techniques discussed. One of the key focuses of this handbook is protein structure prediction, which is the process of determining the three-dimensional structure of a protein from its amino acid sequence. This is a crucial step in understanding the function of a protein and its role in biological processes.


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