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This work presents a snapshot of the state of the art of modern biomolecular crystallography, from crystallisation through structure determination and even interactive presentation on the web. Methods driving the latest automated structure determination pipelines are explained, as well as how to deal with problems such as crystal pathologies that still demand expert analysis. These methods are illustrated through their application to problems of great biological interest, such as the molecular machinery underlying the complement pathway, the mechanism of action of monoamine oxidase inhibitors, and the structure of the eukaryotic ribosome. Complementary approaches, such as neutron diffraction, small angle X-ray scattering, coherent diffraction and computational modelling, are also explored.
Optics. Quantum optics --- Chemical structure --- Theoretical spectroscopy. Spectroscopic techniques --- Spectrometric and optical chemical analysis --- Organic chemistry --- Chemical and physical crystallography --- Chemistry --- General biochemistry --- moleculaire structuur --- kristallografie --- organische chemie --- biochemie --- chemie --- spectroscopie --- eiwitten --- moleculaire biologie --- spectrometrie
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While structure-function relationships of proteins have been studied for a long time, structural studies of RNA face additional challenges. Nevertheless, with the continuous discovery of novel RNA molecules with key cellular functions and of novel pathways and interaction networks, the need for structural information of RNA is still increasing. This volume provides an introduction into techniques to assess structure and folding of RNA. Each chapter explains the theoretical background of one technique, and illustrates possibilities and limitations in selected application examples.
Protein folding. --- RNA. --- Ribonucleic acid --- Ribose nucleic acid --- Nucleic acids --- Ribose --- Folding of proteins --- Proteins --- Folding --- Conformation --- Biophysics. --- Experimental Techniques. --- Prediction Methods.
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