Description

Book Synopsis

This book presents an overview of the current state of research in both synchrotron radiation and structural proteomics from different laboratories worldwide. The book presents recent research results in the most advanced methods of synchrotron radiation analysis, protein micro- and nano crystallography, X-ray scattering and X-ray optics, coherent X-Ray diffraction, and laser cutting and contactless sample manipulation are described in details. The book focuses on biological applications and highlights important aspects such as radiation damage and molecular modeling.



Trade Review

"This book provides valuable insight into the growing field of structural proteomics."
—Prof. Gary Stein, University of Massachusetts Medical School, USA



Table of Contents

Protein Micro- and Nanocrystallography Using Synchrotron Radiation. Single-Bounce Monocapillary X-Ray Optics: Design and Biological Applications. Thermophilic Enzymes of Potential Industrial Use: Structure and Function. Model Lysozyme Crystal Versus Aggregate, Un Confined Formation as Viewed by Recent Theory Aided by Computer Experiment. Molecular Modeling to Facilitate Protein Crystallization. Structural Analysis of the β-Subunit of the Translation Initiation Factor Aif2 from Different Species: Role of Zn Ions. Towards the Understanding of Molecular Aspects of Helicobacter pylori cag-PAI. Using X-Ray Scattering to Study the Structures of Membrane-Associated Proteins. An Overview of Langmuir Blodgett Protein Crystals via GISAXS, LASER , Raman and AFM. Radiation Damage in Protein Structural Characterization by Synchrotron Radiation: State of the Art and Nanotechnology-Based Perspective. Contactless Sample Manipulation for Synchrotron Radiation Experiments. Gold on Glass—The Annealing Process Investigated with GISAXS and Ellipsometry. Three-Dimensional Visualization of a Human Chromosome Using Coherent X-Ray Diffraction.

Synchrotron Radiation and Structural Proteomics

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    A Hardback by Eugenia Pechkova, Christian Riekel

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      Publisher: Pan Stanford Publishing Pte Ltd
      Publication Date: 11/11/2011
      ISBN13: 9789814267380, 978-9814267380
      ISBN10: 9814267384
      Also in:
      Biotechnology

      Description

      Book Synopsis

      This book presents an overview of the current state of research in both synchrotron radiation and structural proteomics from different laboratories worldwide. The book presents recent research results in the most advanced methods of synchrotron radiation analysis, protein micro- and nano crystallography, X-ray scattering and X-ray optics, coherent X-Ray diffraction, and laser cutting and contactless sample manipulation are described in details. The book focuses on biological applications and highlights important aspects such as radiation damage and molecular modeling.



      Trade Review

      "This book provides valuable insight into the growing field of structural proteomics."
      —Prof. Gary Stein, University of Massachusetts Medical School, USA



      Table of Contents

      Protein Micro- and Nanocrystallography Using Synchrotron Radiation. Single-Bounce Monocapillary X-Ray Optics: Design and Biological Applications. Thermophilic Enzymes of Potential Industrial Use: Structure and Function. Model Lysozyme Crystal Versus Aggregate, Un Confined Formation as Viewed by Recent Theory Aided by Computer Experiment. Molecular Modeling to Facilitate Protein Crystallization. Structural Analysis of the β-Subunit of the Translation Initiation Factor Aif2 from Different Species: Role of Zn Ions. Towards the Understanding of Molecular Aspects of Helicobacter pylori cag-PAI. Using X-Ray Scattering to Study the Structures of Membrane-Associated Proteins. An Overview of Langmuir Blodgett Protein Crystals via GISAXS, LASER , Raman and AFM. Radiation Damage in Protein Structural Characterization by Synchrotron Radiation: State of the Art and Nanotechnology-Based Perspective. Contactless Sample Manipulation for Synchrotron Radiation Experiments. Gold on Glass—The Annealing Process Investigated with GISAXS and Ellipsometry. Three-Dimensional Visualization of a Human Chromosome Using Coherent X-Ray Diffraction.

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