Anomalous X-ray Scattering as a Probe of Biological Structure

Anomalous X-ray Scattering as a Probe of Biological Structure PDF Author: Richard Charles Miake-Lye
Publisher:
ISBN:
Category : Macromolecules
Languages : en
Pages : 360

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Anomalous X-ray Scattering as a Probe of Biological Structure

Anomalous X-ray Scattering as a Probe of Biological Structure PDF Author: Richard Charles Miake-Lye
Publisher:
ISBN:
Category : Macromolecules
Languages : en
Pages : 360

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Book Description


Synchrotron Radiation in Structural Biology

Synchrotron Radiation in Structural Biology PDF Author: R. Sweet
Publisher: Springer Science & Business Media
ISBN: 1468480413
Category : Technology & Engineering
Languages : en
Pages : 354

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Book Description
The development of synchrotron radiation (SR) as a research tool was driven largely by the needs of materials scientists and solid-state physi cists. However, the availability of SR has extended significantly the capa bility of scientists who study biological structure with radiation. This volume contains some of the results reported at a symposium held at Brookhaven National Laboratory in May 1988 to discuss the application of synchrotron radiation to structural biology. We are grateful for financial support from the u. s. Department of Energy, the National Institutes of Health, Genentech, Inc., Blake Indus tries, Inc., Evans and Sutherland Co., The Upjohn Company, Eli Lilly and Company, Enraf-Nonius Service Corp., and Associated Universities, Inc. We warmly thank Ms. Nancy Siemon for her tireless efforts with correspondence and the manuscripts for this symposium volume. Symposium Committee: Robert M. Sweet, Chair Malcolm S. Capel Benno P. Schoenborn John C. Sutherland Elizabeth C. Theil Stephen W. White Avril D. Woodhead Helen Z. Kondratuk, Coordinator v CONTENTS An Introduction to the Symposium . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1 R. M. Sweet SYMPOSIUM LECTURE Developments in X-ray Technology and Their Contribution to Structural Biology . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 H. E. Huxley SOME OF THE SYNCHROTRON FACILITIES FOR BIOLOGICAL STRUCTURAL STUDIES MacChess - A Macromolecular Diffraction Resource at the Cornell High Energy Synchrotron Source . . . . . . . . . . . . . . . . . . . 15 W. Schi1dkamp, K. Moffat, B. Batterman, D. Bilderback, T-Y. Teng, A. LeGrand and D. Szebenyi Facilities Available for Biophysics Research at the Stanford Synchrotron Radiation Laboratory. . . . . . . . . . . . . . . . . . . . . 19 R. P."

Structural Biological Applications of X-ray Absorption, Scattering, and Diffraction

Structural Biological Applications of X-ray Absorption, Scattering, and Diffraction PDF Author: H. D. Bartunik
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 448

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Anomalous X-Ray Scattering for Materials Characterization

Anomalous X-Ray Scattering for Materials Characterization PDF Author: Yoshio Waseda
Publisher: Springer
ISBN: 354046008X
Category : Technology & Engineering
Languages : en
Pages : 224

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Book Description
The production of multi layered thin films with sufficient reliability is a key technology for device fabrication in micro electronics. In the Co/Cu type multi layers, for example, magnetoresistance has been found as large as 80 % at 4. 2 K and 50 % at room temperature. In addition to such gigantic mag netoresistance, these multi layers indicate anti ferromagnetic and ferromag netic oscillation behavior with an increase in the thickness of the layers of the non magnetic component. These interesting properties of the new synthetic flmctional materials are attributed to their periodic and interracial structures at a microscopic level, although the origin of such peculiar features is not fully understood. Information on the surface structure or the number density of atoms in the near surface region may provide better insight. Amorphous alloys, frequently referred to as metallic glasses, are produced by rapid quenching from the melt. The second generation amorphous alloys, called "bulk amorphous alloys", have been discovered in some Pd based and Zr based alloy systems, with a super cooled liquid region at more than 120 K. In these alloy systems, one can obtain a sample thickness of several centime ters. Growing scientific and technological curiosity about the new amorphous alloys has focused on the fundamental factors, such as the atomic scale struc ture, which are responsible for the thermal stability with certain chemical compositions.

Novel Application of Anomalous (resonance) X-ray Scattering for Structural Characterization of Disordered Materials

Novel Application of Anomalous (resonance) X-ray Scattering for Structural Characterization of Disordered Materials PDF Author: Yoshio Waseda
Publisher: Springer
ISBN:
Category : Science
Languages : en
Pages : 204

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Biological Small Angle Scattering

Biological Small Angle Scattering PDF Author: Eaton E. Lattman
Publisher: Oxford University Press
ISBN: 0191649899
Category : Science
Languages : en
Pages : 248

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Book Description
Small angle solution scattering (SAS) is increasingly being applied to biological problems. It is a complementary technique that, when applied in appropriate circumstances with carefully structured questions, can provide unique information not available from other techniques. While small angle solution scattering has been around for some time, a confluence of recent developments has dramatically enhanced its power. Intense third generation X-ray sources, low noise detectors, development of new algorithms and the computational power to take advantage of these have all matured, and use of free-electron x-ray laser sources is on the horizon. Whole new classes of experiments and analyses have been created as a result. These include the generation of molecular envelopes, the ability to do time-resolved studies, and the ability to account for structural changes using modelling based on the SAS data. The technical improvements have also reduced the amount of time and material needed to carry out an experiment. Beamtime at synchrotron sources is in demand, workshops on the subject are popular and researchers adopting the technique as part of their repertoire are growing. With these in mind, this book was written to guide structural biologists who may wish to adopt the technique, understand its strengths and weaknesses or just have a general interest in its potential.

Liquid Surfaces and Interfaces

Liquid Surfaces and Interfaces PDF Author: Peter S. Pershan
Publisher: Cambridge University Press
ISBN: 0521814014
Category : Science
Languages : en
Pages : 335

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Book Description
A practical guide for graduate students and researchers on all aspects of x-ray scattering experiments on liquid surfaces and interfaces.

Resonant Anomalous X-ray Scattering

Resonant Anomalous X-ray Scattering PDF Author: G. Materlik
Publisher: North Holland
ISBN:
Category : Medical
Languages : en
Pages : 698

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Book Description
Hardbound. The collected articles in this book written by recognized experts in the field explore the theoretical and experimental insights and applications of the rapidly expanding science of x-ray resonant interactions. The variety of papers presented reflects the theoretical and experimental progress made possible with tunable, polarized and highly brilliant synchrotron radiation sources. In a rapidly changing field this book provides a single selected reference source on the present understanding of x-ray resonance scattering and its many applications. A detailed subject index provides easy access to the many topics covered by the authors who list over 1000 references.

Small Angle Scattering Part A: Methods for Structural Investigation

Small Angle Scattering Part A: Methods for Structural Investigation PDF Author:
Publisher: Academic Press
ISBN: 0323991807
Category : Science
Languages : en
Pages : 578

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Book Description
Small Angle Scattering, Part A: Methods for Structural Investigation, Volume 675 in the Methods in Enzymology series, highlights new advances in the field, with new chapters in this updated release including SAXS foundations and metrics, Contrast variation sample preparation protocols, experimental procedures, and rudimentary analysis, Molecular deuteration for neutron scattering, Planning, Executing and Assessing the Feasibility of SANS Contrast Variation Experiments, Technical considerations for small-angle neutron scattering from biological macromolecules, and Advanced sample environments and capabilities at our synchrotron X-ray beamline with example applications. Additional sections in the book cover SEC-SAXS-MALS data acquisition and processing pipeline at SIBYLS, SEC-SAXS: pros and cons, experimental set-up, examples and software developments, Radiation damage and sample economy for stopped-flow methods in the time regime of millisecond and above, Stopped-flow-time-resolved SAXS, Insights on Temp-jump, time-resolved SAXS, and much more. - Provides the authority and expertise of leading contributors from an international board of authors - Presents the latest release in the Methods in Enzymology series - Includes the latest information on Small Angle Scattering: Methods for Structural Investigation

Small Angle X-Ray and Neutron Scattering from Solutions of Biological Macromolecules

Small Angle X-Ray and Neutron Scattering from Solutions of Biological Macromolecules PDF Author: Dmitri I. Svergun
Publisher: OUP Oxford
ISBN: 0191507032
Category : Science
Languages : en
Pages : 369

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Book Description
Small-angle scattering of X-rays (SAXS) and neutrons (SANS) is an established method for the structural characterization of biological objects in a broad size range from individual macromolecules (proteins, nucleic acids, lipids) to large macromolecular complexes. SAXS/SANS is complementary to the high resolution methods of X-ray crystallography and nuclear magnetic resonance, allowing for hybrid modeling and also accounting for available biophysical and biochemical data. Quantitative characterization of flexible macromolecular systems and mixtures has recently become possible. SAXS/SANS measurements can be easily performed in different conditions by adding ligands or binding partners, and by changing physical and/or chemical characteristics of the solvent to provide information on the structural responses. The technique provides kinetic information about processes like folding and assembly and also allows one to analyze macromolecular interactions. The major factors promoting the increasingly active use of SAXS/SANS are modern high brilliance X-ray and neutron sources, novel data analysis methods, and automation of the experiment, data processing and interpretation. In this book, following the presentation of the basics of scattering from isotropic macromolecular solutions, modern instrumentation, experimental practice and advanced analysis techniques are explained. Advantages of X-rays (rapid data collection, small sample volumes) and of neutrons (contrast variation by hydrogen/deuterium exchange) are specifically highlighted. Examples of applications of the technique to different macromolecular systems are considered with specific emphasis on the synergistic use of SAXS/SANS with other structural, biophysical and computational techniques.