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Nucleic Acid Crystallography

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Cover of 'Nucleic Acid Crystallography'

Table of Contents

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    Book Overview
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    Chapter 1 Perspectives and Pitfalls in Nucleic Acids Crystallography
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    Chapter 2 Nucleic Acid Crystallography
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    Chapter 3 Preparation and Crystallization of Riboswitches
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    Chapter 4 In Vitro/In Vivo Production of tRNA for X-Ray Studies
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    Chapter 5 Polyacrylamide Gel Electrophoresis for Purification of Large Amounts of RNA
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    Chapter 6 Use of the U1A Protein to Facilitate Crystallization and Structure Determination of Large RNAs
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    Chapter 7 Nucleic Acid Crystallography
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    Chapter 8 Nucleic Acid Crystallography
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    Chapter 9 Isothermal Titration Calorimetry: Assisted Crystallization of RNA–Ligand Complexes
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    Chapter 10 Crystallographic Data and Model Quality
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    Chapter 11 Advanced Crystallographic Data Collection Protocols for Experimental Phasing
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    Chapter 12 Nucleic Acid Crystallography via Direct Selenium Derivatization: RNAs Modified with Se-Nucleobases
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    Chapter 13 Practical Radiation Damage-Induced Phasing
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    Chapter 14 Soaking Hexammine Cations into RNA Crystals to Obtain Derivatives for Phasing Diffraction Data
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    Chapter 15 Using Molecular Replacement Phasing to Study the Structure and Function of RNA
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    Chapter 16 Helical Symmetry of Nucleic Acids: Obstacle or Help in Structure Solution?
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    Chapter 17 RNA Structure Refinement Using the ERRASER-Phenix Pipeline
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    Chapter 18 Neutron Nucleic Acid Crystallography
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    Chapter 19 Reconstitution of Functionally Active Thermus thermophilus 30S Ribosomal Subunit from Ribosomal 16S RNA and Ribosomal Proteins.
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    Chapter 20 Crystallographic Studies of the Ribosomal A-Site Molecular Switches by Using Model RNA Oligomers.
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    Chapter 21 Structure of the HCV Internal Ribosome Entry Site Subdomain IIa RNA in Complex with a Viral Translation Inhibitor.
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    Chapter 22 Nucleic Acid Crystallography
Attention for Chapter 18: Neutron Nucleic Acid Crystallography
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Chapter title
Neutron Nucleic Acid Crystallography
Chapter number 18
Book title
Nucleic Acid Crystallography
Published in
Methods in molecular biology, January 2016
DOI 10.1007/978-1-4939-2763-0_18
Pubmed ID
Book ISBNs
978-1-4939-2762-3, 978-1-4939-2763-0
Authors

Toshiyuki Chatake, Chatake, Toshiyuki

Abstract

The hydration shells surrounding nucleic acids and hydrogen-bonding networks involving water molecules and nucleic acids are essential interactions for the structural stability and function of nucleic acids. Water molecules in the hydration shells influence various conformations of DNA and RNA by specific hydrogen-bonding networks, which often contribute to the chemical reactivity and molecular recognition of nucleic acids. However, X-ray crystallography could not provide a complete description of structural information with respect to hydrogen bonds. Indeed, X-ray crystallography is a powerful tool for determining the locations of water molecules, i.e., the location of the oxygen atom of H2O; however, it is very difficult to determine the orientation of the water molecules, i.e., the orientation of the two hydrogen atoms of H2O, because X-ray scattering from the hydrogen atom is very small.Neutron crystallography is a specialized tool for determining the positions of hydrogen atoms. Neutrons are not diffracted by electrons, but are diffracted by atomic nuclei; accordingly, neutron scattering lengths of hydrogen and its isotopes are comparable to those of non-hydrogen atoms. Therefore, neutron crystallography can determine both of the locations and orientations of water molecules. This chapter describes the current status of neutron nucleic acid crystallographic research as well as the basic principles of neutron diffraction experiments performed on nucleic acid crystals: materials, crystallization, diffraction experiments, and structure determination.

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Mendeley readers

The data shown below were compiled from readership statistics for 25 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 25 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 6 24%
Student > Bachelor 6 24%
Researcher 5 20%
Student > Master 3 12%
Other 2 8%
Other 2 8%
Unknown 1 4%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 10 40%
Agricultural and Biological Sciences 10 40%
Chemistry 3 12%
Environmental Science 1 4%
Unknown 1 4%