edited by Christina Waldsich, Department of Biochemistry and Cell Biology, Max F. Perutz Laboratories, University of Vienna, Vienna, Austria
.PUBLICATION, DISTRIBUTION, ETC
Name of Publisher, Distributor, etc.
Springer
Date of Publication, Distribution, etc.
2014
PHYSICAL DESCRIPTION
Specific Material Designation and Extent of Item
x, 340 pages : illustrations )some color(
SERIES
Series Title
Methods in molecular biology,1064-3745 ;1086
Series Title
Springer protocols
Series Title
Series: Methods in molecular biology )Clifton, N.J.( ;v. 1086.1064-3745
Series Title
Series: Springer protocols )Series(1949-2448
CONTENTS NOTE
Text of Note
Predicting RNA Structure: Advances and Limitations -- Cis-Acting 5' Hammerhead Optimization for In Vitro Transcription of Highly Structured RNAs -- RNA Structural Analysis by Enzymatic Digestion -- A Mutate-and-Map Protocol for Inferring Base Pairs in Structured RNA -- Mapping RNA Structure In Vitro Using Nucleobase-Specific Probes -- Massively Parallel RNA Chemical Mapping with a Reduced Bias MAP-Seq Protocol -- Probing RNA Folding by Hydroxyl Radical Footprinting -- Monitoring Global Structural Changes and Specific Metal Binding Sites in RNA by In-Line Probing and Tb)III( Cleavage -- Chemical Probing of RNA in Living Cells -- A Chemogenetic Approach to Study the Structural Basis of Protein-Facilitated RNA Folding -- Applying UV Crosslinking to Study RNA-Protein Interactions in Multicomponent Ribonucleoprotein Complexes -- The Kinetics of Ribozyme Cleavage: A Tool to Analyze RNA Folding as a Function of Catalysis -- RNA Catalytic Activity as a Probe of Chaperone-Mediated RNA Folding -- Evaluation of RNA Chaperone Activity In Vivo and In Vitro Using Misfolded Group I Ribozymes -- RNA Conformational Changes Analyzed by Comparative Gel Electrophoresis -- Detecting RNA Tertiary Folding by Sedimentation Velocity Analytical Ultracentrifugation -- RNA Folding Dynamics Using Laser Assisted Single-Molecule Refolding -- RNA Refolding Studied by Light-Coupled NMR Spectroscopy -- Exploring RNA Oligomerization and Ligand Binding by Fluorescence Correlation Spectroscopy and Small Angle X-Ray Scattering.