This volume, written by experts in the field, discusses the current understanding of the biophysical principles that govern RNA folding, with featured RNAs including the ribosomal RNAs, viral RNAs, and self-splicing introns.
This volume, written by experts in the field, discusses the current understanding of the biophysical principles that govern RNA folding, with featured RNAs including the ribosomal RNAs, viral RNAs, and self-splicing introns.
Introduction.- Comparative Analysis of the Higher-order Structure of RNA.- Graph Applications to RNA Structure and Function.- Prediction and Coarse-Grained Modeling of RNA Structures.- RNA Folding Using Site-Directed Spin Labeling.- The RNA Recognition Motif and Messenger RNA.- Memory Effects in RNA folding dynamics revealed by single molecule fluorescence.- An integrated picture of HDV ribozyme catalysis.- Combining biochemical and structural information to model RNA-protein complex assembly.- Following RNA Folding From Local and Global Perspectives.- The Roles of Chaperones in RNA Folding.
Introduction.- Comparative Analysis of the Higher-order Structure of RNA.- Graph Applications to RNA Structure and Function.- Prediction and Coarse-Grained Modeling of RNA Structures.- RNA Folding Using Site-Directed Spin Labeling.- The RNA Recognition Motif and Messenger RNA.- Memory Effects in RNA folding dynamics revealed by single molecule fluorescence.- An integrated picture of HDV ribozyme catalysis.- Combining biochemical and structural information to model RNA-protein complex assembly.- Following RNA Folding From Local and Global Perspectives.- The Roles of Chaperones in RNA Folding.
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