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Table of Contents
Part 1: RNA Binding Proteins
Chapter 1: How proteins recognize RNA
Chapter 2: The interaction between L7Ae family of proteins and RNA kink turns
Chapter 3: Evolving methods in defining the role of RNA in RNP assembly
Chapter 4: Single-molecule studies of exonuclease: Following cleavage actions one step at a time
Chapter 5: Fitting in the age of single-molecule experiments: A guide to maximum-likelihood estimation and its advantages
Part II: Transcription and Translation
Chapter 6: A single-molecule view on cellular and viral RNA synthesis
Chapter 7: Single-Molecule Optical Tweezers Studies of Translation
Part III: RNA-Guided Protein Machineries
Chapter 8: Biophysical and biochemical approaches in the analysis of Argonaute-miRNA complexes
Chapter 9: Biophysics of RNA-guided CRISPR immunity
Chapter 10: Dynamics of MicroRNA Biogenesis.
Chapter 1: How proteins recognize RNA
Chapter 2: The interaction between L7Ae family of proteins and RNA kink turns
Chapter 3: Evolving methods in defining the role of RNA in RNP assembly
Chapter 4: Single-molecule studies of exonuclease: Following cleavage actions one step at a time
Chapter 5: Fitting in the age of single-molecule experiments: A guide to maximum-likelihood estimation and its advantages
Part II: Transcription and Translation
Chapter 6: A single-molecule view on cellular and viral RNA synthesis
Chapter 7: Single-Molecule Optical Tweezers Studies of Translation
Part III: RNA-Guided Protein Machineries
Chapter 8: Biophysical and biochemical approaches in the analysis of Argonaute-miRNA complexes
Chapter 9: Biophysics of RNA-guided CRISPR immunity
Chapter 10: Dynamics of MicroRNA Biogenesis.