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ADARs, Volume 710 in this ongoing series, highlights new advances in the field, with this new volume presenting interesting chapters written by an international board of authors. Updates in this new release include Yeast as a discovery tool for hyperactive ADARs, X-ray crystallography of ADAR-RNA complexes, Enrichment capture enhances the ability to detect A-to-I editing, Editing specificity of ADAR isoforms, Novel chemical tools for detection methods of A to I sites, En Masse Evaluation of RNA Guides (EMERGe) for ADARs, Mouse models for defining physiological functions of ADARs, Nanopore sequencing to detect A-to-I editing sites, CellREADR: An ADAR-based RNA sensor, and more.
Additional sections cover Site-directed RNA editing with MS2-ADAR systems, Sequencing and Bioinformatic Tools for Accurate Assessment of A to I editing in Complete Transcriptomes, Aptazyme-directed A to I RNA editing, and Obstacles in quantifying A-to-I editing by Sanger Sequencing.
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ADARs, Volume 710 in this ongoing series, highlights new advances in the field, with this new volume presenting interesting chapters written by an international board of authors. Updates in this new release include Yeast as a discovery tool for hyperactive ADARs, X-ray crystallography of ADAR-RNA complexes, Enrichment capture enhances the ability to detect A-to-I editing, Editing specificity of ADAR isoforms, Novel chemical tools for detection methods of A to I sites, En Masse Evaluation of RNA Guides (EMERGe) for ADARs, Mouse models for defining physiological functions of ADARs, Nanopore sequencing to detect A-to-I editing sites, CellREADR: An ADAR-based RNA sensor, and more.
Additional sections cover Site-directed RNA editing with MS2-ADAR systems, Sequencing and Bioinformatic Tools for Accurate Assessment of A to I editing in Complete Transcriptomes, Aptazyme-directed A to I RNA editing, and Obstacles in quantifying A-to-I editing by Sanger Sequencing.