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REDIportal: a comprehensive database of A-to-I RNA editing events in humans. | LitMetric

REDIportal: a comprehensive database of A-to-I RNA editing events in humans.

Nucleic Acids Res

Department of Biosciences, Biotechnology and Biopharmaceutics, University of Bari, Via Orabona 4, 70126 Bari, Italy

Published: January 2017

AI Article Synopsis

  • RNA editing by A-to-I deamination is a key process in humans that affects gene expression and protein diversity, influenced by ADAR enzymes.
  • RNA editing plays crucial roles in cellular functions, and its disruption is associated with various diseases, including neurological disorders and cancer.
  • REDIportal is a comprehensive online database that catalogs over 4.5 million RNA editing events from multiple human tissues, featuring tools for exploring these edits in a genomic context, enhancing our understanding of RNA editing's biological significance.

Article Abstract

RNA editing by A-to-I deamination is the prominent co-/post-transcriptional modification in humans. It is carried out by ADAR enzymes and contributes to both transcriptomic and proteomic expansion. RNA editing has pivotal cellular effects and its deregulation has been linked to a variety of human disorders including neurological and neurodegenerative diseases and cancer. Despite its biological relevance, many physiological and functional aspects of RNA editing are yet elusive. Here, we present REDIportal, available online at http://srv00.recas.ba.infn.it/atlas/, the largest and comprehensive collection of RNA editing in humans including more than 4.5 millions of A-to-I events detected in 55 body sites from thousands of RNAseq experiments. REDIportal embeds RADAR database and represents the first editing resource designed to answer functional questions, enabling the inspection and browsing of editing levels in a variety of human samples, tissues and body sites. In contrast with previous RNA editing databases, REDIportal comprises its own browser (JBrowse) that allows users to explore A-to-I changes in their genomic context, empathizing repetitive elements in which RNA editing is prominent.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5210607PMC
http://dx.doi.org/10.1093/nar/gkw767DOI Listing

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