Screening of human SNP database identifies recoding sites of A-to-I RNA editing
Abstract
Single nucleotide polymorphisms (SNPs) are DNA sequence variations that can affect the expression or function of genes. As a result, they may lead to phenotypic differences between individuals, such as susceptibility to disease, response to medications, and disease progression. Millions of SNPs have been mapped within the human genome providing a rich resource for genetic variation studies. Adenosine-to-inosine RNA editing also leads to the production of RNA and protein sequence variants, but it acts on the level of primary gene transcripts. Sequence variations due to RNA editing may be misannotated as SNPs when relying solely on expressed sequence data instead of genomic material. In this study, we screened the human SNP database for potential cases of A-to-I RNA editing that cause amino acid changes in the encoded protein. Our search strategy applies five molecular features to score candidate sites. It identifies all previously known cases of editing present in the SNP database and successfully uncovers novel, bona fide targets of adenosine deamination editing. Our approach sets the stage for effective and comprehensive genome-wide screens for A-to-I editing targets.
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Footnotes
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Reprint requests to: Stefan Maas, Department of Biological Sciences, 111 Research Drive, Iacocca Hall D226, Bethlehem, PA 18015-4732, USA; e-mail: smaas{at}lehigh.edu; fax: (610) 758-4004.
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Article published online ahead of print. Article and publication date are at http://www.rnajournal.org/cgi/doi/10.1261/rna.816908.
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- Received September 5, 2007.
- Accepted July 14, 2008.
- Copyright © 2008 RNA Society










