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Assessing the impacts of various factors on circular RNA reliability

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This study systematically assesses the impacts of numerous factors related to circRNA identification, conservation, biogenesis, and function on circRNA reliability, providing a useful guideline and an important resource for selecting… Click to show full abstract

This study systematically assesses the impacts of numerous factors related to circRNA identification, conservation, biogenesis, and function on circRNA reliability, providing a useful guideline and an important resource for selecting high-confidence circRNAs for further investigations. Circular RNAs (circRNAs) are non-polyadenylated RNAs with a continuous loop structure characterized by a non-colinear back-splice junction (BSJ). Although millions of circRNA candidates have been identified, it remains a major challenge for determining circRNA reliability because of various types of false positives. Here, we systematically assess the impacts of numerous factors related to circRNA identification, conservation, biogenesis, and function on circRNA reliability by comparisons of circRNA expression from mock and the corresponding colinear/polyadenylated RNA–depleted datasets based on three different RNA treatment approaches. Eight important indicators of circRNA reliability are determined. The relative contribution to variability explained analyses reveal that the relative importance of these factors in affecting circRNA reliability in descending order is the conservation level of circRNA, full-length circular sequences, supporting BSJ read count, both BSJ donor and acceptor splice sites at the same colinear transcript isoforms, both BSJ donor and acceptor splice sites at the annotated exon boundaries, BSJs detected by multiple tools, supporting functional features, and both BSJ donor and acceptor splice sites undergoing alternative splicing. This study thus provides a useful guideline and an important resource for selecting high-confidence circRNAs for further investigations.

Keywords: reliability; circrna reliability; donor acceptor; bsj donor; acceptor splice; splice sites

Journal Title: Life Science Alliance
Year Published: 2023

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