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September 10, 2011Nucleic Acids Research3,444 citationsOpen Access

miRDeep2 accurately identifies known and hundreds of novel microRNA genes in seven animal clades

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MFMarc R. FriedländerSMSebastian D. MackowiakNLNa Li

Key Points

  • This study aims to improve the identification of microRNA genes using the miRDeep2 algorithm across multiple animal clades.
  • Designed miRDeep2 algorithm for enhanced microRNA detection
  • Analyzed sequencing data from seven animal species
  • Validated predictions by knocking down miRNA biogenesis in human cell line and sequencing small RNAs.
  • miRDeep2 achieved 98.6-99.9% accuracy in identifying miRNAs
  • Reported hundreds of novel miRNAs across species
  • Validation showed most novel miRNAs were downregulated after biogenesis pathway knockdown.

Abstract

microRNAs (miRNAs) are a large class of small non-coding RNAs which post-transcriptionally regulate the expression of a large fraction of all animal genes and are important in a wide range of biological processes. Recent advances in high-throughput sequencing allow miRNA detection at unprecedented sensitivity, but the computational task of accurately identifying the miRNAs in the background of sequenced RNAs remains challenging. For this purpose, we have designed miRDeep2, a substantially improved algorithm which identifies canonical and non-canonical miRNAs such as those derived from transposable elements and informs on high-confidence candidates that are detected in multiple independent samples. Analyzing data from seven animal species representing the major animal clades, miRDeep2 identified miRNAs with an accuracy of 98.6-99.9% and reported hundreds of novel miRNAs. To test the accuracy of miRDeep2, we knocked down the miRNA biogenesis pathway in a human cell line and sequenced small RNAs before and after. The vast majority of the >100 novel miRNAs expressed in this cell line were indeed specifically downregulated, validating most miRDeep2 predictions. Last, a new miRNA expression profiling routine, low time and memory usage and user-friendly interactive graphic output can make miRDeep2 useful to a wide range of researchers.

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Cite This Study

Friedländer et al. (2011) studied this question.

synapsesocial.com/papers/69d719423f906f6a06bef04fhttps://doi.org/10.1093/nar/gkr688
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