Evaluation of Bioinformatics Approaches for Next-Generation Sequencing Analysis of microRNAs with a Toxicogenomics

Halil Bisgin1, Binsheng Gong2, Yuping Wang2

  • 1Department of Computer Science, Engineering, and Physics, University of Michigan-Flint, Flint, MI, United States.

Frontiers in Genetics
|February 23, 2018
PubMed

Insights

Choosing the right parameters for microRNA sequencing (miRNA-seq) analysis is crucial for accurate toxicogenomics studies. miRDeep2 is recommended for its reliability in detecting differentially expressed microRNAs (DEMs) in toxicogenomic data.

Area of Science:

  • Toxicogenomics and molecular biology
  • Bioinformatics and computational biology

Background:

  • MicroRNAs (miRNAs) are critical post-transcriptional regulators involved in disease and toxicity.
  • Next-generation sequencing (NGS) enables miRNA profiling via miRNA sequencing (miRNA-seq).
  • Accurate miRNA quantification and differential expression analysis depend heavily on parameter choices in miRNA-seq data analysis.

Purpose of the Study:

  • To comparatively evaluate four common miRNA-seq analysis tools (miRDeep2, miRExpress, miRNAkey, sRNAbench).
  • To assess the impact of parameter settings and normalization methods on miRNA quantification and differential expression detection in a toxicogenomics context.
  • To identify the optimal tool and parameters for reliable toxicogenomic data interpretation, ensuring treatment effects are not overshadowed by analytical variations.

Main Methods:

  • Utilized miRNA-seq data from a toxicogenomics study involving thioacetamide-treated rat liver samples across various doses and time points.
  • Tested 30 different parameter settings and four normalization options across four miRNA-seq analysis tools.
  • Focused on comparative analysis between miRDeep2 and sRNAbench due to lower variability compared to miRExpress and miRNAkey.

Main Results:

  • The 'window' parameter (mismatches in hairpin alignment) significantly impacted miRNA quantification and differentially expressed miRNA (DEM) detection.
  • While miRDeep2 detected a subset of miRNAs identified by sRNAbench, both tools yielded comparable numbers of DEMs.
  • Normalization methods introduced substantial variation in DEMs, yet the toxic effects of thioacetamide showed consistent dose- and time-dependent trends.

Conclusions:

  • miRDeep2 is a preferable tool for miRNA-seq analysis in toxicogenomics, particularly when allowing up to three nucleotide mismatches.
  • Parameter selection and normalization are critical, but appropriate choices can ensure that biological variations (treatment effects) are reliably detected.
  • The study highlights the importance of rigorous bioinformatic pipeline evaluation for accurate toxicogenomic biomarker discovery.

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