tRNAscan-SE On-line: integrating search and context for analysis of transfer RNA genes

Todd M. Lowe, Patricia P. Chan

Nucleic Acids Research · 2016 · 2.8K citations · 11 references

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TL;DR

High‑throughput genome sequencing drives demand for rapid, accurate genome annotation, and tRNA genes—the largest family of essential non‑coding RNAs—are often overlooked; prior web‑server tRNA detection was isolated from existing tRNA knowledge and annotation. The update aims to integrate tRNA classification improvements with enriched biological context by linking search results to GtRNAdb genes and UCSC genome browsers. The web server provides dynamic links between search results, GtRNAdb genes, and UCSC genome browsers, accessible at http://trna.ucsc.edu/tRNAscan‑SE/. Newly developed tRNAscan‑SE 2.0 has advanced the state‑of‑the‑art methodology in tRNA gene detection and functional prediction, captured by rich new content of the companion Genomic tRNA Database.

Abstract

High-throughput genome sequencing continues to grow the need for rapid, accurate genome annotation and tRNA genes constitute the largest family of essential, ever-present non-coding RNA genes. Newly developed tRNAscan-SE 2.0 has advanced the state-of-the-art methodology in tRNA gene detection and functional prediction, captured by rich new content of the companion Genomic tRNA Database. Previously, web-server tRNA detection was isolated from knowledge of existing tRNAs and their annotation. In this update of the tRNAscan-SE On-line resource, we tie together improvements in tRNA classification with greatly enhanced biological context via dynamically generated links between web server search results, the most relevant genes in the GtRNAdb and interactive, rich genome context provided by UCSC genome browsers. The tRNAscan-SE On-line web server can be accessed at http://trna.ucsc.edu/tRNAscan-SE/.

References

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