ElTetrado: a tool for identification and classification of tetrads and quadruplexes.

BMC Bioinformatics

Institute of Computing Science and European Centre for Bioinformatics and Genomics, Poznan University of Technology, Piotrowo 2, Poznan, 60-965, Poland.

Published: January 2020

AI Article Synopsis

  • Quadruplexes are important structural motifs found in regions like telomeres, and recent research highlights their significance in biomedicine, especially with a focus on both canonical and non-canonical structures.
  • ElTetrado is a new software tool that identifies and classifies quadruplexes and tetrads based on their secondary structure topology, using a fresh classification system called ONZ.
  • The tool is freely available and offers graphical representations of quadruplex structures, enhancing the understanding of these motifs beyond just sequence and 3D structure analysis.

Article Abstract

Background: Quadruplexes are specific structure motifs occurring, e.g., in telomeres and transcriptional regulatory regions. Recent discoveries confirmed their importance in biomedicine and led to an intensified examination of their properties. So far, the study of these motifs has focused mainly on the sequence and the tertiary structure, and concerned canonical structures only. Whereas, more and more non-canonical quadruplex motifs are being discovered.

Results: Here, we present ElTetrado, a software that identifies quadruplexes (composed of guanine- and other nucleobase-containing tetrads) in nucleic acid structures and classifies them according to the recently introduced ONZ taxonomy. The categorization is based on the secondary structure topology of quadruplexes and their component tetrads. It supports the analysis of canonical and non-canonical motifs. Besides the class recognition, ElTetrado prepares a dot-bracket and graphical representations of the secondary structure, which reflect the specificity of the quadruplex's structure topology. It is implemented as a freely available, standalone application, available at https://github.com/tzok/eltetrado.

Conclusions: The proposed software tool allows to identify and classify tetrads and quadruplexes based on the topology of their secondary structures. It complements existing approaches focusing on the sequence and 3D structure.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6995151PMC
http://dx.doi.org/10.1186/s12859-020-3385-1DOI Listing

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