Homology modeling revealed more than 20,000 rRNA internal transcribed spacer 2 (ITS2) secondary structures
Open Access
- 21 October 2005
- journal article
- research article
- Published by Cold Spring Harbor Laboratory in RNA
- Vol. 11 (11) , 1616-1623
- https://doi.org/10.1261/rna.2144205
Abstract
Structural genomics meets phylogenetics and vice versa: Knowing rRNA secondary structures is a prerequisite for constructing rRNA alignments for inferring phylogenies, and inferring phylogenies is a precondition to understand the evolution of such rRNA secondary structures. Here, both scientific worlds go together. The rRNA internal transcribed spacer 2 (ITS2) region is a widely used phylogenetic marker. Because of its high variability at the sequence level, correct alignments have to take into account structural information. In this study, we examine the extent of the conservation in structure. We present (1) the homology modeled secondary structure of more than 20,000 ITS2 covering about 14,000 species; (2) a computational approach for homology modeling of rRNA structures, which additionally can be applied to other RNA families; and (3) a database providing about 25,000 ITS2 sequences with their associated secondary structures, a refined ITS2 specific general time reversible (GTR) substitution model, and a scoring matrix, available at http://its2.bioapps.biozentrum.uni-wuerzburg.de.Keywords
This publication has 14 references indexed in Scilit:
- A common core of secondary structure of the internal transcribed spacer 2 (ITS2) throughout the EukaryotaRNA, 2005
- ITS2 is a double-edged tool for eukaryote evolutionary comparisonsTrends in Genetics, 2003
- Secondary Structure Prediction for Aligned RNA SequencesJournal of Molecular Biology, 2002
- Modeling Amino Acid ReplacementJournal of Computational Biology, 2000
- Fast folding and comparison of RNA secondary structuresMonatshefte für Chemie / Chemical Monthly, 1994
- A new method for calculating evolutionary substitution ratesJournal of Molecular Evolution, 1984
- Optimal computer folding of large RNA sequences using thermodynamics and auxiliary informationNucleic Acids Research, 1981
- Fast algorithm for predicting the secondary structure of single-stranded RNA.Proceedings of the National Academy of Sciences, 1980
- A general method applicable to the search for similarities in the amino acid sequence of two proteinsJournal of Molecular Biology, 1970
- Molecular Structure of Nucleic Acids: A Structure for Deoxyribose Nucleic AcidNature, 1953